From f6371427d17379ccac307944f4d1b34df45310f8 Mon Sep 17 00:00:00 2001 From: David Kleiven Date: Mon, 12 Feb 2024 15:54:29 +0100 Subject: [PATCH] test: Use unmodified entsoe model --- cimsparql/adaptions.py | 1 + tests/data/small/README.md | 5 + ...mallGridTestConfiguration_BC_DL_v3.0.0.xml | 12066 +++++ ...mallGridTestConfiguration_BC_EQ_v3.0.0.xml | 15253 ++++++ ...mallGridTestConfiguration_BC_GL_v3.0.0.xml | 6500 +++ ...allGridTestConfiguration_BC_SSH_v3.0.0.xml | 2504 + ...mallGridTestConfiguration_BC_SV_v3.0.0.xml | 1514 + ...mallGridTestConfiguration_BC_TP_v3.0.0.xml | 2130 + tests/data/smallgrid_eq.nq | 43329 ---------------- tests/data/smallgrid_tpsvssh.nq | 5023 -- tests/t_utils/entsoe_models.py | 13 +- 11 files changed, 39983 insertions(+), 48355 deletions(-) create mode 100644 tests/data/small/README.md create mode 100755 tests/data/small/SmallGridTestConfiguration_BC_DL_v3.0.0.xml create mode 100755 tests/data/small/SmallGridTestConfiguration_BC_EQ_v3.0.0.xml create mode 100755 tests/data/small/SmallGridTestConfiguration_BC_GL_v3.0.0.xml create mode 100755 tests/data/small/SmallGridTestConfiguration_BC_SSH_v3.0.0.xml create mode 100755 tests/data/small/SmallGridTestConfiguration_BC_SV_v3.0.0.xml create mode 100755 tests/data/small/SmallGridTestConfiguration_BC_TP_v3.0.0.xml delete mode 100644 tests/data/smallgrid_eq.nq delete mode 100644 tests/data/smallgrid_tpsvssh.nq diff --git a/cimsparql/adaptions.py b/cimsparql/adaptions.py index f7781fed..cf12dadc 100644 --- a/cimsparql/adaptions.py +++ b/cimsparql/adaptions.py @@ -69,6 +69,7 @@ def add_dtypes(self) -> None: "SvPowerFlow.p": XSD.float, ".open": XSD.boolean, ".connected": XSD.boolean, + ".nominalVoltage": XSD.float, } for s, predicate, o, g in self.graph.quads(): with suppress(StopIteration): diff --git a/tests/data/small/README.md b/tests/data/small/README.md new file mode 100644 index 00000000..5c052ef7 --- /dev/null +++ b/tests/data/small/README.md @@ -0,0 +1,5 @@ +# Model info + +Model extracted from + +SmallGrid/BusBranch/CGMES_v2.4.15_SmallGridTestConfiguration_BaseCase_Complete_v3.0.0 diff --git a/tests/data/small/SmallGridTestConfiguration_BC_DL_v3.0.0.xml b/tests/data/small/SmallGridTestConfiguration_BC_DL_v3.0.0.xml new file mode 100755 index 00000000..b53a4610 --- /dev/null +++ b/tests/data/small/SmallGridTestConfiguration_BC_DL_v3.0.0.xml @@ -0,0 +1,12066 @@ + + + + + 2030-01-02T09:00:00 + 2014-10-22T09:01:25.830 + CGMES Conformity Assessment: Small Grid Base Case Test Configuration. The model is owned by ENTSO-E and is provided by ENTSO-E "as it is". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. ENTSO-E web site is the only official source of information related to the model. + 4 + http://GB/Planning/ENTSOE/2 + http://entsoe.eu/CIM/DiagramLayout/3/1 + + + + + + Diagram1 + + + + Edoras-Upbourn Details + + + + Qarth-Umbar Details + + + + 37-40 + 0 + + + + + + 38-37 + 180 + + + + 3.30687833 + 6.61375666 + + + 38-37_0 + 0 + + + + + + 38-37_1 + 0 + + + + + + 64-61 + 0 + + + + 3.30687833 + 6.61375666 + + + 64-61_0 + 0 + + + + + + 64-61_1 + 0 + + + + + + 64-65 + 0 + + + + + + 65-66 + 0 + + + + 3.30687833 + 6.61375666 + + + 65-66_0 + 0 + + + + + + 65-66_1 + 0 + + + + + + DiagramObject1 + 0 + + + + + DiagramObject10 + 0 + + + + + DiagramObject100 + 0 + + + + + DiagramObject101 + 0 + + + + + DiagramObject102 + 0 + + + + + DiagramObject103 + 0 + + + + + DiagramObject104 + 0 + + + + + DiagramObject105 + 0 + + + + + DiagramObject106 + 0 + + + + + DiagramObject107 + 0 + + + + + DiagramObject108 + 0 + + + + + DiagramObject109 + 0 + + + + + DiagramObject11 + 0 + + + + + DiagramObject110 + 0 + 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Configuration. The model is owned by ENTSO-E and is provided by ENTSO-E "as it is". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. 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a/tests/data/small/SmallGridTestConfiguration_BC_SSH_v3.0.0.xml b/tests/data/small/SmallGridTestConfiguration_BC_SSH_v3.0.0.xml new file mode 100755 index 00000000..e333eacc --- /dev/null +++ b/tests/data/small/SmallGridTestConfiguration_BC_SSH_v3.0.0.xml @@ -0,0 +1,2504 @@ + + + + 2030-01-02T09:00:00 + 2014-10-22T09:01:25.830 + CGMES Conformity Assessment: Small Grid Base Case Test Configuration. The model is owned by ENTSO-E and is provided by ENTSO-E "as it is". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. 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The model is owned by ENTSO-E and is provided by ENTSO-E "as it is". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. ENTSO-E web site is the only official source of information related to the model. + 4 + http://entsoe.eu/CIM/Topology/4/1 + http://GB/Planning/ENTSOE/2 + + + + + HickryCk + + + + + TannrsCk1 + + + + + WHuntngd + + + + + Pokagon + + + + + FtWayne + + + + + DeerCrk + + + + + W.Kammer + + + + + Sterling + + + + + Turner + + + + + WestLima + + + + + Natrium + + + + + Pinevlle + + + + + Bellefnt + + + + + Olive1 + + + + + Blaine + + + + + Riversde + + + + + Tidd1 + + + + + Zanesvll + + + + + Sundial + + + + + Logan + + + + + Sporn2 + + + + + SouthBnd + + + + + Holston + + + + + Kammer + + + + + CapitlHl + + + + + Sporn1 + + + + + Rockhill + + + + + Wagenhls + + + + + Trenton + + + + + Olive2 + + + + + Cloverdl + + + + + BeaverCk + + + + + DanRiver + + + + + Sorenson1 + + + + + Randolph + + + + + Muskngum1 + + + + + Kankakee + + + + + Portsmth + + + + + CollCrnr + + + + + Sprigg + + + + + Roanoke + + + + + Hillsbro + + + + + Muskngum2 + + + + + WMVernon + + + + + HolstonT + + + + + X5 TRI + + + + + Madison + + + + + Grant + + + + + Breed + + + + + EastLima1 + + + + + WNwPhil1 + + + + + Reusens + + + + + Wythe + + + + + BetsyLne + + + + + SCoshoct + + + + + WNwPhil2 + + + + + ClinchRv + + + + + N.Newark + + + + + S.Kenton + + + + + SthPoint + + + + + Fremont + + + + + Fieldale + + + + + Philo + + + + + WCambrdg + + + + + Mullin + + + + + TwinBrch + + + + + Claytor + + + + + Tidd2 + + + + + Saltvlle + + + + + Concord + + + + + Chemical + + + + + WMedford + + + + + Tazewell + + + + + S.Tiffin + + + + + Howard + + + + + SWKammer + + + + + Hancock + + + + + Baileysv + + + + + Medford + + + + + West End + + + + + N. 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The character encoding is UTF-8. The string length is unspecified and unlimited."^^ . - "Primitive" . - . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix2 . -_:node1gda76hcix2 "http://iec.ch/TC57/2013/61970-453/DiagramLayout/3" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix3 . -_:node1gda76hcix3 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - "Date"@en . - "Date as \"yyyy-mm-dd\", which conforms with ISO 8601. UTC time zone is specified as \"yyyy-mm-ddZ\". A local timezone relative UTC is specified as \"yyyy-mm-dd(+/-)hh:mm\"."^^ . - "Primitive" . - . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix4 . -_:node1gda76hcix4 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix5 . -_:node1gda76hcix5 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURI"@en . - . - . - . - _:node1gda76hcix6 . -_:node1gda76hcix6 "http://entsoe.eu/CIM/DiagramLayout/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/DiagramLayout/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix7 . -_:node1gda76hcix7 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix8 . -_:node1gda76hcix8 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix9 . -_:node1gda76hcix9 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix10 . -_:node1gda76hcix10 "DL" . - "The short name of the profile used in profile documentation."^^ . - . - "DiagramLayout"@en . - . - "DiagramStyle"@en . - . - "The diagram style refer to a style used by the originating system for a diagram. A diagram style describes information such as schematic, geographic, bus-branch etc."^^ . - . - . - . - "Diagram"@en . - "A DiagramStyle can be used by many Diagrams."^^ . - . - . - . - . - "No" . - . - "DiagramStyle"@en . - "A Diagram may have a DiagramStyle."^^ . - . - . - . - . - "Yes" . - . - "Diagram"@en . - . - "The diagram being exchanged. The coordinate system is a standard Cartesian coordinate system and the orientation attribute defines the orientation."^^ . - . - . - . - . - "orientation"@en . - . - . - . - "Coordinate system orientation of the diagram."^^ . - . - "OrientationKind"@en . - "The orientation of the coordinate system with respect to top, left, and the coordinate number system."^^ . - . - . - . - "negative"@en . - "For 2D diagrams, a negative orientation gives the left-hand orientation (favoured by computer graphics displays) with X values increasing from left to right and Y values increasing from top to bottom. This is also known as a left hand orientation."^^ . - . - . - "x1InitialView"@en . - . - . - . - "X coordinate of the first corner of the initial view."^^ . - . - "Simple_Float"@en . - "A floating point number. The range is unspecified and not limited."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - "Float"@en . - "A floating point number. The range is unspecified and not limited."^^ . - "Primitive" . - . - . - . - "x2InitialView"@en . - . - . - . - "X coordinate of the second corner of the initial view."^^ . - . - . - "y1InitialView"@en . - . - . - . - "Y coordinate of the first corner of the initial view."^^ . - . - . - "y2InitialView"@en . - . - . - . - "Y coordinate of the second corner of the initial view."^^ . - . - "Diagram"@en . - "A diagram object is part of a diagram."^^ . - . - . - . - . - "Yes" . - . - "DiagramElements"@en . - "A diagram is made up of multiple diagram objects."^^ . - . - . - . - . - "No" . - . - "DiagramObject"@en . - . - "An object that defines one or more points in a given space. This object can be associated with anything that specializes IdentifiedObject. For single line diagrams such objects typically include such items as analog values, breakers, disconnectors, power transformers, and transmission lines."^^ . - . - . - . - . - "drawingOrder"@en . - . - . - . - "The drawing order of this element. The higher the number, the later the element is drawn in sequence. This is used to ensure that elements that overlap are rendered in the correct order."^^ . - . - "Integer"@en . - "An integer number. The range is unspecified and not limited."^^ . - "Primitive" . - . - . - . - "isPolygon"@en . - . - . - . - "Defines whether or not the diagram objects points define the boundaries of a polygon or the routing of a polyline. If this value is true then a receiving application should consider the first and last points to be connected."^^ . - . - "Boolean"@en . - "A type with the value space \"true\" and \"false\"."^^ . - "Primitive" . - . - . - . - "offsetX"@en . - . - . - . - "The offset in the X direction. This is used for defining the offset from centre for rendering an icon (the default is that a single point specifies the centre of the icon).The offset is in per-unit with 0 indicating there is no offset from the horizontal centre of the icon. -0.5 indicates it is offset by 50% to the left and 0.5 indicates an offset of 50% to the right."^^ . - . - . - "offsetY"@en . - . - . - . - "The offset in the Y direction. This is used for defining the offset from centre for rendering an icon (the default is that a single point specifies the centre of the icon).The offset is in per-unit with 0 indicating there is no offset from the vertical centre of the icon. The offset direction is dependent on the orientation of the diagram, with -0.5 and 0.5 indicating an offset of +/- 50% on the vertical axis."^^ . - . - . - "rotation"@en . - . - . - . - "Sets the angle of rotation of the diagram object. Zero degrees is pointing to the top of the diagram. Rotation is clockwise."^^ . - . - "AngleDegrees"@en . - "Measurement of angle in degrees."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix11 . -_:node1gda76hcix11 "deg" . - . - "UnitSymbol"@en . - "The units defined for usage in the CIM."^^ . - . - . - . - "VA"@en . - "Apparent power in volt ampere."^^ . - . - "W"@en . - "Active power in watt."^^ . - . - "VAr"@en . - "Reactive power in volt ampere reactive."^^ . - . - "VAh"@en . - "Apparent energy in volt ampere hours."^^ . - . - "Wh"@en . - "Real energy in what hours."^^ . - . - "VArh"@en . - "Reactive energy in volt ampere reactive hours."^^ . - . - "V"@en . - "Voltage in volt."^^ . - . - "ohm"@en . - "Resistance in ohm."^^ . - . - "A"@en . - "Current in ampere."^^ . - . - "F"@en . - "Capacitance in farad."^^ . - . - "H"@en . - "Inductance in henry."^^ . - . - "degC"@en . - "Relative temperature in degrees Celsius. In the SI unit system the symbol is ºC. Electric charge is measured in coulomb that has the unit symbol C. To distinguish degree Celsius form coulomb the symbol used in the UML is degC. Reason for not using ºC is the special character º is difficult to manage in software."^^ . - . - "s"@en . - "Time in seconds."^^ . - . - "min"@en . - "Time in minutes."^^ . - . - "h"@en . - "Time in hours."^^ . - . - "deg"@en . - "Plane angle in degrees."^^ . - . - "rad"@en . - "Plane angle in radians."^^ . - . - "J"@en . - "Energy in joule."^^ . - . - "N"@en . - "Force in newton."^^ . - . - "S"@en . - "Conductance in siemens."^^ . - . - "none"@en . - "Dimension less quantity, e.g. count, per unit, etc."^^ . - . - "Hz"@en . - "Frequency in hertz."^^ . - . - "g"@en . - "Mass in gram."^^ . - . - "Pa"@en . - "Pressure in pascal (n/m2)."^^ . - . - "m"@en . - "Length in meter."^^ . - . - "m2"@en . - "Area in square meters."^^ . - . - "m3"@en . - "Volume in cubic meters."^^ . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix12 . -_:node1gda76hcix12 "none" . - . - "UnitMultiplier"@en . - "The unit multipliers defined for the CIM."^^ . - . - . - . - "p"@en . - "Pico 10**-12."^^ . - . - "n"@en . - "Nano 10**-9."^^ . - . - "micro"@en . - "Micro 10**-6."^^ . - . - "m"@en . - "Milli 10**-3."^^ . - . - "c"@en . - "Centi 10**-2."^^ . - . - "d"@en . - "Deci 10**-1."^^ . - . - "k"@en . - "Kilo 10**3."^^ . - . - "M"@en . - "Mega 10**6."^^ . - . - "G"@en . - "Giga 10**9."^^ . - . - "T"@en . - "Tera 10**12."^^ . - . - "none"@en . - "No multiplier or equivalently multiply by 1."^^ . - . - "IdentifiedObject"@en . - "The diagram objects that are associated with the domain object."^^ . - . - . - . - . - "Yes" . - . - "DiagramObjects"@en . - "The domain object to which this diagram object is associated."^^ . - . - . - . - . - "No" . - . - "DiagramObjectPoints"@en . - "A diagram object can have 0 or more points to reflect its layout position, routing (for polylines) or boundary (for polygons)."^^ . - . - . - . - . - "No" . - . - "DiagramObject"@en . - "The diagram object with which the points are associated."^^ . - . - . - . - . - "Yes" . - . - "VisibilityLayers"@en . - "A diagram object can be part of multiple visibility layers."^^ . - . - . - . - . - "No" . - . - "VisibleObjects"@en . - "A visibility layer can contain one or more diagram objects."^^ . - . - . - . - . - "Yes" . - . - "DiagramObjectStyle"@en . - "A diagram object has a style associated that provides a reference for the style used in the originating system."^^ . - . - . - . - . - "Yes" . - . - "StyledObjects"@en . - "A style can be assigned to multiple diagram objects."^^ . - . - . - . - . - "No" . - . - "DiagramObjectGluePoint"@en . - "This is used for grouping diagram object points from different diagram objects that are considered to be glued together in a diagram even if they are not at the exact same coordinates."^^ . - . - . - . - "DiagramObjectPoints"@en . - "The 'glue' point to which this point is associated."^^ . - . - . - . - . - "No" . - . - "DiagramObjectGluePoint"@en . - "A diagram object glue point is associated with 2 or more object points that are considered to be 'glued' together."^^ . - . - . - . - . - "Yes" . - . - "DiagramObjectPoint"@en . - "A point in a given space defined by 3 coordinates and associated to a diagram object. The coordinates may be positive or negative as the origin does not have to be in the corner of a diagram. "^^ . - . - . - . - . - "sequenceNumber"@en . - . - . - . - "The sequence position of the point, used for defining the order of points for diagram objects acting as a polyline or polygon with more than one point."^^ . - . - . - "xPosition"@en . - . - . - . - "The X coordinate of this point."^^ . - . - . - "yPosition"@en . - . - . - . - "The Y coordinate of this point."^^ . - . - . - "zPosition"@en . - . - . - . - "The Z coordinate of this point."^^ . - . - "DiagramObjectStyle"@en . - . - "A reference to a style used by the originating system for a diagram object. A diagram object style describes information such as line thickness, shape such as circle or rectangle etc, and color."^^ . - . - . - . - "TextDiagramObject"@en . - . - "A diagram object for placing free-text or text derived from an associated domain object."^^ . - . - . - . - . - "text"@en . - . - . - . - "The text that is displayed by this text diagram object."^^ . - . - "VisibilityLayer"@en . - . - "Layers are typically used for grouping diagram objects according to themes and scales. Themes are used to display or hide certain information (e.g., lakes, borders), while scales are used for hiding or displaying information depending on the current zoom level (hide text when it is too small to be read, or when it exceeds the screen size). This is also called de-cluttering.CIM based graphics exchange will support an m:n relationship between diagram objects and layers. It will be the task of the importing system to convert an m:n case into an appropriate 1:n representation if the importing system does not support m:n."^^ . - . - . - . - . - "drawingOrder"@en . - . - . - . - "The drawing order for this layer. The higher the number, the later the layer and the objects within it are rendered."^^ . - . - "Core"@en . - . - "IdentifiedObject"@en . - "This is a root class to provide common identification for all classes needing identification and naming attributes."^^ . - . - . - . - "mRID"@en . - . - . - . - "Master resource identifier issued by a model authority. The mRID is globally unique within an exchange context. Global uniqueness is easily achieved by using a UUID, as specified in RFC 4122, for the mRID. The use of UUID is strongly recommended.For CIMXML data files in RDF syntax conforming to IEC 61970-552 Edition 1, the mRID is mapped to rdf:ID or rdf:about attributes that identify CIM object elements."^^ . - . - . - "name"@en . - . - . - . - "The name is any free human readable and possibly non unique text naming the object."^^ . - . - "DynamicsProfile"@en . - . - "The CIM dynamic model definitions reflect the most common IEEE or, in the case of wind models, IEC, representations of models as well as models included in some of the transient stability software widely used by utilities.These dynamic models are intended to ensure interoperability between different vendors’ software products currently in use by electric utility energy companies, utilities, TSOs and RTO/ISOs. It is important to note that each vendor is free to select its own internal implementation of these models. Differences in vendor results, as long as they are within accepted engineering practice, caused by different internal representations, are acceptable.Notes:1. Wind models package is defined in accordance with IEC 61400-27-1 version CDV 2013-08-15."^^ . - "DynamicsVersion"@en . - "Version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix13 . -_:node1gda76hcix13 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix14 . -_:node1gda76hcix14 "http://iec.ch/TC57/2013/61970-457/Dynamics/3" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix15 . -_:node1gda76hcix15 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix16 . -_:node1gda76hcix16 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix17 . -_:node1gda76hcix17 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURI"@en . - . - . - . - _:node1gda76hcix18 . -_:node1gda76hcix18 "http://entsoe.eu/CIM/Dynamics/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/Dynamics/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix19 . -_:node1gda76hcix19 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix20 . -_:node1gda76hcix20 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix21 . -_:node1gda76hcix21 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix22 . -_:node1gda76hcix22 "DY" . - "The short name of the profile used in profile documentation."^^ . - . - "ACDCTerminal"@en . - . - "An electrical connection point (AC or DC) to a piece of conducting equipment. Terminals are connected at physical connection points called connectivity nodes."^^ . - "abstract" . - . - . - "ConductingEquipment"@en . - . - "The parts of the AC power system that are designed to carry current or that are conductively connected through terminals."^^ . - "abstract" . - . - . - "ConductingEquipment"@en . - "The conducting equipment of the terminal. Conducting equipment have terminals that may be connected to other conducting equipment terminals via connectivity nodes or topological nodes."^^ . - . - . - . - . - "Yes" . - . - "Terminals"@en . - "Conducting equipment have terminals that may be connected to other conducting equipment terminals via connectivity nodes or topological nodes."^^ . - . - . - . - . - "No" . - . - "Equipment"@en . - . - "The parts of a power system that are physical devices, electronic or mechanical."^^ . - "abstract" . - . - . - "abstract" . - . - "description"@en . - . - . - . - "The description is a free human readable text describing or naming the object. It may be non unique and may not correlate to a naming hierarchy."^^ . - . - . - "PowerSystemResource"@en . - . - "A power system resource can be an item of equipment such as a switch, an equipment container containing many individual items of equipment such as a substation, or an organisational entity such as sub-control area. Power system resources can have measurements associated."^^ . - "abstract" . - . - . - "Terminal"@en . - . - "An AC electrical connection point to a piece of conducting equipment. Terminals are connected at physical connection points called connectivity nodes."^^ . - "abstract" . - . - . - "Terminal"@en . - "Remote terminal with which this input signal is associated."^^ . - . - . - . - . - "Yes" . - . - "RemoteInputSignal"@en . - "Input signal coming from this terminal."^^ . - . - . - . - . - "No" . - . - "Wires"@en . - . - "AsynchronousMachine"@en . - . - "A rotating machine whose shaft rotates asynchronously with the electrical field. Also known as an induction machine with no external connection to the rotor windings, e.g squirrel-cage induction machine."^^ . - "abstract" . - . - . - "AsynchronousMachine"@en . - "Asynchronous machine to which this asynchronous machine dynamics model applies."^^ . - . - . - . - . - "Yes" . - . - "AsynchronousMachineDynamics"@en . - "Asynchronous machine dynamics model used to describe dynamic behavior of this asynchronous machine."^^ . - . - . - . - . - "No" . - . - "EnergyConsumer"@en . - . - "Generic user of energy - a point of consumption on the power system model."^^ . - "abstract" . - "Description" . - . - . - "EnergyConsumer"@en . - "Energy consumer to which this dynamics load model applies."^^ . - . - . - . - . - "No" . - . - "LoadDynamics"@en . - "Load dynamics model used to describe dynamic behavior of this energy consumer."^^ . - . - . - . - . - "Yes" . - . - "EnergySource"@en . - . - "A generic equivalent for an energy supplier on a transmission or distribution voltage level."^^ . - "abstract" . - . - . - "EnergySource"@en . - "Energy Source (current source) with which this wind Type 3 or 4 dynamics model is asoociated."^^ . - . - . - . - . - "Yes" . - . - "WindTurbineType3or4Dynamics"@en . - "Wind generator Type 3 or 4 dynamics model associated with this energy source."^^ . - . - . - . - . - "No" . - . - "RegulatingCondEq"@en . - . - "A type of conducting equipment that can regulate a quantity (i.e. voltage or flow) at a specific point in the network. "^^ . - "abstract" . - . - . - "RotatingMachine"@en . - . - "A rotating machine which may be used as a generator or motor."^^ . - "abstract" . - . - . - "SynchronousMachine"@en . - . - "An electromechanical device that operates with shaft rotating synchronously with the network. It is a single machine operating either as a generator or synchronous condenser or pump."^^ . - "abstract" . - . - . - "SynchronousMachine"@en . - "Synchronous machine to which synchronous machine dynamics model applies."^^ . - . - . - . - . - "Yes" . - . - "SynchronousMachineDynamics"@en . - "Synchronous machine dynamics model used to describe dynamic behavior of this synchronous machine."^^ . - . - . - . - . - "No" . - . - "StandardInterconnections"@en . - . - "This section describes the standard interconnections for various types of equipment. These interconnections are understood by the application programs and can be identified based on the presence of one of the key classes with a relationship to the static power flow model: SynchronousMachineDynamics, AsynchronousMachineDynamics, EnergyConsumerDynamics or WindTurbineType3or4Dynamics.The relationships between classes expressed in the interconnection diagrams are intended to support dynamic behaviour described by either standard models or user-defined models.In the interconnection diagrams, boxes which are black in colour represent function blocks whose functionality can be provided by one of many standard models or by a used-defined model. Blue boxes represent specific standard models. A dashed box means that the function block or specific standard model is optional."^^ . - "RemoteInputSignal"@en . - . - "Supports connection to a terminal associated with a remote bus from which an input signal of a specific type is coming."^^ . - . - . - . - . - "remoteSignalType"@en . - . - . - . - "Type of input signal."^^ . - . - "RemoteSignalKind"@en . - "Type of input signal coming from remote bus."^^ . - . - . - . - "remoteBusVoltageFrequency"@en . - "Input is voltage frequency from remote terminal bus."^^ . - . - "remoteBusVoltageFrequencyDeviation"@en . - "Input is voltage frequency deviation from remote terminal bus."^^ . - . - "remoteBusFrequency"@en . - "Input is frequency from remote terminal bus."^^ . - . - "remoteBusFrequencyDeviation"@en . - "Input is frequency deviation from remote terminal bus."^^ . - . - "remoteBusVoltageAmplitude"@en . - "Input is voltage amplitude from remote terminal bus."^^ . - . - "remoteBusVoltage"@en . - "Input is voltage from remote terminal bus."^^ . - . - "remoteBranchCurrentAmplitude"@en . - "Input is branch current amplitude from remote terminal bus."^^ . - . - "remoteBusVoltageAmplitudeDerivative"@en . - "Input is branch current amplitude derivative from remote terminal bus."^^ . - . - "remotePuBusVoltageDerivative"@en . - "Input is PU voltage derivative from remote terminal bus."^^ . - . - "RemoteInputSignal"@en . - "Remote input signal used by this Power Factor or VAr controller Type I model."^^ . - . - . - . - . - "No" . - . - "PFVArControllerType1Dynamics"@en . - "Power Factor or VAr controller Type I model using this remote input signal."^^ . - . - . - . - . - "Yes" . - . - "RemoteInputSignal"@en . - "Remote input signal used by this underexcitation limiter model."^^ . - . - . - . - . - "No" . - . - "UnderexcitationLimiterDynamics"@en . - "Underexcitation limiter model using this remote input signal."^^ . - . - . - . - . - "Yes" . - . - "RemoteInputSignal"@en . - "Remote input signal used by this wind generator Type 1 or Type 2 model."^^ . - . - . - . - . - "Yes" . - . - "WindTurbineType1or2Dynamics"@en . - "Wind generator Type 1 or Type 2 model using this remote input signal."^^ . - . - . - . - . - "No" . - . - "RemoteInputSignal"@en . - "Remote input signal used by this voltage compensator model."^^ . - . - . - . - . - "No" . - . - "VoltageCompensatorDynamics"@en . - "Voltage compensator model using this remote input signal."^^ . - . - . - . - . - "Yes" . - . - "RemoteInputSignal"@en . - "Remote input signal used by this power system stabilizer model."^^ . - . - . - . - . - "No" . - . - "PowerSystemStabilizerDynamics"@en . - "Power system stabilizer model using this remote input signal."^^ . - . - . - . - . - "Yes" . - . - "RemoteInputSignal"@en . - "Remote input signal used by this discontinuous excitation control system model."^^ . - . - . - . - . - "No" . - . - "DiscontinuousExcitationControlDynamics"@en . - "Discontinuous excitation control model using this remote input signal."^^ . - . - . - . - . - "Yes" . - . - "WindTurbineType3or4Dynamics"@en . - "Remote input signal used by these wind turbine Type 3 or 4 models."^^ . - . - . - . - . - "No" . - . - "RemoteInputSignal"@en . - "Wind turbine Type 3 or 4 models using this remote input signal."^^ . - . - . - . - . - "Yes" . - . - "WindPlantDynamics"@en . - "The remote signal with which this power plant is associated."^^ . - . - . - . - . - "No" . - . - "RemoteInputSignal"@en . - "The wind plant using the remote signal."^^ . - . - . - . - . - "Yes" . - . - "StandardModels"@en . - . - "This section contains standard dynamic model specifications grouped into packages by standard function block (type of equipment being modelled).In the CIM, standard dynamic models are expressed by means of a class named with the standard model name and attributes reflecting each of the parameters necessary to describe the behaviour of an instance of the standard model."^^ . - "DynamicsFunctionBlock"@en . - . - "Abstract parent class for all Dynamics function blocks."^^ . - "abstract" . - . - . - . - "enabled"@en . - . - . - . - "Function block used indicator.true = use of function block is enabledfalse = use of function block is disabled."^^ . - . - "RotatingMachineDynamics"@en . - . - "Abstract parent class for all synchronous and asynchronous machine standard models."^^ . - "abstract" . - . - . - . - "damping"@en . - . - . - . - "Damping torque coefficient (D). A proportionality constant that, when multiplied by the angular velocity of the rotor poles with respect to the magnetic field (frequency), results in the damping torque. This value is often zero when the sources of damping torques (generator damper windings, load damping effects, etc.) are modelled in detail. Typical Value = 0."^^ . - . - . - "inertia"@en . - . - . - . - "Inertia constant of generator or motor and mechanical load (H) (>0). This is the specification for the stored energy in the rotating mass when operating at rated speed. For a generator, this includes the generator plus all other elements (turbine, exciter) on the same shaft and has units of MW*sec. For a motor, it includes the motor plus its mechanical load. Conventional units are per unit on the generator MVA base, usually expressed as MW*second/MVA or just second. This value is used in the accelerating power reference frame for operator training simulator solutions. Typical Value = 3."^^ . - . - "Seconds"@en . - "Time, in seconds."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - "Time, in seconds"^^ . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix23 . -_:node1gda76hcix23 "s" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix24 . -_:node1gda76hcix24 "none" . - . - . - "saturationFactor"@en . - . - . - . - "Saturation factor at rated terminal voltage (S1) (> or =0). Not used by simplified model. Defined by defined by S(E1) in the SynchronousMachineSaturationParameters diagram. Typical Value = 0.02."^^ . - . - . - "saturationFactor120"@en . - . - . - . - "Saturation factor at 120% of rated terminal voltage (S12) (> or =S1). Not used by the simplified model, defined by S(E2) in the SynchronousMachineSaturationParameters diagram. Typical Value = 0.12."^^ . - . - . - "statorLeakageReactance"@en . - . - . - . - "Stator leakage reactance (Xl) (> or =0). Typical Value = 0.15."^^ . - . - "PU"@en . - "Per Unit - a positive or negative value referred to a defined base. Values typically range from -10 to +10."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix25 . -_:node1gda76hcix25 "none" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix26 . -_:node1gda76hcix26 "none" . - . - . - "statorResistance"@en . - . - . - . - "Stator (armature) resistance (Rs) (> or =0). Typical Value = 0.005."^^ . - . - "UserDefinedModels"@en . - . - "This package contains user-defined dynamic model classes to support the exchange of both proprietary and explicitly defined models.Proprietary models have behavior which, while not defined by a standard model class, is mutually understood by the sending and receiving applications based on the name passed in the .name attribute of the xxxUserDefined class. Parameters are passed as general attributes using as many instances of the ProprietaryParameterDynamics class as there are parameters.Explicitly defined models describe dynamic behavior in detail in terms of control blocks and their input and output signals. NOTE: The classes to support explicitly defined modeling are not currently defined - it is future work. They are described here to document the current thinking on where they would be added."^^ . - "WindPlantUserDefined"@en . - . - "Wind plant function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "WindPlantUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "WindType1or2UserDefined"@en . - . - "Wind Type 1 or Type 2 function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "WindType1or2UserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "WindType3or4UserDefined"@en . - . - "Wind Type 3 or Type 4 function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "WindType3or4UserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "SynchronousMachineUserDefined"@en . - . - "Synchronous machine whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "SynchronousMachineUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "AsynchronousMachineUserDefined"@en . - . - "Asynchronous machine whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "AsynchronousMachineUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "TurbineGovernorUserDefined"@en . - . - "Turbine-governor function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "TurbineGovernorUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "TurbineLoadControllerUserDefined"@en . - . - "Turbine load controller function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "TurbineLoadControllerUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "MechanicalLoadUserDefined"@en . - . - "Mechanical load function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "MechanicalLoadUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "ExcitationSystemUserDefined"@en . - . - "Excitation system function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "ExcitationSystemUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "OverexcitationLimiterUserDefined"@en . - . - "Overexcitation limiter system function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "OverexcitationLimiterUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "UnderexcitationLimiterUserDefined"@en . - . - "Underexcitation limiter function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "UnderexcitationLimiterUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "PowerSystemStabilizerUserDefined"@en . - . - "Power system stabilizer function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "PowerSystemStabilizerUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "DiscontinuousExcitationControlUserDefined"@en . - . - "Discontinuous excitation control function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "DiscontinuousExcitationControlUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "PFVArControllerType1UserDefined"@en . - . - "Power Factor or VAr controller Type I function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "PFVArControllerType1UserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "VoltageAdjusterUserDefined"@en . - . - "Voltage adjuster function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "VoltageAdjusterUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "PFVArControllerType2UserDefined"@en . - . - "Power Factor or VAr controller Type II function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "PFVArControllerType2UserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "VoltageCompensatorUserDefined"@en . - . - "Voltage compensator function block whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "VoltageCompensatorUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "LoadUserDefined"@en . - . - "Load whose dynamic behaviour is described by a user-defined model."^^ . - . - . - . - . - "proprietary"@en . - . - . - . - "Behaviour is based on proprietary model as opposed to detailed model.true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributesfalse = user-defined model is explicitly defined in terms of control blocks and their input and output signals."^^ . - . - "LoadUserDefined"@en . - "Proprietary user-defined model with which this parameter is associated."^^ . - . - . - . - . - "Yes" . - . - "ProprietaryParameterDynamics"@en . - "Parameter of this proprietary user-defined model."^^ . - . - . - . - . - "No" . - . - "ProprietaryParameterDynamics"@en . - "Supports definition of one or more parameters of several different datatypes for use by proprietary user-defined models. NOTE: This class does not inherit from IdentifiedObject since it is not intended that a single instance of it be referenced by more than one proprietary user-defined model instance."^^ . - . - . - . - . - "parameterNumber"@en . - . - . - . - "Sequence number of the parameter among the set of parameters associated with the related proprietary user-defined model."^^ . - . - . - "booleanParameterValue"@en . - . - . - . - "Used for boolean parameter value. If this attribute is populated, integerParameterValue and floatParameterValue will not be."^^ . - . - . - "integerParameterValue"@en . - . - . - . - "Used for integer parameter value. If this attribute is populated, booleanParameterValue and floatParameterValue will not be."^^ . - . - . - "floatParameterValue"@en . - . - . - . - "Used for floating point parameter value. If this attribute is populated, booleanParameterValue and integerParameterValue will not be."^^ . - . - "SynchronousMachineDynamics"@en . - . - "For conventional power generating units (e.g., thermal, hydro, combustion turbine), a synchronous machine model represents the electrical characteristics of the generator and the mechanical characteristics of the turbine-generator rotational inertia. Large industrial motors or groups of similar motors may be represented by individual motor models which are represented as generators with negative active power in the static (power flow) data.The interconnection with the electrical network equations may differ among simulation tools. The tool only needs to know the synchronous machine to establish the correct interconnection. The interconnection with motor’s equipment could also differ due to input and output signals required by standard models."^^ . - "SynchronousMachineSimplified"@en . - . - "The simplified model represents a synchronous generator as a constant internal voltage behind an impedance (Rs + jXp) as shown in the Simplified diagram.Since internal voltage is held constant, there is no Efd input and any excitation system model will be ignored. There is also no Ifd output.This model should not be used for representing a real generator except, perhaps, small generators whose response is insignificant.The parameters used for the Simplified model include:
    \t
  • RotatingMachineDynamics.damping (D)
  • \t
  • RotatingMachineDynamics.inertia (H)
  • \t
  • RotatingMachineDynamics.statorLeakageReactance (used to exchange jXp for SynchronousMachineSimplified)
  • \t
  • RotatingMachineDynamics.statorResistance (Rs).
"^^ . - . - . - . - "SynchronousMachineDynamics"@en . - . - "Synchronous machine whose behaviour is described by reference to a standard model expressed in one of the following forms:
    \t
  • simplified (or classical), where a group of generators or motors is not modelled in detail
    \t
  • detailed, in equivalent circuit form
  • \t
  • detailed, in time constant reactance form
or by definition of a user-defined model.Note: It is a common practice to represent small generators by a negative load rather than by a dynamic generator model when performing dynamics simulations. In this case a SynchronousMachine in the static model is not represented by anything in the dynamics model, instead it is treated as ordinary load.Parameter Notes:
    \t
  1. Synchronous machine parameters such as Xl, Xd, Xp etc. are actually used as inductances (L) in the models, but are commonly referred to as reactances since, at nominal frequency, the per unit values are the same. However, some references use the symbol L instead of X.
"^^ . - "abstract" . - . - . - "SynchronousMachineDynamics"@en . - "Turbine-governor model associated with this synchronous machine model."^^ . - . - . - . - . - "Yes" . - . - "TurbineGovernorDynamics"@en . - "Synchronous machine model with which this turbine-governor model is associated."^^ . - . - . - . - . - "No" . - . - "SynchronousMachineDynamics"@en . - "Synchronous machine model with which this excitation system model is associated."^^ . - . - . - . - . - "Yes" . - . - "ExcitationSystemDynamics"@en . - "Excitation system model associated with this synchronous machine model."^^ . - . - . - . - . - "No" . - . - "SynchronousMachineDynamics"@en . - "Synchronous machine model with which this mechanical load model is associated."^^ . - . - . - . - . - "Yes" . - . - "MechanicalLoadDynamics"@en . - "Mechanical load model associated with this synchronous machine model."^^ . - . - . - . - . - "No" . - . - "SynchronousMachineDynamics"@en . - "Standard synchronous machine out of which current flow is being compensated for."^^ . - . - . - . - . - "Yes" . - . - "GenICompensationForGenJ"@en . - "Compensation of voltage compensator's generator for current flow out of this generator."^^ . - . - . - . - . - "No" . - . - "SynchronousMachineDetailed"@en . - . - "All synchronous machine detailed types use a subset of the same data parameters and input/output variables.The several variations differ in the following ways:
    \t
  • The number of equivalent windings that are included
  • \t
  • The way in which saturation is incorporated into the model.
  • \t
  • Whether or not “subtransient saliency” (X''q not = X''d) is represented.
Note: It is not necessary for each simulation tool to have separate models for each of the model types. The same model can often be used for several types by alternative logic within the model. Also, differences in saturation representation may not result in significant model performance differences so model substitutions are often acceptable. "^^ . - "abstract" . - . - . - . - "saturationFactorQAxis"@en . - . - . - . - "Q-axis saturation factor at rated terminal voltage (S1q) (>= 0). Typical Value = 0.02."^^ . - . - . - "saturationFactor120QAxis"@en . - . - . - . - "Q-axis saturation factor at 120% of rated terminal voltage (S12q) (>=S1q). Typical Value = 0.12."^^ . - . - . - "efdBaseRatio"@en . - . - . - . - "Ratio of Efd bases of exciter and generator models. Typical Value = 1."^^ . - . - . - "ifdBaseType"@en . - . - . - . - "Excitation base system mode. Typical Value = ifag."^^ . - . - "IfdBaseKind"@en . - "Excitation base system mode."^^ . - . - . - . - "ifag"@en . - "Air gap line mode. ifdBaseValue is computed, not defined by the user, in this mode."^^ . - . - "ifnl"@en . - "No load system with saturation mode. ifdBaseValue is computed, not defined by the user, in this mode."^^ . - . - "iffl"@en . - "Full load system mode. ifdBaseValue is computed, not defined by the user, in this mode."^^ . - . - "other"@en . - "Free mode. ifdBaseValue is defined by the user in this mode."^^ . - . - . - "ifdBaseValue"@en . - . - . - . - "Ifd base current if .ifdBaseType = other.Not needed if .ifdBaseType not = other.Unit = A. Typical Value = 0."^^ . - . - "CurrentFlow"@en . - "Electrical current with sign convention: positive flow is out of the conducting equipment into the connectivity node. Can be both AC and DC."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix27 . -_:node1gda76hcix27 "A" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix28 . -_:node1gda76hcix28 "none" . - . - "SynchronousMachineTimeConstantReactance"@en . - . - "Synchronous machine detailed modelling types are defined by the combination of the attributes SynchronousMachineTimeConstantReactance.modelType and SynchronousMachineTimeConstantReactance.rotorType.Parameter notes:
    \t
  1. The “p” in the time-related attribute names is a substitution for a “prime” in the usual parameter notation, e.g. tpdo refers to T'do.
The parameters used for models expressed in time constant reactance form include:
    \t
  • RotatingMachine.ratedS (MVAbase)
  • \t
  • RotatingMachineDynamics.damping (D)
  • \t
  • RotatingMachineDynamics.inertia (H)
  • \t
  • RotatingMachineDynamics.saturationFactor (S1)
  • \t
  • RotatingMachineDynamics.saturationFactor120 (S12)
  • \t
  • RotatingMachineDynamics.statorLeakageReactance (Xl)
  • \t
  • RotatingMachineDynamics.statorResistance (Rs)
  • \t
  • SynchronousMachineTimeConstantReactance.ks (Ks)
  • \t
  • SynchronousMachineDetailed.saturationFactorQAxis (S1q)
  • \t
  • SynchronousMachineDetailed.saturationFactor120QAxis (S12q)
  • \t
  • SynchronousMachineDetailed.efdBaseRatio
  • \t
  • SynchronousMachineDetailed.ifdBaseType
  • \t
  • SynchronousMachineDetailed.ifdBaseValue, if present
  • \t
  • .xDirectSync (Xd)
  • \t
  • .xDirectTrans (X'd)
  • \t
  • .xDirectSubtrans (X''d)
  • \t
  • .xQuadSync (Xq)
  • \t
  • .xQuadTrans (X'q)
  • \t
  • .xQuadSubtrans (X''q)
  • \t
  • .tpdo (T'do)
  • \t
  • .tppdo (T''do)
  • \t
  • .tpqo (T'qo)
  • \t
  • .tppqo (T''qo)
  • \t
  • .tc.
"^^ . - . - . - . - . - "rotorType"@en . - . - . - . - "Type of rotor on physical machine."^^ . - . - "RotorKind"@en . - "Type of rotor on physical machine."^^ . - . - . - . - "roundRotor"@en . - "Round rotor type of synchronous machine."^^ . - . - "salientPole"@en . - "Salient pole type of synchronous machine."^^ . - . - . - "modelType"@en . - . - . - . - "Type of synchronous machine model used in Dynamic simulation applications."^^ . - . - "SynchronousMachineModelKind"@en . - "Type of synchronous machine model used in Dynamic simulation applications."^^ . - . - . - . - "subtransient"@en . - "Subtransient synchronous machine model."^^ . - . - "subtransientTypeF"@en . - "WECC Type F variant of subtransient synchronous machine model."^^ . - . - "subtransientTypeJ"@en . - "WECC Type J variant of subtransient synchronous machine model."^^ . - . - "subtransientSimplified"@en . - "Simplified version of subtransient synchronous machine model where magnetic coupling between the direct and quadrature axes is ignored."^^ . - . - "subtransientSimplifiedDirectAxis"@en . - "Simplified version of a subtransient synchronous machine model with no damper circuit on d-axis. "^^ . - . - . - "ks"@en . - . - . - . - "Saturation loading correction factor (Ks) (>= 0). Used only by Type J model. Typical Value = 0."^^ . - . - . - "xDirectSync"@en . - . - . - . - "Direct-axis synchronous reactance (Xd) (>= X'd).The quotient of a sustained value of that AC component of armature voltage that is produced by the total direct-axis flux due to direct-axis armature current and the value of the AC component of this current, the machine running at rated speed. Typical Value = 1.8."^^ . - . - . - "xDirectTrans"@en . - . - . - . - "Direct-axis transient reactance (unsaturated) (X'd) (> =X''d). Typical Value = 0.5."^^ . - . - . - "xDirectSubtrans"@en . - . - . - . - "Direct-axis subtransient reactance (unsaturated) (X''d) (> Xl). Typical Value = 0.2."^^ . - . - . - "xQuadSync"@en . - . - . - . - "Quadrature-axis synchronous reactance (Xq) (> =X'q).The ratio of the component of reactive armature voltage, due to the quadrature-axis component of armature current, to this component of current, under steady state conditions and at rated frequency. Typical Value = 1.6."^^ . - . - . - "xQuadTrans"@en . - . - . - . - "Quadrature-axis transient reactance (X'q) (> =X''q). Typical Value = 0.3."^^ . - . - . - "xQuadSubtrans"@en . - . - . - . - "Quadrature-axis subtransient reactance (X''q) (> Xl). Typical Value = 0.2."^^ . - . - . - "tpdo"@en . - . - . - . - "Direct-axis transient rotor time constant (T'do) (> T''do). Typical Value = 5."^^ . - . - . - "tppdo"@en . - . - . - . - "Direct-axis subtransient rotor time constant (T''do) (> 0). Typical Value = 0.03."^^ . - . - . - "tpqo"@en . - . - . - . - "Quadrature-axis transient rotor time constant (T'qo) (> T''qo). Typical Value = 0.5."^^ . - . - . - "tppqo"@en . - . - . - . - "Quadrature-axis subtransient rotor time constant (T''qo) (> 0). Typical Value = 0.03."^^ . - . - . - "tc"@en . - . - . - . - "Damping time constant for “Canay” reactance. Typical Value = 0."^^ . - . - "SynchronousMachineEquivalentCircuit"@en . - . - "The electrical equations for all variations of the synchronous models are based on the SynchronousEquivalentCircuit diagram for the direct and quadrature axes.Equations for conversion between Equivalent Circuit and Time Constant Reactance forms:Xd = Xad + XlX’d = Xl + Xad * Xfd / (Xad + Xfd)X”d = Xl + Xad * Xfd * X1d / (Xad * Xfd + Xad * X1d + Xfd * X1d)Xq = Xaq + XlX’q = Xl + Xaq * X1q / (Xaq+ X1q)X”q = Xl + Xaq * X1q* X2q / (Xaq * X1q + Xaq * X2q + X1q * X2q)T’do = (Xad + Xfd) / (omega0 * Rfd)T”do = (Xad * Xfd + Xad * X1d + Xfd * X1d) / (omega0 * R1d * (Xad + Xfd)T’qo = (Xaq + X1q) / (omega0 * R1q)T”qo = (Xaq * X1q + Xaq * X2q + X1q * X2q)/ (omega0 * R2q * (Xaq + X1q)Same equations using CIM attributes from SynchronousMachineTimeConstantReactance class on left of = sign and SynchronousMachineEquivalentCircuit class on right (except as noted):xDirectSync = xad + RotatingMachineDynamics.statorLeakageReactancexDirectTrans = RotatingMachineDynamics.statorLeakageReactance + xad * xfd / (xad + xfd)xDirectSubtrans = RotatingMachineDynamics.statorLeakageReactance + xad * xfd * x1d / (xad * xfd + xad * x1d + xfd * x1d)xQuadSync = xaq + RotatingMachineDynamics.statorLeakageReactancexQuadTrans = RotatingMachineDynamics.statorLeakageReactance + xaq * x1q / (xaq+ x1q)xQuadSubtrans = RotatingMachineDynamics.statorLeakageReactance + xaq * x1q* x2q / (xaq * x1q + xaq * x2q + x1q * x2q)tpdo = (xad + xfd) / (2*pi*nominal frequency * rfd)tppdo = (xad * xfd + xad * x1d + xfd * x1d) / (2*pi*nominal frequency * r1d * (xad + xfd)tpqo = (xaq + x1q) / (2*pi*nominal frequency * r1q)tppqo = (xaq * x1q + xaq * x2q + x1q * x2q)/ (2*pi*nominal frequency * r2q * (xaq + x1q).Are only valid for a simplified model where \"Canay\" reactance is zero."^^ . - . - . - . - . - "xad"@en . - . - . - . - "D-axis mutual reactance."^^ . - . - . - "rfd"@en . - . - . - . - "Field winding resistance."^^ . - . - . - "xfd"@en . - . - . - . - "Field winding leakage reactance."^^ . - . - . - "r1d"@en . - . - . - . - "D-axis damper 1 winding resistance."^^ . - . - . - "x1d"@en . - . - . - . - "D-axis damper 1 winding leakage reactance."^^ . - . - . - "xf1d"@en . - . - . - . - "Differential mutual (“Canay”) reactance."^^ . - . - . - "xaq"@en . - . - . - . - "Q-axis mutual reactance."^^ . - . - . - "r1q"@en . - . - . - . - "Q-axis damper 1 winding resistance."^^ . - . - . - "x1q"@en . - . - . - . - "Q-axis damper 1 winding leakage reactance."^^ . - . - . - "r2q"@en . - . - . - . - "Q-axis damper 2 winding resistance."^^ . - . - . - "x2q"@en . - . - . - . - "Q-axis damper 2 winding leakage reactance."^^ . - . - "AsynchronousMachineDynamics"@en . - . - "An asynchronous machine model represents a (induction) generator or motor with no external connection to the rotor windings, e.g., squirrel-cage induction machine.The interconnection with the electrical network equations may differ among simulation tools. The program only needs to know the terminal to which this asynchronous machine is connected in order to establish the correct interconnection. The interconnection with motor’s equipment could also differ due to input and output signals required by standard models.The asynchronous machine model is used to model wind generators Type 1 and Type 2. For these, normal practice is to include the rotor flux transients and neglect the stator flux transients."^^ . - "AsynchronousMachineDynamics"@en . - . - "Asynchronous machine whose behaviour is described by reference to a standard model expressed in either time constant reactance form or equivalent circuit form or by definition of a user-defined model.Parameter Notes:
    \t
  1. Asynchronous machine parameters such as Xl, Xs etc. are actually used as inductances (L) in the model, but are commonly referred to as reactances since, at nominal frequency, the per unit values are the same. However, some references use the symbol L instead of X.
"^^ . - "abstract" . - . - . - "AsynchronousMachineDynamics"@en . - "Asynchronous machine model with which this mechanical load model is associated."^^ . - . - . - . - . - "Yes" . - . - "MechanicalLoadDynamics"@en . - "Mechanical load model associated with this asynchronous machine model."^^ . - . - . - . - . - "No" . - . - "AsynchronousMachineDynamics"@en . - "Asynchronous machine model with which this wind generator type 1 or 2 model is associated."^^ . - . - . - . - . - "Yes" . - . - "WindTurbineType1or2Dynamics"@en . - "Wind generator type 1 or 2 model associated with this asynchronous machine model."^^ . - . - . - . - . - "No" . - . - "AsynchronousMachineDynamics"@en . - "Asynchronous machine model with which this turbine-governor model is associated."^^ . - . - . - . - . - "Yes" . - . - "TurbineGovernorDynamics"@en . - "Turbine-governor model associated with this asynchronous machine model."^^ . - . - . - . - . - "No" . - . - "AsynchronousMachineTimeConstantReactance"@en . - . - "Parameter Notes:
    \t
  1. If X'' = X', a single cage (one equivalent rotor winding per axis) is modelled.
  2. \t
  3. The “p” in the attribute names is a substitution for a “prime” in the usual parameter notation, e.g. tpo refers to T'o.
The parameters used for models expressed in time constant reactance form include:
    \t
  • RotatingMachine.ratedS (MVAbase)
  • \t
  • RotatingMachineDynamics.damping (D)
  • \t
  • RotatingMachineDynamics.inertia (H)
  • \t
  • RotatingMachineDynamics.saturationFactor (S1)
  • \t
  • RotatingMachineDynamics.saturationFactor120 (S12)
  • \t
  • RotatingMachineDynamics.statorLeakageReactance (Xl)
  • \t
  • RotatingMachineDynamics.statorResistance (Rs)
  • \t
  • .xs (Xs)
  • \t
  • .xp (X')
  • \t
  • .xpp (X'')
  • \t
  • .tpo (T'o)
  • \t
  • .tppo (T''o).
"^^ . - . - . - . - . - "xs"@en . - . - . - . - "Synchronous reactance (Xs) (>= X'). Typical Value = 1.8."^^ . - . - . - "xp"@en . - . - . - . - "Transient reactance (unsaturated) (X') (>=X''). Typical Value = 0.5."^^ . - . - . - "xpp"@en . - . - . - . - "Subtransient reactance (unsaturated) (X'') (> Xl). Typical Value = 0.2."^^ . - . - . - "tpo"@en . - . - . - . - "Transient rotor time constant (T'o) (> T''o). Typical Value = 5."^^ . - . - . - "tppo"@en . - . - . - . - "Subtransient rotor time constant (T''o) (> 0). Typical Value = 0.03."^^ . - . - "AsynchronousMachineEquivalentCircuit"@en . - . - "The electrical equations of all variations of the asynchronous model are based on the AsynchronousEquivalentCircuit diagram for the direct and quadrature axes, with two equivalent rotor windings in each axis.Equations for conversion between Equivalent Circuit and Time Constant Reactance forms:Xs = Xm + XlX' = Xl + Xm * Xlr1 / (Xm + Xlr1)X'' = Xl + Xm * Xlr1* Xlr2 / (Xm * Xlr1 + Xm * Xlr2 + Xlr1 * Xlr2)T'o = (Xm + Xlr1) / (omega0 * Rr1)T''o = (Xm * Xlr1 + Xm * Xlr2 + Xlr1 * Xlr2) / (omega0 * Rr2 * (Xm + Xlr1)Same equations using CIM attributes from AsynchronousMachineTimeConstantReactance class on left of = sign and AsynchronousMachineEquivalentCircuit class on right (except as noted):xs = xm + RotatingMachineDynamics.statorLeakageReactancexp = RotatingMachineDynamics.statorLeakageReactance + xm * xlr1 / (xm + xlr1)xpp = RotatingMachineDynamics.statorLeakageReactance + xm * xlr1* xlr2 / (xm * xlr1 + xm * xlr2 + xlr1 * xlr2)tpo = (xm + xlr1) / (2*pi*nominal frequency * rr1)tppo = (xm * xlr1 + xm * xlr2 + xlr1 * xlr2) / (2*pi*nominal frequency * rr2 * (xm + xlr1)."^^ . - . - . - . - . - "xm"@en . - . - . - . - "Magnetizing reactance."^^ . - . - . - "rr1"@en . - . - . - . - "Damper 1 winding resistance."^^ . - . - . - "xlr1"@en . - . - . - . - "Damper 1 winding leakage reactance."^^ . - . - . - "rr2"@en . - . - . - . - "Damper 2 winding resistance."^^ . - . - . - "xlr2"@en . - . - . - . - "Damper 2 winding leakage reactance."^^ . - . - "TurbineGovernorDynamics"@en . - . - "The turbine-governor model is linked to one or two synchronous generators and determines the shaft mechanical power (Pm) or torque (Tm) for the generator model.Unlike IEEE standard models for other function blocks, the three IEEE turbine-governor standard models (GovHydroIEEE0, GovHydroIEEE2, GovSteamIEEE1) are documented in IEEE Transactions not in IEEE standards. For that reason, diagrams are supplied for those models.A 2012 IEEE report, Dynamic Models for Turbine-Governors in Power System Studies, provides updated information on a variety of models including IEEE, vendor and reliability authority models. Fully incorporating the results of that report into the CIM Dynamics model is a future effort."^^ . - "TurbineGovernorDynamics"@en . - . - "Turbine-governor function block whose behavior is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "TurbineGovernorDynamics"@en . - "Turbine-governor controlled by this turbine load controller."^^ . - . - . - . - . - "Yes" . - . - "TurbineLoadControllerDynamics"@en . - "Turbine load controller providing input to this turbine-governor."^^ . - . - . - . - . - "No" . - . - "GovHydroIEEE0"@en . - . - "IEEE Simplified Hydro Governor-Turbine Model. Used for Mechanical-Hydraulic and Electro-Hydraulic turbine governors, with our without steam feedback. Typical values given are for Mechanical-Hydraulic.Reference: IEEE Transactions on Power Apparatus and SystemsNovember/December 1973, Volume PAS-92, Number 6Dynamic Models for Steam and Hydro Turbines in Power System Studies, Page 1904."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - "ActivePower"@en . - "Product of RMS value of the voltage and the RMS value of the in-phase component of the current."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix29 . -_:node1gda76hcix29 "W" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix30 . -_:node1gda76hcix30 "M" . - . - . - "k"@en . - . - . - . - "Governor gain (K)."^^ . - . - . - "t1"@en . - . - . - . - "Governor lag time constant (T1). Typical Value = 0.25."^^ . - . - . - "t2"@en . - . - . - . - "Governor lead time constant (T2). Typical Value = 0."^^ . - . - . - "t3"@en . - . - . - . - "Gate actuator time constant (T3). Typical Value = 0.1."^^ . - . - . - "t4"@en . - . - . - . - "Water starting time (T4). "^^ . - . - . - "pmax"@en . - . - . - . - "Gate maximum (Pmax). "^^ . - . - . - "pmin"@en . - . - . - . - "Gate minimum (Pmin). "^^ . - . - "GovHydroIEEE2"@en . - . - "IEEE hydro turbine governor model represents plants with straightforward penstock configurations and hydraulic-dashpot governors.Reference: IEEE Transactions on Power Apparatus and SystemsNovember/December 1973, Volume PAS-92, Number 6Dynamic Models for Steam and Hydro Turbines in Power System Studies, Page 1904."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "tg"@en . - . - . - . - "Gate servo time constant (Tg). Typical Value = 0.5."^^ . - . - . - "tp"@en . - . - . - . - "Pilot servo valve time constant (Tp). Typical Value = 0.03."^^ . - . - . - "uo"@en . - . - . - . - "Maximum gate opening velocity (Uo). Unit = PU/sec. Typical Value = 0.1."^^ . - . - . - "uc"@en . - . - . - . - "Maximum gate closing velocity (Uc) (<0). Typical Value = -0.1."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum gate opening (Pmax). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum gate opening (Pmin). Typical Value = 0."^^ . - . - . - "rperm"@en . - . - . - . - "Permanent droop (Rperm). Typical Value = 0.05."^^ . - . - . - "rtemp"@en . - . - . - . - "Temporary droop (Rtemp). Typical Value = 0.5."^^ . - . - . - "tr"@en . - . - . - . - "Dashpot time constant (Tr). Typical Value = 12."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw). Typical Value = 2."^^ . - . - . - "kturb"@en . - . - . - . - "Turbine gain (Kturb). Typical Value = 1."^^ . - . - . - "aturb"@en . - . - . - . - "Turbine numerator multiplier (Aturb). Typical Value = -1."^^ . - . - . - "bturb"@en . - . - . - . - "Turbine denominator multiplier (Bturb). Typical Value = 0.5."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2, PU gv (Gv2). Typical Value = 0."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2). Typical Value = 0."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3). Typical Value = 0."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3). Typical Value = 0."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4). Typical Value = 0."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4). Typical Value = 0."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5). Typical Value = 0."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5). Typical Value = 0."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain point 6, PU gv (Gv6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain point 6, PU power (Pgv6). Typical Value = 0."^^ . - . - "GovSteamIEEE1"@en . - . - "IEEE steam turbine governor model.Reference: IEEE Transactions on Power Apparatus and SystemsNovember/December 1973, Volume PAS-92, Number 6Dynamic Models for Steam and Hydro Turbines in Power System Studies, Page 1904.Parameter Notes:
    \t
  1. Per unit parameters are on base of MWbase, which is normally the MW capability of the turbine.
  2. \t
  3. T3 must be greater than zero. All other time constants may be zero.
  4. \t
  5. For a tandem-compound turbine the parameters K2, K4, K6, and K8 are ignored. For a cross-compound turbine, two generators are connected to this turbine-governor model.
  6. \t
  7. Each generator must be represented in the load flow by data on its own MVA base. The values of K1, K3, K5, K7 must be specified to describe the proportionate development of power on the first turbine shaft. K2, K4, K6, K8 must describe the second turbine shaft. Normally K1 + K3 + K5 + K7 = 1.0 and K2 + K4 + K6 + K8 = 1.0 (if second generator is present).
  8. \t
  9. The division of power between the two shafts is in proportion to the values of MVA bases of the two generators. The initial condition load flow should, therefore, have the two generators loaded to the same fraction of each one’s MVA base.
"^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0)."^^ . - . - . - "k"@en . - . - . - . - "Governor gain (reciprocal of droop) (K) (> 0). Typical Value = 25."^^ . - . - . - "t1"@en . - . - . - . - "Governor lag time constant (T1). Typical Value = 0."^^ . - . - . - "t2"@en . - . - . - . - "Governor lead time constant (T2). Typical Value = 0."^^ . - . - . - "t3"@en . - . - . - . - "Valve positioner time constant (T3) (> 0). Typical Value = 0.1."^^ . - . - . - "uo"@en . - . - . - . - "Maximum valve opening velocity (Uo) (> 0). Unit = PU/sec. Typical Value = 1."^^ . - . - . - "uc"@en . - . - . - . - "Maximum valve closing velocity (Uc) (< 0). Unit = PU/sec. Typical Value = -10."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum valve opening (Pmax) (> Pmin). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum valve opening (Pmin) (>= 0). Typical Value = 0."^^ . - . - . - "t4"@en . - . - . - . - "Inlet piping/steam bowl time constant (T4). Typical Value = 0.3."^^ . - . - . - "k1"@en . - . - . - . - "Fraction of HP shaft power after first boiler pass (K1). Typical Value = 0.2."^^ . - . - . - "k2"@en . - . - . - . - "Fraction of LP shaft power after first boiler pass (K2). Typical Value = 0."^^ . - . - . - "t5"@en . - . - . - . - "Time constant of second boiler pass (T5). Typical Value = 5."^^ . - . - . - "k3"@en . - . - . - . - "Fraction of HP shaft power after second boiler pass (K3). Typical Value = 0.3."^^ . - . - . - "k4"@en . - . - . - . - "Fraction of LP shaft power after second boiler pass (K4). Typical Value = 0."^^ . - . - . - "t6"@en . - . - . - . - "Time constant of third boiler pass (T6). Typical Value = 0.5."^^ . - . - . - "k5"@en . - . - . - . - "Fraction of HP shaft power after third boiler pass (K5). Typical Value = 0.5."^^ . - . - . - "k6"@en . - . - . - . - "Fraction of LP shaft power after third boiler pass (K6). Typical Value = 0."^^ . - . - . - "t7"@en . - . - . - . - "Time constant of fourth boiler pass (T7). Typical Value = 0."^^ . - . - . - "k7"@en . - . - . - . - "Fraction of HP shaft power after fourth boiler pass (K7). Typical Value = 0."^^ . - . - . - "k8"@en . - . - . - . - "Fraction of LP shaft power after fourth boiler pass (K8). Typical Value = 0."^^ . - . - "GovCT1"@en . - . - "General model for any prime mover with a PID governor, used primarily for combustion turbine and combined cycle units.This model can be used to represent a variety of prime movers controlled by PID governors. It is suitable, for example, for representation of
    \t
  • gas turbine and single shaft combined cycle turbines
    \t
  • diesel engines with modern electronic or digital governors
    \t
  • steam turbines where steam is supplied from a large boiler drum or a large header whose pressure is substantially constant over the period under study
  • \t
  • simple hydro turbines in dam configurations where the water column length is short and water inertia effects are minimal.
Additional information on this model is available in the 2012 IEEE report, Dynamic Models for Turbine-Governors in Power System Studies, section 3.1.2.3 page 3-4 (GGOV1)."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "r"@en . - . - . - . - "Permanent droop (R). Typical Value = 0.04."^^ . - . - . - "rselect"@en . - . - . - . - "Feedback signal for droop (Rselect). Typical Value = electricalPower."^^ . - . - "DroopSignalFeedbackKind"@en . - "Governor droop signal feedback source."^^ . - . - . - . - "electricalPower"@en . - "Electrical power feedback (connection indicated as 1 in the block diagrams of models, e.g. GovCT1, GovCT2)."^^ . - . - "none"@en . - "No droop signal feedback, is isochronous governor."^^ . - . - "fuelValveStroke"@en . - "Fuel valve stroke feedback (true stroke) (connection indicated as 2 in the block diagrams of model, e.g. GovCT1, GovCT2)."^^ . - . - "governorOutput"@en . - "Governor output feedback (requested stroke) (connection indicated as 3 in the block diagrams of models, e.g. GovCT1, GovCT2)."^^ . - . - . - "tpelec"@en . - . - . - . - "Electrical power transducer time constant (Tpelec) (>0). Typical Value = 1."^^ . - . - . - "maxerr"@en . - . - . - . - "Maximum value for speed error signal (maxerr). Typical Value = 0.05."^^ . - . - . - "minerr"@en . - . - . - . - "Minimum value for speed error signal (minerr). Typical Value = -0.05."^^ . - . - . - "kpgov"@en . - . - . - . - "Governor proportional gain (Kpgov). Typical Value = 10."^^ . - . - . - "kigov"@en . - . - . - . - "Governor integral gain (Kigov). Typical Value = 2."^^ . - . - . - "kdgov"@en . - . - . - . - "Governor derivative gain (Kdgov). Typical Value = 0."^^ . - . - . - "tdgov"@en . - . - . - . - "Governor derivative controller time constant (Tdgov). Typical Value = 1."^^ . - . - . - "vmax"@en . - . - . - . - "Maximum valve position limit (Vmax). Typical Value = 1."^^ . - . - . - "vmin"@en . - . - . - . - "Minimum valve position limit (Vmin). Typical Value = 0.15."^^ . - . - . - "tact"@en . - . - . - . - "Actuator time constant (Tact). Typical Value = 0.5."^^ . - . - . - "kturb"@en . - . - . - . - "Turbine gain (Kturb) (>0). Typical Value = 1.5."^^ . - . - . - "wfnl"@en . - . - . - . - "No load fuel flow (Wfnl). Typical Value = 0.2."^^ . - . - . - "tb"@en . - . - . - . - "Turbine lag time constant (Tb) (>0). Typical Value = 0.5."^^ . - . - . - "tc"@en . - . - . - . - "Turbine lead time constant (Tc). Typical Value = 0."^^ . - . - . - "wfspd"@en . - . - . - . - "Switch for fuel source characteristic to recognize that fuel flow, for a given fuel valve stroke, can be proportional to engine speed (Wfspd).true = fuel flow proportional to speed (for some gas turbines and diesel engines with positive displacement fuel injectors)false = fuel control system keeps fuel flow independent of engine speed.Typical Value = true."^^ . - . - . - "teng"@en . - . - . - . - "Transport time delay for diesel engine used in representing diesel engines where there is a small but measurable transport delay between a change in fuel flow setting and the development of torque (Teng). Teng should be zero in all but special cases where this transport delay is of particular concern. Typical Value = 0."^^ . - . - . - "tfload"@en . - . - . - . - "Load Limiter time constant (Tfload) (>0). Typical Value = 3."^^ . - . - . - "kpload"@en . - . - . - . - "Load limiter proportional gain for PI controller (Kpload). Typical Value = 2."^^ . - . - . - "kiload"@en . - . - . - . - "Load limiter integral gain for PI controller (Kiload). Typical Value = 0.67."^^ . - . - . - "ldref"@en . - . - . - . - "Load limiter reference value (Ldref). Typical Value = 1."^^ . - . - . - "dm"@en . - . - . - . - "Speed sensitivity coefficient (Dm). Dm can represent either the variation of the engine power with the shaft speed or the variation of maximum power capability with shaft speed. If it is positive it describes the falling slope of the engine speed verses power characteristic as speed increases. A slightly falling characteristic is typical for reciprocating engines and some aero-derivative turbines. If it is negative the engine power is assumed to be unaffected by the shaft speed, but the maximum permissible fuel flow is taken to fall with falling shaft speed. This is characteristic of single-shaft industrial turbines due to exhaust temperature limits. Typical Value = 0."^^ . - . - . - "ropen"@en . - . - . - . - "Maximum valve opening rate (Ropen). Unit = PU/sec. Typical Value = 0.10."^^ . - . - . - "rclose"@en . - . - . - . - "Minimum valve closing rate (Rclose). Unit = PU/sec. Typical Value = -0.1."^^ . - . - . - "kimw"@en . - . - . - . - "Power controller (reset) gain (Kimw). The default value of 0.01 corresponds to a reset time of 100 seconds. A value of 0.001 corresponds to a relatively slow acting load controller. Typical Value = 0.01."^^ . - . - . - "aset"@en . - . - . - . - "Acceleration limiter setpoint (Aset). Unit = PU/sec. Typical Value = 0.01."^^ . - . - . - "ka"@en . - . - . - . - "Acceleration limiter gain (Ka). Typical Value = 10."^^ . - . - . - "ta"@en . - . - . - . - "Acceleration limiter time constant (Ta) (>0). Typical Value = 0.1."^^ . - . - . - "db"@en . - . - . - . - "Speed governor dead band in per unit speed (db). In the majority of applications, it is recommended that this value be set to zero. Typical Value = 0."^^ . - . - . - "tsa"@en . - . - . - . - "Temperature detection lead time constant (Tsa). Typical Value = 4."^^ . - . - . - "tsb"@en . - . - . - . - "Temperature detection lag time constant (Tsb). Typical Value = 5."^^ . - . - . - "rup"@en . - . - . - . - "Maximum rate of load limit increase (Rup). Typical Value = 99."^^ . - . - . - "rdown"@en . - . - . - . - "Maximum rate of load limit decrease (Rdown). Typical Value = -99."^^ . - . - "GovCT2"@en . - . - "General governor model with frequency-dependent fuel flow limit. This model is a modification of the GovCT1 model in order to represent the frequency-dependent fuel flow limit of a specific gas turbine manufacturer."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "r"@en . - . - . - . - "Permanent droop (R). Typical Value = 0.05."^^ . - . - . - "rselect"@en . - . - . - . - "Feedback signal for droop (Rselect). Typical Value = electricalPower."^^ . - . - . - "tpelec"@en . - . - . - . - "Electrical power transducer time constant (Tpelec). Typical Value = 2.5."^^ . - . - . - "maxerr"@en . - . - . - . - "Maximum value for speed error signal (Maxerr). Typical Value = 1."^^ . - . - . - "minerr"@en . - . - . - . - "Minimum value for speed error signal (Minerr). Typical Value = -1."^^ . - . - . - "kpgov"@en . - . - . - . - "Governor proportional gain (Kpgov). Typical Value = 4."^^ . - . - . - "kigov"@en . - . - . - . - "Governor integral gain (Kigov). Typical Value = 0.45."^^ . - . - . - "kdgov"@en . - . - . - . - "Governor derivative gain (Kdgov). Typical Value = 0."^^ . - . - . - "tdgov"@en . - . - . - . - "Governor derivative controller time constant (Tdgov). Typical Value = 1."^^ . - . - . - "vmax"@en . - . - . - . - "Maximum valve position limit (Vmax). Typical Value = 1."^^ . - . - . - "vmin"@en . - . - . - . - "Minimum valve position limit (Vmin). Typical Value = 0.175."^^ . - . - . - "tact"@en . - . - . - . - "Actuator time constant (Tact). Typical Value = 0.4."^^ . - . - . - "kturb"@en . - . - . - . - "Turbine gain (Kturb). Typical Value = 1.9168."^^ . - . - . - "wfnl"@en . - . - . - . - "No load fuel flow (Wfnl). Typical Value = 0.187."^^ . - . - . - "tb"@en . - . - . - . - "Turbine lag time constant (Tb). Typical Value = 0.1."^^ . - . - . - "tc"@en . - . - . - . - "Turbine lead time constant (Tc). Typical Value = 0."^^ . - . - . - "wfspd"@en . - . - . - . - "Switch for fuel source characteristic to recognize that fuel flow, for a given fuel valve stroke, can be proportional to engine speed (Wfspd).true = fuel flow proportional to speed (for some gas turbines and diesel engines with positive displacement fuel injectors)false = fuel control system keeps fuel flow independent of engine speed.Typical Value = false."^^ . - . - . - "teng"@en . - . - . - . - "Transport time delay for diesel engine used in representing diesel engines where there is a small but measurable transport delay between a change in fuel flow setting and the development of torque (Teng). Teng should be zero in all but special cases where this transport delay is of particular concern. Typical Value = 0."^^ . - . - . - "tfload"@en . - . - . - . - "Load Limiter time constant (Tfload). Typical Value = 3."^^ . - . - . - "kpload"@en . - . - . - . - "Load limiter proportional gain for PI controller (Kpload). Typical Value = 1."^^ . - . - . - "kiload"@en . - . - . - . - "Load limiter integral gain for PI controller (Kiload). Typical Value = 1."^^ . - . - . - "ldref"@en . - . - . - . - "Load limiter reference value (Ldref). Typical Value = 1."^^ . - . - . - "dm"@en . - . - . - . - "Speed sensitivity coefficient (Dm). Dm can represent either the variation of the engine power with the shaft speed or the variation of maximum power capability with shaft speed. If it is positive it describes the falling slope of the engine speed verses power characteristic as speed increases. A slightly falling characteristic is typical for reciprocating engines and some aero-derivative turbines. If it is negative the engine power is assumed to be unaffected by the shaft speed, but the maximum permissible fuel flow is taken to fall with falling shaft speed. This is characteristic of single-shaft industrial turbines due to exhaust temperature limits. Typical Value = 0."^^ . - . - . - "ropen"@en . - . - . - . - "Maximum valve opening rate (Ropen). Unit = PU/sec. Typical Value = 99."^^ . - . - . - "rclose"@en . - . - . - . - "Minimum valve closing rate (Rclose). Unit = PU/sec. Typical Value = -99."^^ . - . - . - "kimw"@en . - . - . - . - "Power controller (reset) gain (Kimw). The default value of 0.01 corresponds to a reset time of 100 seconds. A value of 0.001 corresponds to a relatively slow acting load controller. Typical Value = 0."^^ . - . - . - "aset"@en . - . - . - . - "Acceleration limiter setpoint (Aset). Unit = PU/sec. Typical Value = 10."^^ . - . - . - "ka"@en . - . - . - . - "Acceleration limiter Gain (Ka). Typical Value = 10."^^ . - . - . - "ta"@en . - . - . - . - "Acceleration limiter time constant (Ta). Typical Value = 1."^^ . - . - . - "db"@en . - . - . - . - "Speed governor dead band in per unit speed (db). In the majority of applications, it is recommended that this value be set to zero. Typical Value = 0."^^ . - . - . - "tsa"@en . - . - . - . - "Temperature detection lead time constant (Tsa). Typical Value = 0."^^ . - . - . - "tsb"@en . - . - . - . - "Temperature detection lag time constant (Tsb). Typical Value = 50."^^ . - . - . - "rup"@en . - . - . - . - "Maximum rate of load limit increase (Rup). Typical Value = 99."^^ . - . - . - "rdown"@en . - . - . - . - "Maximum rate of load limit decrease (Rdown). Typical Value = -99."^^ . - . - . - "prate"@en . - . - . - . - "Ramp rate for frequency-dependent power limit (Prate). Typical Value = 0.017."^^ . - . - . - "flim1"@en . - . - . - . - "Frequency threshold 1 (Flim1). Unit = Hz. Typical Value = 59."^^ . - . - "Frequency"@en . - "Cycles per second."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix31 . -_:node1gda76hcix31 "Hz" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix32 . -_:node1gda76hcix32 "none" . - . - . - "plim1"@en . - . - . - . - "Power limit 1 (Plim1). Typical Value = 0.8325."^^ . - . - . - "flim2"@en . - . - . - . - "Frequency threshold 2 (Flim2). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim2"@en . - . - . - . - "Power limit 2 (Plim2). Typical Value = 0."^^ . - . - . - "flim3"@en . - . - . - . - "Frequency threshold 3 (Flim3). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim3"@en . - . - . - . - "Power limit 3 (Plim3). Typical Value = 0."^^ . - . - . - "flim4"@en . - . - . - . - "Frequency threshold 4 (Flim4). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim4"@en . - . - . - . - "Power limit 4 (Plim4). Typical Value = 0."^^ . - . - . - "flim5"@en . - . - . - . - "Frequency threshold 5 (Flim5). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim5"@en . - . - . - . - "Power limit 5 (Plim5). Typical Value = 0."^^ . - . - . - "flim6"@en . - . - . - . - "Frequency threshold 6 (Flim6). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim6"@en . - . - . - . - "Power limit 6 (Plim6). Typical Value = 0."^^ . - . - . - "flim7"@en . - . - . - . - "Frequency threshold 7 (Flim7). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim7"@en . - . - . - . - "Power limit 7 (Plim7). Typical Value = 0."^^ . - . - . - "flim8"@en . - . - . - . - "Frequency threshold 8 (Flim8). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim8"@en . - . - . - . - "Power limit 8 (Plim8). Typical Value = 0."^^ . - . - . - "flim9"@en . - . - . - . - "Frequency threshold 9 (Flim9). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim9"@en . - . - . - . - "Power Limit 9 (Plim9). Typical Value = 0."^^ . - . - . - "flim10"@en . - . - . - . - "Frequency threshold 10 (Flim10). Unit = Hz. Typical Value = 0."^^ . - . - . - "plim10"@en . - . - . - . - "Power limit 10 (Plim10). Typical Value = 0."^^ . - . - "GovGAST"@en . - . - "Single shaft gas turbine."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0)."^^ . - . - . - "r"@en . - . - . - . - "Permanent droop (R). Typical Value = 0.04."^^ . - . - . - "t1"@en . - . - . - . - "Governor mechanism time constant (T1). T1 represents the natural valve positioning time constant of the governor for small disturbances, as seen when rate limiting is not in effect. Typical Value = 0.5."^^ . - . - . - "t2"@en . - . - . - . - "Turbine power time constant (T2). T2 represents delay due to internal energy storage of the gas turbine engine. T2 can be used to give a rough approximation to the delay associated with acceleration of the compressor spool of a multi-shaft engine, or with the compressibility of gas in the plenum of a the free power turbine of an aero-derivative unit, for example. Typical Value = 0.5."^^ . - . - . - "t3"@en . - . - . - . - "Turbine exhaust temperature time constant (T3). Typical Value = 3."^^ . - . - . - "at"@en . - . - . - . - "Ambient temperature load limit (Load Limit). Typical Value = 1."^^ . - . - . - "kt"@en . - . - . - . - "Temperature limiter gain (Kt). Typical Value = 3."^^ . - . - . - "vmax"@en . - . - . - . - "Maximum turbine power, PU of MWbase (Vmax). Typical Value = 1."^^ . - . - . - "vmin"@en . - . - . - . - "Minimum turbine power, PU of MWbase (Vmin). Typical Value = 0."^^ . - . - . - "dturb"@en . - . - . - . - "Turbine damping factor (Dturb). Typical Value = 0.18."^^ . - . - "GovGAST1"@en . - . - "Modified single shaft gas turbine."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "r"@en . - . - . - . - "Permanent droop (R). Typical Value = 0.04."^^ . - . - . - "t1"@en . - . - . - . - "Governor mechanism time constant (T1). T1 represents the natural valve positioning time constant of the governor for small disturbances, as seen when rate limiting is not in effect. Typical Value = 0.5."^^ . - . - . - "t2"@en . - . - . - . - "Turbine power time constant (T2). T2 represents delay due to internal energy storage of the gas turbine engine. T2 can be used to give a rough approximation to the delay associated with acceleration of the compressor spool of a multi-shaft engine, or with the compressibility of gas in the plenum of the free power turbine of an aero-derivative unit, for example. Typical Value = 0.5."^^ . - . - . - "t3"@en . - . - . - . - "Turbine exhaust temperature time constant (T3). T3 represents delay in the exhaust temperature and load limiting system. Typical Value = 3."^^ . - . - . - "lmax"@en . - . - . - . - "Ambient temperature load limit (Lmax). Lmax is the turbine power output corresponding to the limiting exhaust gas temperature. Typical Value = 1."^^ . - . - . - "kt"@en . - . - . - . - "Temperature limiter gain (Kt). Typical Value = 3."^^ . - . - . - "vmax"@en . - . - . - . - "Maximum turbine power, PU of MWbase (Vmax). Typical Value = 1."^^ . - . - . - "vmin"@en . - . - . - . - "Minimum turbine power, PU of MWbase (Vmin). Typical Value = 0."^^ . - . - . - "fidle"@en . - . - . - . - "Fuel flow at zero power output (Fidle). Typical Value = 0.18."^^ . - . - . - "rmax"@en . - . - . - . - "Maximum fuel valve opening rate (Rmax). Unit = PU/sec. Typical Value = 1."^^ . - . - . - "loadinc"@en . - . - . - . - "Valve position change allowed at fast rate (Loadinc). Typical Value = 0.05."^^ . - . - . - "tltr"@en . - . - . - . - "Valve position averaging time constant (Tltr). Typical Value = 10."^^ . - . - . - "ltrate"@en . - . - . - . - "Maximum long term fuel valve opening rate (Ltrate). Typical Value = 0.02."^^ . - . - . - "a"@en . - . - . - . - "Turbine power time constant numerator scale factor (a). Typical Value = 0.8."^^ . - . - . - "b"@en . - . - . - . - "Turbine power time constant denominator scale factor (b). Typical Value = 1."^^ . - . - . - "db1"@en . - . - . - . - "Intentional dead-band width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional dead-band (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2,PU gv (Gv2). Typical Value = 0."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2). Typical Value = 0."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3). Typical Value = 0."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3). Typical Value = 0."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4). Typical Value = 0."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4). Typical Value = 0."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5). Typical Value = 0."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5). Typical Value = 0."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain point 6, PU gv (Gv6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain point 6, PU power (Pgv6). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Governor gain (Ka). Typical Value = 0."^^ . - . - . - "t4"@en . - . - . - . - "Governor lead time constant (T4). Typical Value = 0."^^ . - . - . - "t5"@en . - . - . - . - "Governor lag time constant (T5). Typical Value = 0."^^ . - . - "GovGAST2"@en . - . - "Gas turbine model."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "w"@en . - . - . - . - "Governor gain (1/droop) on turbine rating (W)."^^ . - . - . - "x"@en . - . - . - . - "Governor lead time constant (X)."^^ . - . - . - "y"@en . - . - . - . - "Governor lag time constant (Y) (>0)."^^ . - . - . - "z"@en . - . - . - . - "Governor mode (Z).true = Droopfalse = ISO."^^ . - . - . - "etd"@en . - . - . - . - "Turbine and exhaust delay (Etd)."^^ . - . - . - "tcd"@en . - . - . - . - " Compressor discharge time constant (Tcd)."^^ . - . - . - "trate"@en . - . - . - . - "Turbine rating (Trate). Unit = MW."^^ . - . - . - "t"@en . - . - . - . - "Fuel Control Time Constant (T)."^^ . - . - . - "tmax"@en . - . - . - . - "Maximum Turbine limit (Tmax)."^^ . - . - . - "tmin"@en . - . - . - . - "Minimum Turbine limit (Tmin)."^^ . - . - . - "ecr"@en . - . - . - . - "Combustion reaction time delay (Ecr)."^^ . - . - . - "k3"@en . - . - . - . - "Ratio of Fuel Adjustment (K3)."^^ . - . - . - "a"@en . - . - . - . - "Valve positioner (A)."^^ . - . - . - "b"@en . - . - . - . - "Valve positioner (B). "^^ . - . - . - "c"@en . - . - . - . - "Valve positioner (C). "^^ . - . - . - "tf"@en . - . - . - . - "Fuel system time constant (Tf)."^^ . - . - . - "kf"@en . - . - . - . - "Fuel system feedback (Kf)."^^ . - . - . - "k5"@en . - . - . - . - "Gain of radiation shield (K5)."^^ . - . - . - "k4"@en . - . - . - . - "Gain of radiation shield (K4)."^^ . - . - . - "t3"@en . - . - . - . - "Radiation shield time constant (T3)."^^ . - . - . - "t4"@en . - . - . - . - "Thermocouple time constant (T4)."^^ . - . - . - "tt"@en . - . - . - . - "Temperature controller integration rate (Tt)."^^ . - . - . - "t5"@en . - . - . - . - "Temperature control time constant (T5)."^^ . - . - . - "af1"@en . - . - . - . - "Exhaust temperature Parameter (Af1). Unit = per unit temperature. Based on temperature in degrees C."^^ . - . - . - "bf1"@en . - . - . - . - "(Bf1). Bf1 = E(1-w) where E (speed sensitivity coefficient) is 0.55 to 0.65 x Tr. Unit = per unit temperature. Based on temperature in degrees C."^^ . - . - . - "af2"@en . - . - . - . - "Coefficient equal to 0.5(1-speed) (Af2)."^^ . - . - . - "bf2"@en . - . - . - . - "Turbine Torque Coefficient Khhv (depends on heating value of fuel stream in combustion chamber) (Bf2)."^^ . - . - . - "cf2"@en . - . - . - . - "Coefficient defining fuel flow where power output is 0% (Cf2). Synchronous but no output. Typically 0.23 x Khhv (23% fuel flow)."^^ . - . - . - "tr"@en . - . - . - . - "Rated temperature (Tr). Unit = °C depending on parameters Af1 and Bf1."^^ . - . - "Temperature"@en . - "Value of temperature in degrees Celsius."^^ . - "CIMDatatype" . - . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix33 . -_:node1gda76hcix33 "none" . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix34 . -_:node1gda76hcix34 "degC" . - . - . - "value"@en . - . - . - . - . - . - "k6"@en . - . - . - . - "Minimum fuel flow (K6). "^^ . - . - . - "tc"@en . - . - . - . - "Temperature control (Tc). Unit = °F or °C depending on constants Af1 and Bf1. "^^ . - . - "GovGAST3"@en . - . - "Generic turbogas with acceleration and temperature controller."^^ . - . - . - . - . - "bp"@en . - . - . - . - "Droop (bp). Typical Value = 0.05."^^ . - . - . - "tg"@en . - . - . - . - "Time constant of speed governor (Tg). Typical Value = 0.05."^^ . - . - . - "rcmx"@en . - . - . - . - "Maximum fuel flow (RCMX). Typical Value = 1."^^ . - . - . - "rcmn"@en . - . - . - . - "Minimum fuel flow (RCMN). Typical Value = -0.1."^^ . - . - . - "ky"@en . - . - . - . - "Coefficient of transfer function of fuel valve positioner (Ky). Typical Value = 1."^^ . - . - . - "ty"@en . - . - . - . - "Time constant of fuel valve positioner (Ty). Typical Value = 0.2."^^ . - . - . - "tac"@en . - . - . - . - "Fuel control time constant (Tac). Typical Value = 0.1."^^ . - . - . - "kac"@en . - . - . - . - "Fuel system feedback (KAC). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Compressor discharge volume time constant (Tc). Typical Value = 0.2."^^ . - . - . - "bca"@en . - . - . - . - "Acceleration limit set-point (Bca). Unit = 1/s. Typical Value = 0.01."^^ . - . - . - "kca"@en . - . - . - . - "Acceleration control integral gain (Kca). Unit = 1/s. Typical Value = 100."^^ . - . - . - "dtc"@en . - . - . - . - "Exhaust temperature variation due to fuel flow increasing from 0 to 1 PU (deltaTc). Typical Value = 390."^^ . - . - . - "ka"@en . - . - . - . - "Minimum fuel flow (Ka). Typical Value = 0.23."^^ . - . - . - "tsi"@en . - . - . - . - "Time constant of radiation shield (Tsi). Typical Value = 15."^^ . - . - . - "ksi"@en . - . - . - . - "Gain of radiation shield (Ksi). Typical Value = 0.8."^^ . - . - . - "ttc"@en . - . - . - . - "Time constant of thermocouple (Ttc). Typical Value = 2.5."^^ . - . - . - "tfen"@en . - . - . - . - "Turbine rated exhaust temperature correspondent to Pm=1 PU (Tfen). Typical Value = 540."^^ . - . - . - "td"@en . - . - . - . - "Temperature controller derivative gain (Td). Typical Value = 3.3."^^ . - . - . - "tt"@en . - . - . - . - "Temperature controller integration rate (Tt). Typical Value = 250."^^ . - . - . - "mxef"@en . - . - . - . - "Fuel flow maximum positive error value (MXEF). Typical Value = 0.05."^^ . - . - . - "mnef"@en . - . - . - . - "Fuel flow maximum negative error value (MNEF). Typical Value = -0.05."^^ . - . - "GovGAST4"@en . - . - "Generic turbogas."^^ . - . - . - . - . - "bp"@en . - . - . - . - "Droop (bp). Typical Value = 0.05."^^ . - . - . - "tv"@en . - . - . - . - "Time constant of fuel valve positioner (Ty). Typical Value = 0.1."^^ . - . - . - "ta"@en . - . - . - . - "Maximum gate opening velocity (TA). Typical Value = 3."^^ . - . - . - "tc"@en . - . - . - . - "Maximum gate closing velocity (Tc). Typical Value = 0.5."^^ . - . - . - "tcm"@en . - . - . - . - "Fuel control time constant (Tcm). Typical Value = 0.1."^^ . - . - . - "ktm"@en . - . - . - . - "Compressor gain (Ktm). Typical Value = 0."^^ . - . - . - "tm"@en . - . - . - . - "Compressor discharge volume time constant (Tm). Typical Value = 0.2."^^ . - . - . - "rymx"@en . - . - . - . - "Maximum valve opening (RYMX). Typical Value = 1.1."^^ . - . - . - "rymn"@en . - . - . - . - "Minimum valve opening (RYMN). Typical Value = 0."^^ . - . - . - "mxef"@en . - . - . - . - "Fuel flow maximum positive error value (MXEF). Typical Value = 0.05."^^ . - . - . - "mnef"@en . - . - . - . - "Fuel flow maximum negative error value (MNEF). Typical Value = -0.05."^^ . - . - "GovGASTWD"@en . - . - "Woodward Gas turbine governor model. "^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "kdroop"@en . - . - . - . - "(Kdroop)."^^ . - . - . - "kp"@en . - . - . - . - "PID Proportional gain (Kp)."^^ . - . - . - "ki"@en . - . - . - . - "Isochronous Governor Gain (Ki)."^^ . - . - . - "kd"@en . - . - . - . - "Drop Governor Gain (Kd)."^^ . - . - . - "etd"@en . - . - . - . - "Turbine and exhaust delay (Etd)."^^ . - . - . - "tcd"@en . - . - . - . - "Compressor discharge time constant (Tcd)."^^ . - . - . - "trate"@en . - . - . - . - "Turbine rating (Trate). Unit = MW."^^ . - . - . - "t"@en . - . - . - . - "Fuel Control Time Constant (T)."^^ . - . - . - "tmax"@en . - . - . - . - "Maximum Turbine limit (Tmax)."^^ . - . - . - "tmin"@en . - . - . - . - "Minimum Turbine limit (Tmin)."^^ . - . - . - "ecr"@en . - . - . - . - "Combustion reaction time delay (Ecr)."^^ . - . - . - "k3"@en . - . - . - . - "Ratio of Fuel Adjustment (K3)."^^ . - . - . - "a"@en . - . - . - . - "Valve positioner (A)."^^ . - . - . - "b"@en . - . - . - . - "Valve positioner (B). "^^ . - . - . - "c"@en . - . - . - . - "Valve positioner (C). "^^ . - . - . - "tf"@en . - . - . - . - "Fuel system time constant (Tf)."^^ . - . - . - "kf"@en . - . - . - . - "Fuel system feedback (Kf)."^^ . - . - . - "k5"@en . - . - . - . - "Gain of radiation shield (K5)."^^ . - . - . - "k4"@en . - . - . - . - "Gain of radiation shield (K4)."^^ . - . - . - "t3"@en . - . - . - . - "Radiation shield time constant (T3)."^^ . - . - . - "t4"@en . - . - . - . - "Thermocouple time constant (T4)."^^ . - . - . - "tt"@en . - . - . - . - "Temperature controller integration rate (Tt)."^^ . - . - . - "t5"@en . - . - . - . - "Temperature control time constant (T5)."^^ . - . - . - "af1"@en . - . - . - . - "Exhaust temperature Parameter (Af1)."^^ . - . - . - "bf1"@en . - . - . - . - "(Bf1). Bf1 = E(1-w) where E (speed sensitivity coefficient) is 0.55 to 0.65 x Tr."^^ . - . - . - "af2"@en . - . - . - . - "Coefficient equal to 0.5(1-speed) (Af2)."^^ . - . - . - "bf2"@en . - . - . - . - "Turbine Torque Coefficient Khhv (depends on heating value of fuel stream in combustion chamber) (Bf2)."^^ . - . - . - "cf2"@en . - . - . - . - "Coefficient defining fuel flow where power output is 0% (Cf2). Synchronous but no output. Typically 0.23 x Khhv (23% fuel flow)."^^ . - . - . - "tr"@en . - . - . - . - "Rated temperature (Tr)."^^ . - . - . - "k6"@en . - . - . - . - "Minimum fuel flow (K6). "^^ . - . - . - "tc"@en . - . - . - . - "Temperature control (Tc)."^^ . - . - . - "td"@en . - . - . - . - "Power transducer time constant (Td)."^^ . - . - "GovHydro1"@en . - . - "Basic Hydro turbine governor model."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "rperm"@en . - . - . - . - "Permanent droop (R) (>0). Typical Value = 0.04."^^ . - . - . - "rtemp"@en . - . - . - . - "Temporary droop (r) (>R). Typical Value = 0.3."^^ . - . - . - "tr"@en . - . - . - . - "Washout time constant (Tr) (>0). Typical Value = 5."^^ . - . - . - "tf"@en . - . - . - . - "Filter time constant (Tf) (>0). Typical Value = 0.05."^^ . - . - . - "tg"@en . - . - . - . - "Gate servo time constant (Tg) (>0). Typical Value = 0.5."^^ . - . - . - "velm"@en . - . - . - . - "Maximum gate velocity (Vlem) (>0). Typical Value = 0.2."^^ . - . - . - "gmax"@en . - . - . - . - "Maximum gate opening (Gmax) (>0). Typical Value = 1."^^ . - . - . - "gmin"@en . - . - . - . - "Minimum gate opening (Gmin) (>=0). Typical Value = 0."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw) (>0). Typical Value = 1."^^ . - . - . - "at"@en . - . - . - . - "Turbine gain (At) (>0). Typical Value = 1.2."^^ . - . - . - "dturb"@en . - . - . - . - "Turbine damping factor (Dturb) (>=0). Typical Value = 0.5."^^ . - . - . - "qnl"@en . - . - . - . - "No-load flow at nominal head (qnl) (>=0). Typical Value = 0.08."^^ . - . - . - "hdam"@en . - . - . - . - "Turbine nominal head (hdam). Typical Value = 1."^^ . - . - "GovHydro2"@en . - . - "IEEE hydro turbine governor model represents plants with straightforward penstock configurations and hydraulic-dashpot governors."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "tg"@en . - . - . - . - "Gate servo time constant (Tg). Typical Value = 0.5."^^ . - . - . - "tp"@en . - . - . - . - "Pilot servo valve time constant (Tp). Typical Value = 0.03."^^ . - . - . - "uo"@en . - . - . - . - "Maximum gate opening velocity (Uo). Unit = PU/sec. Typical Value = 0.1."^^ . - . - . - "uc"@en . - . - . - . - "Maximum gate closing velocity (Uc) (<0). Unit = PU/sec. Typical Value = -0.1."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum gate opening (Pmax). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum gate opening; (Pmin). Typical Value = 0."^^ . - . - . - "rperm"@en . - . - . - . - "Permanent droop (Rperm). Typical Value = 0.05."^^ . - . - . - "rtemp"@en . - . - . - . - "Temporary droop (Rtemp). Typical Value = 0.5."^^ . - . - . - "tr"@en . - . - . - . - "Dashpot time constant (Tr). Typical Value = 12."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw). Typical Value = 2."^^ . - . - . - "kturb"@en . - . - . - . - "Turbine gain (Kturb). Typical Value = 1."^^ . - . - . - "aturb"@en . - . - . - . - "Turbine numerator multiplier (Aturb). Typical Value = -1."^^ . - . - . - "bturb"@en . - . - . - . - "Turbine denominator multiplier (Bturb). Typical Value = 0.5."^^ . - . - . - "db1"@en . - . - . - . - "Intentional deadband width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional deadband (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2, PU gv (Gv2). Typical Value = 0."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2). Typical Value = 0."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3). Typical Value = 0."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3). Typical Value = 0."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4). Typical Value = 0."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4). Typical Value = 0."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5). Typical Value = 0."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5). Typical Value = 0."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain point 6, PU gv (Gv6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain point 6, PU power (Pgv6). Typical Value = 0."^^ . - . - "GovHydro3"@en . - . - "Modified IEEE Hydro Governor-Turbine Model.This model differs from that defined in the IEEE modeling guideline paper in that the limits on gate position and velocity do not permit \"wind up\" of the upstream signals."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (> 0). Unit = MW."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum gate opening, PU of MWbase (Pmax). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum gate opening, PU of MWbase (Pmin). Typical Value = 0."^^ . - . - . - "governorControl"@en . - . - . - . - "Governor control flag (Cflag).true = PID control is activefalse = double derivative control is active.Typical Value = true."^^ . - . - . - "rgate"@en . - . - . - . - "Steady-state droop, PU, for governor output feedback (Rgate). Typical Value = 0."^^ . - . - . - "relec"@en . - . - . - . - "Steady-state droop, PU, for electrical power feedback (Relec). Typical Value = 0.05."^^ . - . - . - "td"@en . - . - . - . - "Input filter time constant (Td). Typical Value = 0.05."^^ . - . - . - "tf"@en . - . - . - . - "Washout time constant (Tf). Typical Value = 0.1."^^ . - . - . - "tp"@en . - . - . - . - "Gate servo time constant (Tp). Typical Value = 0.05."^^ . - . - . - "velop"@en . - . - . - . - "Maximum gate opening velocity (Velop). Unit = PU/sec. Typical Value = 0.2."^^ . - . - . - "velcl"@en . - . - . - . - "Maximum gate closing velocity (Velcl). Unit = PU/sec. Typical Value = -0.2."^^ . - . - . - "k1"@en . - . - . - . - "Derivative gain (K1). Typical Value = 0.01."^^ . - . - . - "k2"@en . - . - . - . - "Double derivative gain, if Cflag = -1 (K2). Typical Value = 2.5."^^ . - . - . - "ki"@en . - . - . - . - "Integral gain (Ki). Typical Value = 0.5."^^ . - . - . - "kg"@en . - . - . - . - "Gate servo gain (Kg). Typical Value = 2."^^ . - . - . - "tt"@en . - . - . - . - "Power feedback time constant (Tt). Typical Value = 0.2."^^ . - . - . - "db1"@en . - . - . - . - "Intentional dead-band width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional dead-band (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw). Typical Value = 1."^^ . - . - . - "at"@en . - . - . - . - "Turbine gain (At). Typical Value = 1.2."^^ . - . - . - "dturb"@en . - . - . - . - "Turbine damping factor (Dturb). Typical Value = 0.2."^^ . - . - . - "qnl"@en . - . - . - . - "No-load turbine flow at nominal head (Qnl). Typical Value = 0.08."^^ . - . - . - "h0"@en . - . - . - . - "Turbine nominal head (H0). Typical Value = 1."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2, PU gv (Gv2). Typical Value = 0."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2). Typical Value = 0."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3). Typical Value = 0."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3). Typical Value = 0."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4). Typical Value = 0."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4). Typical Value = 0."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5). Typical Value = 0."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5). Typical Value = 0."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain point 6, PU gv (Gv6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain point 6, PU power (Pgv6). Typical Value = 0."^^ . - . - "GovHydro4"@en . - . - "Hydro turbine and governor. Represents plants with straight-forward penstock configurations and hydraulic governors of traditional 'dashpot' type. This model can be used to represent simple, Francis, Pelton or Kaplan turbines."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "tg"@en . - . - . - . - "Gate servo time constant (Tg) (>0). Typical Value = 0.5."^^ . - . - . - "tp"@en . - . - . - . - "Pilot servo time constant (Tp). Typical Value = 0.1."^^ . - . - . - "uo"@en . - . - . - . - "Max gate opening velocity (Uo). Typical Vlaue = 0.2."^^ . - . - . - "uc"@en . - . - . - . - "Max gate closing velocity (Uc). Typical Value = 0.2."^^ . - . - . - "gmax"@en . - . - . - . - "Maximum gate opening, PU of MWbase (Gmax). Typical Value = 1."^^ . - . - . - "gmin"@en . - . - . - . - "Minimum gate opening, PU of MWbase (Gmin). Typical Value = 0."^^ . - . - . - "rperm"@en . - . - . - . - "Permanent droop (Rperm). Typical Value = 0.05."^^ . - . - . - "rtemp"@en . - . - . - . - "Temporary droop (Rtemp). Typical Value = 0.3."^^ . - . - . - "tr"@en . - . - . - . - "Dashpot time constant (Tr) (>0). Typical Value = 5."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw) (>0). Typical Value = 1."^^ . - . - . - "at"@en . - . - . - . - "Turbine gain (At). Typical Value = 1.2."^^ . - . - . - "dturb"@en . - . - . - . - "Turbine damping factor (Dturb). Unit = delta P (PU of MWbase) / delta speed (PU).Typical Value = 0.5. Typical Value Francis = 1.1, Kaplan = 1.1."^^ . - . - . - "hdam"@en . - . - . - . - "Head available at dam (hdam). Typical Value = 1."^^ . - . - . - "qn1"@en . - . - . - . - "No-load flow at nominal head (Qnl).Typical Value = 0.08. Typical Value Francis = 0, Kaplan = 0."^^ . - . - . - "db1"@en . - . - . - . - "Intentional deadband width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional dead-band (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "gv0"@en . - . - . - . - "Nonlinear gain point 0, PU gv (Gv0).Typical Value = 0. Typical Value Francis = 0.1, Kaplan = 0.1."^^ . - . - . - "pgv0"@en . - . - . - . - "Nonlinear gain point 0, PU power (Pgv0). Typical Value = 0."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1).Typical Value = 0. Typical Value Francis = 0.4, Kaplan = 0.4."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1).Typical Value = 0. Typical Value Francis = 0.42, Kaplan = 0.35."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2, PU gv (Gv2).Typical Value = 0. Typical Value Francis = 0.5, Kaplan = 0.5."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2).Typical Value = 0. Typical Value Francis = 0.56, Kaplan = 0.468."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3).Typical Value = 0. Typical Value Francis = 0.7, Kaplan = 0.7."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3).Typical Value = 0. Typical Value Francis = 0.8, Kaplan = 0.796."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4).Typical Value = 0. Typical Value Francis = 0.8, Kaplan = 0.8."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4).Typical Value = 0. Typical Value Francis = 0.9, Kaplan = 0.917."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5).Typical Value = 0. Typical Value Francis = 0.9, Kaplan = 0.9."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5).Typical Value = 0. Typical Value Francis = 0.97, Kaplan = 0.99."^^ . - . - . - "bgv0"@en . - . - . - . - "Kaplan blade servo point 0 (Bgv0). Typical Value = 0."^^ . - . - . - "bgv1"@en . - . - . - . - "Kaplan blade servo point 1 (Bgv1). Typical Value = 0."^^ . - . - . - "bgv2"@en . - . - . - . - "Kaplan blade servo point 2 (Bgv2).Typical Value = 0. Typical Value Francis = 0, Kaplan = 0.1."^^ . - . - . - "bgv3"@en . - . - . - . - "Kaplan blade servo point 3 (Bgv3).Typical Value = 0. Typical Value Francis = 0, Kaplan = 0.667."^^ . - . - . - "bgv4"@en . - . - . - . - "Kaplan blade servo point 4 (Bgv4).Typical Value = 0. Typical Value Francis = 0, Kaplan = 0.9."^^ . - . - . - "bgv5"@en . - . - . - . - "Kaplan blade servo point 5 (Bgv5).Typical Value = 0. Typical Value Francis = 0, Kaplan = 1."^^ . - . - . - "bmax"@en . - . - . - . - "Maximum blade adjustment factor (Bmax).Typical Value = 0. Typical Value Francis = 0, Kaplan = 1.1276."^^ . - . - . - "tblade"@en . - . - . - . - "Blade servo time constant (Tblade). Typical Value = 100."^^ . - . - "GovHydroDD"@en . - . - "Double derivative hydro governor and turbine."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum gate opening, PU of MWbase (Pmax). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum gate opening, PU of MWbase (Pmin). Typical Value = 0."^^ . - . - . - "r"@en . - . - . - . - "Steady state droop (R). Typical Value = 0.05."^^ . - . - . - "td"@en . - . - . - . - "Input filter time constant (Td). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Washout time constant (Tf). Typical Value = 0.1."^^ . - . - . - "tp"@en . - . - . - . - "Gate servo time constant (Tp). Typical Value = 0.35."^^ . - . - . - "velop"@en . - . - . - . - "Maximum gate opening velocity (Velop). Unit = PU/sec. Typical Value = 0.09."^^ . - . - . - "velcl"@en . - . - . - . - "Maximum gate closing velocity (Velcl). Unit = PU/sec. Typical Value = -0.14."^^ . - . - . - "k1"@en . - . - . - . - "Single derivative gain (K1). Typical Value = 3.6."^^ . - . - . - "k2"@en . - . - . - . - "Double derivative gain (K2). Typical Value = 0.2."^^ . - . - . - "ki"@en . - . - . - . - "Integral gain (Ki). Typical Value = 1."^^ . - . - . - "kg"@en . - . - . - . - "Gate servo gain (Kg). Typical Value = 3."^^ . - . - . - "tturb"@en . - . - . - . - "Turbine time constant (Tturb) (note 3). Typical Value = 0.8."^^ . - . - . - "aturb"@en . - . - . - . - "Turbine numerator multiplier (Aturb) (note 3). Typical Value = -1."^^ . - . - . - "bturb"@en . - . - . - . - "Turbine denominator multiplier (Bturb) (note 3). Typical Value = 0.5."^^ . - . - . - "tt"@en . - . - . - . - "Power feedback time constant (Tt). Typical Value = 0.02."^^ . - . - . - "db1"@en . - . - . - . - "Intentional dead-band width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional dead-band (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2, PU gv (Gv2). Typical Value = 0."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2). Typical Value = 0."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3). Typical Value = 0."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3). Typical Value = 0."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4). Typical Value = 0."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4). Typical Value = 0."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5). Typical Value = 0."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5). Typical Value = 0."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain point 6, PU gv (Gv6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain point 6, PU power (Pgv6). Typical Value = 0."^^ . - . - . - "gmax"@en . - . - . - . - "Maximum gate opening (Gmax). Typical Value = 0."^^ . - . - . - "gmin"@en . - . - . - . - "Minimum gate opening (Gmin). Typical Value = 0."^^ . - . - . - "inputSignal"@en . - . - . - . - "Input signal switch (Flag).true = Pe input is usedfalse = feedback is received from CV.Flag is normally dependent on Tt. If Tf is zero, Flag is set to false. If Tf is not zero, Flag is set to true.Typical Value = true."^^ . - . - "GovHydroFrancis"@en . - . - "Detailed hydro unit - Francis model. This model can be used to represent three types of governors.A schematic of the hydraulic system of detailed hydro unit models, like Francis and Pelton, is provided in the DetailedHydroModelHydraulicSystem diagram."^^ . - . - . - . - . - "am"@en . - . - . - . - "Opening section Seff at the maximum efficiency (Am). Typical Value = 0.7."^^ . - . - . - "av0"@en . - . - . - . - "Area of the surge tank (AV0). Unit = m2. Typical Value = 30."^^ . - . - "Area"@en . - "Area."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix35 . -_:node1gda76hcix35 "m2" . - . - . - "multiplier"@en . - . - . - . - . - . - "av1"@en . - . - . - . - "Area of the compensation tank (AV1). Unit = m2. Typical Value = 700."^^ . - . - . - "bp"@en . - . - . - . - "Droop (Bp). Typical Value = 0.05."^^ . - . - . - "db1"@en . - . - . - . - "Intentional dead-band width (DB1). Unit = Hz. Typical Value = 0."^^ . - . - . - "etamax"@en . - . - . - . - "Maximum efficiency (EtaMax). Typical Value = 1.05."^^ . - . - . - "governorControl"@en . - . - . - . - "Governor control flag (Cflag). Typical Value = mechanicHydrolicTachoAccelerator."^^ . - . - "FrancisGovernorControlKind"@en . - "Governor control flag for Francis hydro model."^^ . - . - . - . - "mechanicHydrolicTachoAccelerator"@en . - "Mechanic-hydraulic regulator with tacho-accelerometer (Cflag = 1)."^^ . - . - "mechanicHydraulicTransientFeedback"@en . - "Mechanic-hydraulic regulator with transient feedback (Cflag=2)."^^ . - . - "electromechanicalElectrohydraulic"@en . - "Electromechanical and electrohydraulic regulator (Cflag=3)."^^ . - . - . - "h1"@en . - . - . - . - "Head of compensation chamber water level with respect to the level of penstock (H1). Unit = m. Typical Value = 4."^^ . - . - "Length"@en . - "Unit of length. Never negative."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix36 . -_:node1gda76hcix36 "m" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix37 . -_:node1gda76hcix37 "k" . - . - . - "h2"@en . - . - . - . - "Head of surge tank water level with respect to the level of penstock (H2). Unit = m. Typical Value = 40."^^ . - . - . - "hn"@en . - . - . - . - "Rated hydraulic head (Hn). Unit = m. Typical Value = 250."^^ . - . - . - "kc"@en . - . - . - . - "Penstock loss coefficient (due to friction) (Kc). Typical Value = 0.025."^^ . - . - . - "kg"@en . - . - . - . - "Water tunnel and surge chamber loss coefficient (due to friction) (Kg). Typical Value = 0.025."^^ . - . - . - "kt"@en . - . - . - . - "Washout gain (Kt). Typical Value = 0.25."^^ . - . - . - "qc0"@en . - . - . - . - "No-load turbine flow at nominal head (Qc0). Typical Value = 0.21."^^ . - . - . - "qn"@en . - . - . - . - "Rated flow (Qn). Unit = m3/s. Typical Value = 40."^^ . - . - "VolumeFlowRate"@en . - "Volume per time."^^ . - "CIMDatatype" . - . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix38 . -_:node1gda76hcix38 "none" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix39 . -_:node1gda76hcix39 "s" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix40 . -_:node1gda76hcix40 "none" . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix41 . -_:node1gda76hcix41 "m3" . - . - . - "value"@en . - . - . - . - . - . - "ta"@en . - . - . - . - "Derivative gain (Ta). Typical Value = 3."^^ . - . - . - "td"@en . - . - . - . - "Washout time constant (Td). Typical Value = 3."^^ . - . - . - "ts"@en . - . - . - . - "Gate servo time constant (Ts). Typical Value = 0.5."^^ . - . - . - "twnc"@en . - . - . - . - "Water inertia time constant (Twnc). Typical Value = 1."^^ . - . - . - "twng"@en . - . - . - . - "Water tunnel and surge chamber inertia time constant (Twng). Typical Value = 3."^^ . - . - . - "tx"@en . - . - . - . - "Derivative feedback gain (Tx). Typical Value = 1."^^ . - . - . - "va"@en . - . - . - . - "Maximum gate opening velocity (Va). Unit = PU/sec. Typical Value = 0.011."^^ . - . - . - "valvmax"@en . - . - . - . - "Maximum gate opening (ValvMax). Typical Value = 1."^^ . - . - . - "valvmin"@en . - . - . - . - "Minimum gate opening (ValvMin). Typical Value = 0."^^ . - . - . - "vc"@en . - . - . - . - "Maximum gate closing velocity (Vc). Unit = PU/sec. Typical Value = -0.011."^^ . - . - . - "waterTunnelSurgeChamberSimulation"@en . - . - . - . - "Water tunnel and surge chamber simulation (Tflag).true = enable of water tunnel and surge chamber simulationfalse = inhibit of water tunnel and surge chamber simulation.Typical Value = false."^^ . - . - . - "zsfc"@en . - . - . - . - "Head of upper water level with respect to the level of penstock (Zsfc). Unit = m. Typical Value = 25."^^ . - . - "GovHydroPelton"@en . - . - "Detailed hydro unit - Pelton model. This model can be used to represent the dynamic related to water tunnel and surge chamber.A schematic of the hydraulic system of detailed hydro unit models, like Francis and Pelton, is located under the GovHydroFrancis class."^^ . - . - . - . - . - "av0"@en . - . - . - . - "Area of the surge tank (AV0). Unit = m2. Typical Value = 30."^^ . - . - . - "av1"@en . - . - . - . - "Area of the compensation tank (AV1). Unit = m2. Typical Value = 700."^^ . - . - . - "bp"@en . - . - . - . - "Droop (bp). Typical Value = 0.05."^^ . - . - . - "db1"@en . - . - . - . - "Intentional dead-band width (DB1). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Intentional dead-band width of valve opening error (DB2). Unit = Hz. Typical Value = 0.01."^^ . - . - . - "h1"@en . - . - . - . - "Head of compensation chamber water level with respect to the level of penstock (H1). Unit = m. Typical Value = 4."^^ . - . - . - "h2"@en . - . - . - . - "Head of surge tank water level with respect to the level of penstock (H2). Unit = m. Typical Value = 40."^^ . - . - . - "hn"@en . - . - . - . - "Rated hydraulic head (Hn). Unit = m. Typical Value = 250."^^ . - . - . - "kc"@en . - . - . - . - "Penstock loss coefficient (due to friction) (Kc). Typical Value = 0.025."^^ . - . - . - "kg"@en . - . - . - . - "Water tunnel and surge chamber loss coefficient (due to friction) (Kg). Typical Value = -0.025."^^ . - . - . - "qc0"@en . - . - . - . - "No-load turbine flow at nominal head (Qc0). Typical Value = 0.05."^^ . - . - . - "qn"@en . - . - . - . - "Rated flow (Qn). Unit = m3/s. Typical Value = 40."^^ . - . - . - "simplifiedPelton"@en . - . - . - . - "Simplified Pelton model simulation (Sflag).true = enable of simplified Pelton model simulationfalse = enable of complete Pelton model simulation (non linear gain).Typical Value = false."^^ . - . - . - "staticCompensating"@en . - . - . - . - "Static compensating characteristic (Cflag).true = enable of static compensating characteristicfalse = inhibit of static compensating characteristic.Typical Value = false."^^ . - . - . - "ta"@en . - . - . - . - "Derivative gain (accelerometer time constant) (Ta). Typical Value = 3."^^ . - . - . - "ts"@en . - . - . - . - "Gate servo time constant (Ts). Typical Value = 0.15."^^ . - . - . - "tv"@en . - . - . - . - "Servomotor integrator time constant (TV). Typical Value = 0.3."^^ . - . - . - "twnc"@en . - . - . - . - "Water inertia time constant (Twnc). Typical Value = 1."^^ . - . - . - "twng"@en . - . - . - . - "Water tunnel and surge chamber inertia time constant (Twng). Typical Value = 3."^^ . - . - . - "tx"@en . - . - . - . - "Electronic integrator time constant (Tx). Typical Value = 0.5."^^ . - . - . - "va"@en . - . - . - . - "Maximum gate opening velocity (Va). Unit = PU/sec. Typical Value = 0.016."^^ . - . - . - "valvmax"@en . - . - . - . - "Maximum gate opening (ValvMax). Typical Value = 1."^^ . - . - . - "valvmin"@en . - . - . - . - "Minimum gate opening (ValvMin). Typical Value = 0."^^ . - . - . - "vav"@en . - . - . - . - "Maximum servomotor valve opening velocity (Vav). Typical Value = 0.017."^^ . - . - . - "vc"@en . - . - . - . - "Maximum gate closing velocity (Vc). Unit = PU/sec. Typical Value = -0.016."^^ . - . - . - "vcv"@en . - . - . - . - "Maximum servomotor valve closing velocity (Vcv). Typical Value = -0.017."^^ . - . - . - "waterTunnelSurgeChamberSimulation"@en . - . - . - . - "Water tunnel and surge chamber simulation (Tflag).true = enable of water tunnel and surge chamber simulationfalse = inhibit of water tunnel and surge chamber simulation.Typical Value = false."^^ . - . - . - "zsfc"@en . - . - . - . - "Head of upper water level with respect to the level of penstock (Zsfc). Unit = m. Typical Value = 25."^^ . - . - "GovHydroPID"@en . - . - "PID governor and turbine."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum gate opening, PU of MWbase (Pmax). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum gate opening, PU of MWbase (Pmin). Typical Value = 0."^^ . - . - . - "r"@en . - . - . - . - "Steady state droop (R). Typical Value = 0.05."^^ . - . - . - "td"@en . - . - . - . - "Input filter time constant (Td). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Washout time constant (Tf). Typical Value = 0.1."^^ . - . - . - "tp"@en . - . - . - . - "Gate servo time constant (Tp). Typical Value = 0.35."^^ . - . - . - "velop"@en . - . - . - . - "Maximum gate opening velocity (Velop). Unit = PU/sec. Typical Value = 0.09."^^ . - . - . - "velcl"@en . - . - . - . - "Maximum gate closing velocity (Velcl). Unit = PU/sec. Typical Value = -0.14."^^ . - . - . - "kd"@en . - . - . - . - "Derivative gain (Kd). Typical Value = 1.11."^^ . - . - . - "kp"@en . - . - . - . - "Proportional gain (Kp). Typical Value = 0.1."^^ . - . - . - "ki"@en . - . - . - . - "Integral gain (Ki). Typical Value = 0.36."^^ . - . - . - "kg"@en . - . - . - . - "Gate servo gain (Kg). Typical Value = 2.5."^^ . - . - . - "tturb"@en . - . - . - . - "Turbine time constant (Tturb) (note 3). Typical Value = 0.8."^^ . - . - . - "aturb"@en . - . - . - . - "Turbine numerator multiplier (Aturb) (note 3). Typical Value -1."^^ . - . - . - "bturb"@en . - . - . - . - "Turbine denominator multiplier (Bturb) (note 3). Typical Value = 0.5."^^ . - . - . - "tt"@en . - . - . - . - "Power feedback time constant (Tt). Typical Value = 0.02."^^ . - . - . - "db1"@en . - . - . - . - "Intentional dead-band width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "inputSignal"@en . - . - . - . - "Input signal switch (Flag).true = Pe input is usedfalse = feedback is received from CV.Flag is normally dependent on Tt. If Tf is zero, Flag is set to false. If Tf is not zero, Flag is set to true. Typical Value = true."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional dead-band (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2, PU gv (Gv2). Typical Value = 0."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2). Typical Value = 0."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3). Typical Value = 0."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3). Typical Value = 0."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4). Typical Value = 0."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4). Typical Value = 0."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5). Typical Value = 0."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5). Typical Value = 0."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain point 6, PU gv (Gv6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain point 6, PU power (Pgv6). Typical Value = 0."^^ . - . - "GovHydroPID2"@en . - . - "Hydro turbine and governor. Represents plants with straight forward penstock configurations and \"three term\" electro-hydraulic governors (i.e. Woodard electronic)."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "treg"@en . - . - . - . - "Speed detector time constant (Treg). Typical Value = 0."^^ . - . - . - "rperm"@en . - . - . - . - "Permanent drop (Rperm). Typical Value = 0."^^ . - . - . - "kp"@en . - . - . - . - "Proportional gain (Kp). Typical Value = 0."^^ . - . - . - "ki"@en . - . - . - . - "Reset gain (Ki). Unit = PU/ sec. Typical Value = 0."^^ . - . - . - "kd"@en . - . - . - . - "Derivative gain (Kd). Typical Value = 0."^^ . - . - . - "ta"@en . - . - . - . - "Controller time constant (Ta) (>0). Typical Value = 0."^^ . - . - . - "tb"@en . - . - . - . - "Gate servo time constant (Tb) (>0). Typical Value = 0."^^ . - . - . - "velmax"@en . - . - . - . - "Maximum gate opening velocity (Velmax). Unit = PU/sec. Typical Value = 0."^^ . - . - . - "velmin"@en . - . - . - . - "Maximum gate closing velocity (Velmin). Unit = PU/sec. Typical Value = 0."^^ . - . - . - "gmax"@en . - . - . - . - "Maximum gate opening (Gmax). Typical Value = 0."^^ . - . - . - "gmin"@en . - . - . - . - "Minimum gate opening (Gmin). Typical Value = 0."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw) (>0). Typical Value = 0."^^ . - . - . - "d"@en . - . - . - . - "Turbine damping factor (D). Unit = delta P / delta speed. Typical Value = 0."^^ . - . - . - "g0"@en . - . - . - . - "Gate opening at speed no load (G0). Typical Value = 0."^^ . - . - . - "g1"@en . - . - . - . - "Intermediate gate opening (G1). Typical Value = 0."^^ . - . - . - "p1"@en . - . - . - . - "Power at gate opening G1 (P1). Typical Value = 0."^^ . - . - . - "g2"@en . - . - . - . - "Intermediate gate opening (G2). Typical Value = 0."^^ . - . - . - "p2"@en . - . - . - . - "Power at gate opening G2 (P2). Typical Value = 0."^^ . - . - . - "p3"@en . - . - . - . - "Power at full opened gate (P3). Typical Value = 0."^^ . - . - . - "atw"@en . - . - . - . - "Factor multiplying Tw (Atw). Typical Value = 0."^^ . - . - . - "feedbackSignal"@en . - . - . - . - "Feedback signal type flag (Flag).true = use gate position feedback signalfalse = use Pe."^^ . - . - "GovHydroR"@en . - . - "Fourth order lead-lag governor and hydro turbine. "^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum gate opening, PU of MWbase (Pmax). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum gate opening, PU of MWbase (Pmin). Typical Value = 0."^^ . - . - . - "r"@en . - . - . - . - "Steady-state droop (R). Typical Value = 0.05."^^ . - . - . - "td"@en . - . - . - . - "Input filter time constant (Td). Typical Value = 0.05."^^ . - . - . - "t1"@en . - . - . - . - "Lead time constant 1 (T1). Typical Value = 1.5."^^ . - . - . - "t2"@en . - . - . - . - "Lag time constant 1 (T2). Typical Value = 0.1."^^ . - . - . - "t3"@en . - . - . - . - "Lead time constant 2 (T3). Typical Value = 1.5."^^ . - . - . - "t4"@en . - . - . - . - "Lag time constant 2 (T4). Typical Value = 0.1."^^ . - . - . - "t5"@en . - . - . - . - "Lead time constant 3 (T5). Typical Value = 0."^^ . - . - . - "t6"@en . - . - . - . - "Lag time constant 3 (T6). Typical Value = 0.05."^^ . - . - . - "t7"@en . - . - . - . - "Lead time constant 4 (T7). Typical Value = 0."^^ . - . - . - "t8"@en . - . - . - . - "Lag time constant 4 (T8). Typical Value = 0.05."^^ . - . - . - "tp"@en . - . - . - . - "Gate servo time constant (Tp). Typical Value = 0.05."^^ . - . - . - "velop"@en . - . - . - . - "Maximum gate opening velocity (Velop). Unit = PU/sec. Typical Value = 0.2."^^ . - . - . - "velcl"@en . - . - . - . - "Maximum gate closing velocity (Velcl). Unit = PU/sec. Typical Value = -0.2."^^ . - . - . - "ki"@en . - . - . - . - "Integral gain (Ki). Typical Value = 0.5."^^ . - . - . - "kg"@en . - . - . - . - "Gate servo gain (Kg). Typical Value = 2."^^ . - . - . - "gmax"@en . - . - . - . - "Maximum governor output (Gmax). Typical Value = 1.05."^^ . - . - . - "gmin"@en . - . - . - . - "Minimum governor output (Gmin). Typical Value = -0.05."^^ . - . - . - "tt"@en . - . - . - . - "Power feedback time constant (Tt). Typical Value = 0."^^ . - . - . - "inputSignal"@en . - . - . - . - "Input signal switch (Flag).true = Pe input is usedfalse = feedback is received from CV.Flag is normally dependent on Tt. If Tf is zero, Flag is set to false. If Tf is not zero, Flag is set to true. Typical Value = true."^^ . - . - . - "db1"@en . - . - . - . - "Intentional dead-band width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional dead-band (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw). Typical Value = 1."^^ . - . - . - "at"@en . - . - . - . - "Turbine gain (At). Typical Value = 1.2."^^ . - . - . - "dturb"@en . - . - . - . - "Turbine damping factor (Dturb). Typical Value = 0.2."^^ . - . - . - "qnl"@en . - . - . - . - "No-load turbine flow at nominal head (Qnl). Typical Value = 0.08."^^ . - . - . - "h0"@en . - . - . - . - "Turbine nominal head (H0). Typical Value = 1."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain point 1, PU gv (Gv1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain point 1, PU power (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain point 2, PU gv (Gv2). Typical Value = 0."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain point 2, PU power (Pgv2). Typical Value = 0."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain point 3, PU gv (Gv3). Typical Value = 0."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain point 3, PU power (Pgv3). Typical Value = 0."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain point 4, PU gv (Gv4). Typical Value = 0."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain point 4, PU power (Pgv4). Typical Value = 0."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain point 5, PU gv (Gv5). Typical Value = 0."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain point 5, PU power (Pgv5). Typical Value = 0."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain point 6, PU gv (Gv6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain point 6, PU power (Pgv6). Typical Value = 0."^^ . - . - "GovHydroWEH"@en . - . - "Woodward Electric Hydro Governor Model. "^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "rpg"@en . - . - . - . - "Permanent droop for governor output feedback (R-Perm-Gate)."^^ . - . - . - "rpp"@en . - . - . - . - "Permanent droop for electrical power feedback (R-Perm-Pe)."^^ . - . - . - "tpe"@en . - . - . - . - "Electrical power droop time constant (Tpe)."^^ . - . - . - "kp"@en . - . - . - . - "Derivative control gain (Kp)."^^ . - . - . - "ki"@en . - . - . - . - "Derivative controller Integral gain (Ki)."^^ . - . - . - "kd"@en . - . - . - . - "Derivative controller derivative gain (Kd)."^^ . - . - . - "td"@en . - . - . - . - "Derivative controller time constant to limit the derivative characteristic beyond a breakdown frequency to avoid amplification of high-frequency noise (Td)."^^ . - . - . - "tp"@en . - . - . - . - "Pilot Valve time lag time constant (Tp)."^^ . - . - . - "tdv"@en . - . - . - . - "Distributive Valve time lag time constant (Tdv)."^^ . - . - . - "tg"@en . - . - . - . - "Value to allow the Distribution valve controller to advance beyond the gate movement rate limit (Tg)."^^ . - . - . - "gtmxop"@en . - . - . - . - "Maximum gate opening rate (Gtmxop)."^^ . - . - . - "gtmxcl"@en . - . - . - . - "Maximum gate closing rate (Gtmxcl)."^^ . - . - . - "gmax"@en . - . - . - . - "Maximum Gate Position (Gmax)."^^ . - . - . - "gmin"@en . - . - . - . - "Minimum Gate Position (Gmin)."^^ . - . - . - "dturb"@en . - . - . - . - "Turbine damping factor (Dturb). Unit = delta P (PU of MWbase) / delta speed (PU)."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw) (>0)."^^ . - . - . - "db"@en . - . - . - . - "Speed Dead Band (db)."^^ . - . - . - "dpv"@en . - . - . - . - "Value to allow the Pilot valve controller to advance beyond the gate limits (Dpv)."^^ . - . - . - "dicn"@en . - . - . - . - "Value to allow the integral controller to advance beyond the gate limits (Dicn)."^^ . - . - . - "feedbackSignal"@en . - . - . - . - "Feedback signal selection (Sw).true = PID Output (if R-Perm-Gate=droop and R-Perm-Pe=0)false = Electrical Power (if R-Perm-Gate=0 and R-Perm-Pe=droop) orfalse = Gate Position (if R-Perm-Gate=droop and R-Perm-Pe=0)."^^ . - . - . - "gv1"@en . - . - . - . - "Gate 1 (Gv1). Gate Position value for point 1 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "gv2"@en . - . - . - . - "Gate 2 (Gv2). Gate Position value for point 2 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "gv3"@en . - . - . - . - "Gate 3 (Gv3). Gate Position value for point 3 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "gv4"@en . - . - . - . - "Gate 4 (Gv4). Gate Position value for point 4 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "gv5"@en . - . - . - . - "Gate 5 (Gv5). Gate Position value for point 5 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "fl1"@en . - . - . - . - "Flow Gate 1 (Fl1). Flow value for gate position point 1 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "fl2"@en . - . - . - . - "Flow Gate 2 (Fl2). Flow value for gate position point 2 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "fl3"@en . - . - . - . - "Flow Gate 3 (Fl3). Flow value for gate position point 3 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "fl4"@en . - . - . - . - "Flow Gate 4 (Fl4). Flow value for gate position point 4 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "fl5"@en . - . - . - . - "Flow Gate 5 (Fl5). Flow value for gate position point 5 for lookup table representing water flow through the turbine as a function of gate position to produce steady state flow."^^ . - . - . - "fp1"@en . - . - . - . - "Flow P1 (Fp1). Turbine Flow value for point 1 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp2"@en . - . - . - . - "Flow P2 (Fp2). Turbine Flow value for point 2 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp3"@en . - . - . - . - "Flow P3 (Fp3). Turbine Flow value for point 3 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp4"@en . - . - . - . - "Flow P4 (Fp4). Turbine Flow value for point 4 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp5"@en . - . - . - . - "Flow P5 (Fp5). Turbine Flow value for point 5 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp6"@en . - . - . - . - "Flow P6 (Fp6). Turbine Flow value for point 6 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp7"@en . - . - . - . - "Flow P7 (Fp7). Turbine Flow value for point 7 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp8"@en . - . - . - . - "Flow P8 (Fp8). Turbine Flow value for point 8 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp9"@en . - . - . - . - "Flow P9 (Fp9). Turbine Flow value for point 9 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "fp10"@en . - . - . - . - "Flow P10 (Fp10). Turbine Flow value for point 10 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss1"@en . - . - . - . - "Pmss Flow P1 (Pmss1). Mechanical Power output Pmss for Turbine Flow point 1 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss2"@en . - . - . - . - "Pmss Flow P2 (Pmss2). Mechanical Power output Pmss for Turbine Flow point 2 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss3"@en . - . - . - . - "Pmss Flow P3 (Pmss3). Mechanical Power output Pmss for Turbine Flow point 3 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss4"@en . - . - . - . - "Pmss Flow P4 (Pmss4). Mechanical Power output Pmss for Turbine Flow point 4 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss5"@en . - . - . - . - "Pmss Flow P5 (Pmss5). Mechanical Power output Pmss for Turbine Flow point 5 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss6"@en . - . - . - . - "Pmss Flow P6 (Pmss6). Mechanical Power output Pmss for Turbine Flow point 6 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss7"@en . - . - . - . - "Pmss Flow P7 (Pmss7). Mechanical Power output Pmss for Turbine Flow point 7 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss8"@en . - . - . - . - "Pmss Flow P8 (Pmss8). Mechanical Power output Pmss for Turbine Flow point 8 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss9"@en . - . - . - . - "Pmss Flow P9 (Pmss9). Mechanical Power output Pmss for Turbine Flow point 9 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - . - "pmss10"@en . - . - . - . - "Pmss Flow P10 (Pmss10). Mechanical Power output Pmss for Turbine Flow point 10 for lookup table representing per unit mechanical power on machine MVA rating as a function of turbine flow."^^ . - . - "GovHydroWPID"@en . - . - "Woodward PID Hydro Governor."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "treg"@en . - . - . - . - "Speed detector time constant (Treg)."^^ . - . - . - "reg"@en . - . - . - . - "Permanent drop (Reg)."^^ . - . - . - "kp"@en . - . - . - . - "Proportional gain (Kp). Typical Value = 0.1."^^ . - . - . - "ki"@en . - . - . - . - "Reset gain (Ki). Typical Value = 0.36."^^ . - . - . - "kd"@en . - . - . - . - "Derivative gain (Kd). Typical Value = 1.11."^^ . - . - . - "ta"@en . - . - . - . - "Controller time constant (Ta) (>0). Typical Value = 0."^^ . - . - . - "tb"@en . - . - . - . - "Gate servo time constant (Tb) (>0). Typical Value = 0."^^ . - . - . - "velmax"@en . - . - . - . - "Maximum gate opening velocity (Velmax). Unit = PU/sec. Typical Value = 0."^^ . - . - . - "velmin"@en . - . - . - . - "Maximum gate closing velocity (Velmin). Unit = PU/sec. Typical Value = 0."^^ . - . - . - "gatmax"@en . - . - . - . - "Gate opening Limit Maximum (Gatmax)."^^ . - . - . - "gatmin"@en . - . - . - . - "Gate opening Limit Minimum (Gatmin)."^^ . - . - . - "tw"@en . - . - . - . - "Water inertia time constant (Tw) (>0). Typical Value = 0."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum Power Output (Pmax)."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum Power Output (Pmin)."^^ . - . - . - "d"@en . - . - . - . - "Turbine damping factor (D). Unit = delta P / delta speed."^^ . - . - . - "gv3"@en . - . - . - . - "Gate position 3 (Gv3)."^^ . - . - . - "gv1"@en . - . - . - . - "Gate position 1 (Gv1)."^^ . - . - . - "pgv1"@en . - . - . - . - "Output at Gv1 PU of MWbase (Pgv1)."^^ . - . - . - "gv2"@en . - . - . - . - "Gate position 2 (Gv2). "^^ . - . - . - "pgv2"@en . - . - . - . - "Output at Gv2 PU of MWbase (Pgv2)."^^ . - . - . - "pgv3"@en . - . - . - . - "Output at Gv3 PU of MWbase (Pgv3). "^^ . - . - "GovSteam0"@en . - . - "A simplified steam turbine governor model."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "r"@en . - . - . - . - "Permanent droop (R). Typical Value = 0.05."^^ . - . - . - "t1"@en . - . - . - . - "Steam bowl time constant (T1). Typical Value = 0.5."^^ . - . - . - "vmax"@en . - . - . - . - "Maximum valve position, PU of mwcap (Vmax). Typical Value = 1."^^ . - . - . - "vmin"@en . - . - . - . - "Minimum valve position, PU of mwcap (Vmin). Typical Value = 0."^^ . - . - . - "t2"@en . - . - . - . - "Numerator time constant of T2/T3 block (T2). Typical Value = 3."^^ . - . - . - "t3"@en . - . - . - . - "Reheater time constant (T3). Typical Value = 10."^^ . - . - . - "dt"@en . - . - . - . - "Turbine damping coefficient (Dt). Unit = delta P / delta speed. Typical Value = 0."^^ . - . - "GovSteam1"@en . - . - "Steam turbine governor model, based on the GovSteamIEEE1 model (with optional deadband and nonlinear valve gain added). "^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "k"@en . - . - . - . - "Governor gain (reciprocal of droop) (K) (>0). Typical Value = 25."^^ . - . - . - "t1"@en . - . - . - . - "Governor lag time constant (T1). Typical Value = 0."^^ . - . - . - "t2"@en . - . - . - . - "Governor lead time constant (T2). Typical Value = 0."^^ . - . - . - "t3"@en . - . - . - . - "Valve positioner time constant (T3) (>0). Typical Value = 0.1."^^ . - . - . - "uo"@en . - . - . - . - "Maximum valve opening velocity (Uo) (>0). Unit = PU/sec. Typical Value = 1."^^ . - . - . - "uc"@en . - . - . - . - "Maximum valve closing velocity (Uc) (<0). Unit = PU/sec. Typical Value = -10."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum valve opening (Pmax) (> Pmin). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum valve opening (Pmin) (>=0). Typical Value = 0."^^ . - . - . - "t4"@en . - . - . - . - "Inlet piping/steam bowl time constant (T4). Typical Value = 0.3."^^ . - . - . - "k1"@en . - . - . - . - "Fraction of HP shaft power after first boiler pass (K1). Typical Value = 0.2."^^ . - . - . - "k2"@en . - . - . - . - "Fraction of LP shaft power after first boiler pass (K2). Typical Value = 0."^^ . - . - . - "t5"@en . - . - . - . - "Time constant of second boiler pass (T5). Typical Value = 5."^^ . - . - . - "k3"@en . - . - . - . - "Fraction of HP shaft power after second boiler pass (K3). Typical Value = 0.3."^^ . - . - . - "k4"@en . - . - . - . - "Fraction of LP shaft power after second boiler pass (K4). Typical Value = 0."^^ . - . - . - "t6"@en . - . - . - . - "Time constant of third boiler pass (T6). Typical Value = 0.5."^^ . - . - . - "k5"@en . - . - . - . - "Fraction of HP shaft power after third boiler pass (K5). Typical Value = 0.5."^^ . - . - . - "k6"@en . - . - . - . - "Fraction of LP shaft power after third boiler pass (K6). Typical Value = 0."^^ . - . - . - "t7"@en . - . - . - . - "Time constant of fourth boiler pass (T7). Typical Value = 0."^^ . - . - . - "k7"@en . - . - . - . - "Fraction of HP shaft power after fourth boiler pass (K7). Typical Value = 0."^^ . - . - . - "k8"@en . - . - . - . - "Fraction of LP shaft power after fourth boiler pass (K8). Typical Value = 0."^^ . - . - . - "db1"@en . - . - . - . - "Intentional deadband width (db1). Unit = Hz. Typical Value = 0."^^ . - . - . - "eps"@en . - . - . - . - "Intentional db hysteresis (eps). Unit = Hz. Typical Value = 0."^^ . - . - . - "sdb1"@en . - . - . - . - "Intentional deadband indicator.true = intentional deadband is appliedfalse = intentional deadband is not applied.Typical Value = true."^^ . - . - . - "sdb2"@en . - . - . - . - "Unintentional deadband location.true = intentional deadband is applied before point \"A\"false = intentional deadband is applied after point \"A\".Typical Value = true."^^ . - . - . - "db2"@en . - . - . - . - "Unintentional deadband (db2). Unit = MW. Typical Value = 0."^^ . - . - . - "valve"@en . - . - . - . - "Nonlinear valve characteristic.true = nonlinear valve characteristic is usedfalse = nonlinear valve characteristic is not used.Typical Value = true."^^ . - . - . - "gv1"@en . - . - . - . - "Nonlinear gain valve position point 1 (GV1). Typical Value = 0."^^ . - . - . - "pgv1"@en . - . - . - . - "Nonlinear gain power value point 1 (Pgv1). Typical Value = 0."^^ . - . - . - "gv2"@en . - . - . - . - "Nonlinear gain valve position point 2 (GV2). Typical Value = 0.4."^^ . - . - . - "pgv2"@en . - . - . - . - "Nonlinear gain power value point 2 (Pgv2). Typical Value = 0.75."^^ . - . - . - "gv3"@en . - . - . - . - "Nonlinear gain valve position point 3 (GV3). Typical Value = 0.5."^^ . - . - . - "pgv3"@en . - . - . - . - "Nonlinear gain power value point 3 (Pgv3). Typical Value = 0.91."^^ . - . - . - "gv4"@en . - . - . - . - "Nonlinear gain valve position point 4 (GV4). Typical Value = 0.6."^^ . - . - . - "pgv4"@en . - . - . - . - "Nonlinear gain power value point 4 (Pgv4). Typical Value = 0.98."^^ . - . - . - "gv5"@en . - . - . - . - "Nonlinear gain valve position point 5 (GV5). Typical Value = 1."^^ . - . - . - "pgv5"@en . - . - . - . - "Nonlinear gain power value point 5 (Pgv5). Typical Value = 1."^^ . - . - . - "gv6"@en . - . - . - . - "Nonlinear gain valve position point 6 (GV6). Typical Value = 0."^^ . - . - . - "pgv6"@en . - . - . - . - "Nonlinear gain power value point 6 (Pgv6). Typical Value = 0."^^ . - . - "GovSteam2"@en . - . - "Simplified governor model."^^ . - . - . - . - . - "k"@en . - . - . - . - "Governor gain (reciprocal of droop) (K). Typical Value = 20."^^ . - . - . - "dbf"@en . - . - . - . - "Frequency dead band (DBF). Typical Value = 0."^^ . - . - . - "t1"@en . - . - . - . - "Governor lag time constant (T1) (>0). Typical Value = 0.45."^^ . - . - . - "t2"@en . - . - . - . - "Governor lead time constant (T2) (may be 0). Typical Value = 0."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum fuel flow (PMAX). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum fuel flow (PMIN). Typical Value = 0."^^ . - . - . - "mxef"@en . - . - . - . - "Fuel flow maximum positive error value (MXEF). Typical Value = 1."^^ . - . - . - "mnef"@en . - . - . - . - "Fuel flow maximum negative error value (MNEF). Typical Value = -1."^^ . - . - "GovSteamCC"@en . - . - "Cross compound turbine governor model. "^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "pmaxhp"@en . - . - . - . - "Maximum HP value position (Pmaxhp). Typical Value = 1."^^ . - . - . - "rhp"@en . - . - . - . - "HP governor droop (Rhp). Typical Value = 0.05."^^ . - . - . - "t1hp"@en . - . - . - . - "HP governor time constant (T1hp). Typical Value = 0.1."^^ . - . - . - "t3hp"@en . - . - . - . - "HP turbine time constant (T3hp). Typical Value = 0.1."^^ . - . - . - "t4hp"@en . - . - . - . - "HP turbine time constant (T4hp). Typical Value = 0.1."^^ . - . - . - "t5hp"@en . - . - . - . - "HP reheater time constant (T5hp). Typical Value = 10."^^ . - . - . - "fhp"@en . - . - . - . - "Fraction of HP power ahead of reheater (Fhp). Typical Value = 0.3."^^ . - . - . - "dhp"@en . - . - . - . - "HP damping factor (Dhp). Typical Value = 0."^^ . - . - . - "pmaxlp"@en . - . - . - . - "Maximum LP value position (Pmaxlp). Typical Value = 1."^^ . - . - . - "rlp"@en . - . - . - . - "LP governor droop (Rlp). Typical Value = 0.05."^^ . - . - . - "t1lp"@en . - . - . - . - "LP governor time constant (T1lp). Typical Value = 0.1."^^ . - . - . - "t3lp"@en . - . - . - . - "LP turbine time constant (T3lp). Typical Value = 0.1."^^ . - . - . - "t4lp"@en . - . - . - . - "LP turbine time constant (T4lp). Typical Value = 0.1."^^ . - . - . - "t5lp"@en . - . - . - . - "LP reheater time constant (T5lp). Typical Value = 10."^^ . - . - . - "flp"@en . - . - . - . - "Fraction of LP power ahead of reheater (Flp). Typical Value = 0.7."^^ . - . - . - "dlp"@en . - . - . - . - "LP damping factor (Dlp). Typical Value = 0."^^ . - . - "GovSteamEU"@en . - . - "Simplified model of boiler and steam turbine with PID governor."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "tp"@en . - . - . - . - "Power transducer time constant (Tp). Typical Value = 0.07."^^ . - . - . - "ke"@en . - . - . - . - "Gain of the power controller (Ke). Typical Value = 0.65."^^ . - . - . - "tip"@en . - . - . - . - "Integral time constant of the power controller (Tip). Typical Value = 2."^^ . - . - . - "tdp"@en . - . - . - . - "Derivative time constant of the power controller (Tdp). Typical Value = 0."^^ . - . - . - "tfp"@en . - . - . - . - "Time constant of the power controller (Tfp). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Frequency transducer time constant (Tf). Typical Value = 0."^^ . - . - . - "kfcor"@en . - . - . - . - "Gain of the frequency corrector (Kfcor). Typical Value = 20."^^ . - . - . - "db1"@en . - . - . - . - "Dead band of the frequency corrector (db1). Typical Value = 0."^^ . - . - . - "wfmax"@en . - . - . - . - "Upper limit for frequency correction (Wfmax). Typical Value = 0.05."^^ . - . - . - "wfmin"@en . - . - . - . - "Lower limit for frequency correction (Wfmin). Typical Value = -0.05."^^ . - . - . - "pmax"@en . - . - . - . - "Maximal active power of the turbine (Pmax). Typical Value = 1."^^ . - . - . - "ten"@en . - . - . - . - "Electro hydraulic transducer (Ten). Typical Value = 0.1."^^ . - . - . - "tw"@en . - . - . - . - "Speed transducer time constant (Tw). Typical Value = 0.02."^^ . - . - . - "kwcor"@en . - . - . - . - "Gain of the speed governor (Kwcor). Typical Value = 20."^^ . - . - . - "db2"@en . - . - . - . - "Dead band of the speed governor (db2). Typical Value = 0.0004."^^ . - . - . - "wwmax"@en . - . - . - . - "Upper limit for the speed governor (Wwmax). Typical Value = 0.1."^^ . - . - . - "wwmin"@en . - . - . - . - "Lower limit for the speed governor frequency correction (Wwmin). Typical Value = -1."^^ . - . - . - "wmax1"@en . - . - . - . - "Emergency speed control lower limit (wmax1). Typical Value = 1.025."^^ . - . - . - "wmax2"@en . - . - . - . - "Emergency speed control upper limit (wmax2). Typical Value = 1.05."^^ . - . - . - "tvhp"@en . - . - . - . - "Control valves servo time constant (Tvhp). Typical Value = 0.1."^^ . - . - . - "cho"@en . - . - . - . - "Control valves rate opening limit (Cho). Unit = PU/sec. Typical Value = 0.17."^^ . - . - . - "chc"@en . - . - . - . - "Control valves rate closing limit (Chc). Unit = PU/sec. Typical Value = -3.3."^^ . - . - . - "hhpmax"@en . - . - . - . - "Maximum control valve position (Hhpmax). Typical Value = 1."^^ . - . - . - "tvip"@en . - . - . - . - "Intercept valves servo time constant (Tvip). Typical Value = 0.15."^^ . - . - . - "cio"@en . - . - . - . - "Intercept valves rate opening limit (Cio). Typical Value = 0.123."^^ . - . - . - "cic"@en . - . - . - . - "Intercept valves rate closing limit (Cic). Typical Value = -2.2."^^ . - . - . - "simx"@en . - . - . - . - "Intercept valves transfer limit (Simx). Typical Value = 0.425."^^ . - . - . - "thp"@en . - . - . - . - "High pressure (HP) time constant of the turbine (Thp). Typical Value = 0.31."^^ . - . - . - "trh"@en . - . - . - . - "Reheater time constant of the turbine (Trh). Typical Value = 8."^^ . - . - . - "tlp"@en . - . - . - . - "Low pressure(LP) time constant of the turbine (Tlp). Typical Value = 0.45."^^ . - . - . - "prhmax"@en . - . - . - . - "Maximum low pressure limit (Prhmax). Typical Value = 1.4."^^ . - . - . - "khp"@en . - . - . - . - "Fraction of total turbine output generated by HP part (Khp). Typical Value = 0.277."^^ . - . - . - "klp"@en . - . - . - . - "Fraction of total turbine output generated by HP part (Klp). Typical Value = 0.723."^^ . - . - . - "tb"@en . - . - . - . - "Boiler time constant (Tb). Typical Value = 100."^^ . - . - "GovSteamFV2"@en . - . - "Steam turbine governor with reheat time constants and modeling of the effects of fast valve closing to reduce mechanical power."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Alternate Base used instead of Machine base in equipment model if necessary (MWbase) (>0). Unit = MW."^^ . - . - . - "r"@en . - . - . - . - "(R)."^^ . - . - . - "t1"@en . - . - . - . - "Governor time constant (T1)."^^ . - . - . - "vmax"@en . - . - . - . - "(Vmax)."^^ . - . - . - "vmin"@en . - . - . - . - "(Vmin)."^^ . - . - . - "k"@en . - . - . - . - "Fraction of the turbine power developed by turbine sections not involved in fast valving (K)."^^ . - . - . - "t3"@en . - . - . - . - "Reheater time constant (T3)."^^ . - . - . - "dt"@en . - . - . - . - "(Dt)."^^ . - . - . - "tt"@en . - . - . - . - "Time constant with which power falls off after intercept valve closure (Tt)."^^ . - . - . - "ta"@en . - . - . - . - "Time after initial time for valve to close (Ta)."^^ . - . - . - "tb"@en . - . - . - . - "Time after initial time for valve to begin opening (Tb)."^^ . - . - . - "tc"@en . - . - . - . - "Time after initial time for valve to become fully open (Tc)."^^ . - . - . - "ti"@en . - . - . - . - "Initial time to begin fast valving (Ti)."^^ . - . - "GovSteamFV3"@en . - . - "Simplified GovSteamIEEE1 Steam turbine governor model with Prmax limit and fast valving."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "k"@en . - . - . - . - "Governor gain, (reciprocal of droop) (K). Typical Value = 20."^^ . - . - . - "t1"@en . - . - . - . - "Governor lead time constant (T1). Typical Value = 0."^^ . - . - . - "t2"@en . - . - . - . - "Governor lag time constant (T2). Typical Value = 0."^^ . - . - . - "t3"@en . - . - . - . - "Valve positioner time constant (T3). Typical Value = 0."^^ . - . - . - "uo"@en . - . - . - . - "Maximum valve opening velocity (Uo). Unit = PU/sec. Typical Value = 0.1."^^ . - . - . - "uc"@en . - . - . - . - "Maximum valve closing velocity (Uc). Unit = PU/sec. Typical Value = -1."^^ . - . - . - "pmax"@en . - . - . - . - "Maximum valve opening, PU of MWbase (Pmax). Typical Value = 1."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum valve opening, PU of MWbase (Pmin). Typical Value = 0."^^ . - . - . - "t4"@en . - . - . - . - "Inlet piping/steam bowl time constant (T4). Typical Value = 0.2."^^ . - . - . - "k1"@en . - . - . - . - "Fraction of turbine power developed after first boiler pass (K1). Typical Value = 0.2."^^ . - . - . - "t5"@en . - . - . - . - "Time constant of second boiler pass (i.e. reheater) (T5). Typical Value = 0.5."^^ . - . - . - "k2"@en . - . - . - . - "Fraction of turbine power developed after second boiler pass (K2). Typical Value = 0.2."^^ . - . - . - "t6"@en . - . - . - . - "Time constant of crossover or third boiler pass (T6). Typical Value = 10."^^ . - . - . - "k3"@en . - . - . - . - "Fraction of hp turbine power developed after crossover or third boiler pass (K3). Typical Value = 0.6."^^ . - . - . - "ta"@en . - . - . - . - "Time to close intercept valve (IV) (Ta). Typical Value = 0.97."^^ . - . - . - "tb"@en . - . - . - . - "Time until IV starts to reopen (Tb). Typical Value = 0.98."^^ . - . - . - "tc"@en . - . - . - . - "Time until IV is fully open (Tc). Typical Value = 0.99."^^ . - . - . - "prmax"@en . - . - . - . - "Max. pressure in reheater (Prmax). Typical Value = 1."^^ . - . - "GovSteamFV4"@en . - . - "Detailed electro-hydraulic governor for steam unit."^^ . - . - . - . - . - "kf1"@en . - . - . - . - "Frequency bias (reciprocal of droop) (Kf1). Typical Value = 20."^^ . - . - . - "kf3"@en . - . - . - . - "Frequency control (reciprocal of droop) (Kf3). Typical Value = 20."^^ . - . - . - "lps"@en . - . - . - . - "Maximum positive power error (Lps). Typical Value = 0.03."^^ . - . - . - "lpi"@en . - . - . - . - "Maximum negative power error (Lpi). Typical Value = -0.15."^^ . - . - . - "mxef"@en . - . - . - . - "Upper limit for frequency correction (MXEF). Typical Value = 0.05."^^ . - . - . - "mnef"@en . - . - . - . - "Lower limit for frequency correction (MNEF). Typical Value = -0.05."^^ . - . - . - "crmx"@en . - . - . - . - "Maximum value of regulator set-point (Crmx). Typical Value = 1.2."^^ . - . - . - "crmn"@en . - . - . - . - "Minimum value of regulator set-point (Crmn). Typical Value = 0."^^ . - . - . - "kpt"@en . - . - . - . - "Proportional gain of electro-hydraulic regulator (Kpt). Typical Value = 0.3."^^ . - . - . - "kit"@en . - . - . - . - "Integral gain of electro-hydraulic regulator (Kit). Typical Value = 0.04."^^ . - . - . - "rvgmx"@en . - . - . - . - "Maximum value of integral regulator (Rvgmx). Typical Value = 1.2."^^ . - . - . - "rvgmn"@en . - . - . - . - "Minimum value of integral regulator (Rvgmn). Typical Value = 0."^^ . - . - . - "svmx"@en . - . - . - . - "Maximum regulator gate opening velocity (Svmx). Typical Value = 0.0333."^^ . - . - . - "svmn"@en . - . - . - . - "Maximum regulator gate closing velocity (Svmn). Typical Value = -0.0333."^^ . - . - . - "srmx"@en . - . - . - . - "Maximum valve opening (Srmx). Typical Value = 1.1."^^ . - . - . - "srmn"@en . - . - . - . - "Minimum valve opening (Srmn). Typical Value = 0."^^ . - . - . - "kpp"@en . - . - . - . - "Proportional gain of pressure feedback regulator (Kpp). Typical Value = 1."^^ . - . - . - "kip"@en . - . - . - . - "Integral gain of pressure feedback regulator (Kip). Typical Value = 0.5."^^ . - . - . - "rsmimx"@en . - . - . - . - "Maximum value of integral regulator (Rsmimx). Typical Value = 1.1."^^ . - . - . - "rsmimn"@en . - . - . - . - "Minimum value of integral regulator (Rsmimn). Typical Value = 0."^^ . - . - . - "kmp1"@en . - . - . - . - "First gain coefficient of intercept valves characteristic (Kmp1). Typical Value = 0.5."^^ . - . - . - "kmp2"@en . - . - . - . - "Second gain coefficient of intercept valves characteristic (Kmp2). Typical Value = 3.5."^^ . - . - . - "srsmp"@en . - . - . - . - "Intercept valves characteristic discontinuity point (Srsmp). Typical Value = 0.43."^^ . - . - . - "ta"@en . - . - . - . - "Control valves rate opening time (Ta). Typical Value = 0.8."^^ . - . - . - "tc"@en . - . - . - . - "Control valves rate closing time (Tc). Typical Value = 0.5."^^ . - . - . - "ty"@en . - . - . - . - "Control valves servo time constant (Ty). Typical Value = 0.1."^^ . - . - . - "yhpmx"@en . - . - . - . - "Maximum control valve position (Yhpmx). Typical Value = 1.1."^^ . - . - . - "yhpmn"@en . - . - . - . - "Minimum control valve position (Yhpmn). Typical Value = 0."^^ . - . - . - "tam"@en . - . - . - . - "Intercept valves rate opening time (Tam). Typical Value = 0.8."^^ . - . - . - "tcm"@en . - . - . - . - "Intercept valves rate closing time (Tcm). Typical Value = 0.5."^^ . - . - . - "ympmx"@en . - . - . - . - "Maximum intercept valve position (Ympmx). Typical Value = 1.1."^^ . - . - . - "ympmn"@en . - . - . - . - "Minimum intercept valve position (Ympmn). Typical Value = 0."^^ . - . - . - "y"@en . - . - . - . - "Coefficient of linearized equations of turbine (Stodola formulation) (Y). Typical Value = 0.13."^^ . - . - . - "thp"@en . - . - . - . - "High pressure (HP) time constant of the turbine (Thp). Typical Value = 0.15."^^ . - . - . - "trh"@en . - . - . - . - "Reheater time constant of the turbine (Trh). Typical Value = 10."^^ . - . - . - "tmp"@en . - . - . - . - "Low pressure (LP) time constant of the turbine (Tmp). Typical Value = 0.4."^^ . - . - . - "khp"@en . - . - . - . - "Fraction of total turbine output generated by HP part (Khp). Typical Value = 0.35."^^ . - . - . - "pr1"@en . - . - . - . - "First value of pressure set point static characteristic (Pr1). Typical Value = 0.2."^^ . - . - . - "pr2"@en . - . - . - . - "Second value of pressure set point static characteristic, corresponding to Ps0 = 1.0 PU (Pr2). Typical Value = 0.75."^^ . - . - . - "psmn"@en . - . - . - . - "Minimum value of pressure set point static characteristic (Psmn). Typical Value = 1."^^ . - . - . - "kpc"@en . - . - . - . - "Proportional gain of pressure regulator (Kpc). Typical Value = 0.5."^^ . - . - . - "kic"@en . - . - . - . - "Integral gain of pressure regulator (Kic). Typical Value = 0.0033."^^ . - . - . - "kdc"@en . - . - . - . - "Derivative gain of pressure regulator (Kdc). Typical Value = 1."^^ . - . - . - "tdc"@en . - . - . - . - "Derivative time constant of pressure regulator (Tdc). Typical Value = 90."^^ . - . - . - "cpsmx"@en . - . - . - . - "Maximum value of pressure regulator output (Cpsmx). Typical Value = 1."^^ . - . - . - "cpsmn"@en . - . - . - . - "Minimum value of pressure regulator output (Cpsmn). Typical Value = -1."^^ . - . - . - "krc"@en . - . - . - . - "Maximum variation of fuel flow (Krc). Typical Value = 0.05."^^ . - . - . - "tf1"@en . - . - . - . - "Time constant of fuel regulation (Tf1). Typical Value = 10."^^ . - . - . - "tf2"@en . - . - . - . - "Time constant of steam chest (Tf2). Typical Value = 10."^^ . - . - . - "tv"@en . - . - . - . - "Boiler time constant (Tv). Typical Value = 60."^^ . - . - . - "ksh"@en . - . - . - . - "Pressure loss due to flow friction in the boiler tubes (Ksh). Typical Value = 0.08."^^ . - . - "GovSteamSGO"@en . - . - "Simplified Steam turbine governor model."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "t1"@en . - . - . - . - "Controller lag (T1)."^^ . - . - . - "t2"@en . - . - . - . - "Controller lead compensation (T2)."^^ . - . - . - "t3"@en . - . - . - . - "Governor lag (T3) (>0). "^^ . - . - . - "t4"@en . - . - . - . - "Delay due to steam inlet volumes associated with steam chest and inlet piping (T4). "^^ . - . - . - "t5"@en . - . - . - . - "Reheater delay including hot and cold leads (T5). "^^ . - . - . - "t6"@en . - . - . - . - "Delay due to IP-LP turbine, crossover pipes and LP end hoods (T6). "^^ . - . - . - "k1"@en . - . - . - . - "One/per unit regulation (K1). "^^ . - . - . - "k2"@en . - . - . - . - "Fraction (K2). "^^ . - . - . - "k3"@en . - . - . - . - "Fraction (K3)."^^ . - . - . - "pmax"@en . - . - . - . - "Upper power limit (Pmax). "^^ . - . - . - "pmin"@en . - . - . - . - "Lower power limit (Pmin)."^^ . - . - "TurbineLoadControllerDynamics"@en . - . - "A turbine load controller acts to maintain turbine power at a set value by continuous adjustment of the turbine governor speed-load reference."^^ . - "TurbineLoadControllerDynamics"@en . - . - "Turbine load controller function block whose behavior is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "TurbLCFB1"@en . - . - "Turbine Load Controller model developed in the WECC. This model represents a supervisory turbine load controller that acts to maintain turbine power at a set value by continuous adjustment of the turbine governor speed-load reference. This model is intended to represent slow reset 'outer loop' controllers managing the action of the turbine governor."^^ . - . - . - . - . - "mwbase"@en . - . - . - . - "Base for power values (MWbase) (>0). Unit = MW."^^ . - . - . - "speedReferenceGovernor"@en . - . - . - . - "Type of turbine governor reference (Type).true = speed reference governorfalse = load reference governor.Typical Value = true."^^ . - . - . - "db"@en . - . - . - . - "Controller dead band (db). Typical Value = 0."^^ . - . - . - "emax"@en . - . - . - . - "Maximum control error (Emax) (note 4). Typical Value = 0.02."^^ . - . - . - "fb"@en . - . - . - . - "Frequency bias gain (Fb). Typical Value = 0."^^ . - . - . - "kp"@en . - . - . - . - "Proportional gain (Kp). Typical Value = 0."^^ . - . - . - "ki"@en . - . - . - . - "Integral gain (Ki). Typical Value = 0."^^ . - . - . - "fbf"@en . - . - . - . - "Frequency bias flag (Fbf).true = enable frequency biasfalse = disable frequency bias.Typical Value = false."^^ . - . - . - "pbf"@en . - . - . - . - "Power controller flag (Pbf).true = enable load controllerfalse = disable load controller.Typical Value = false."^^ . - . - . - "tpelec"@en . - . - . - . - "Power transducer time constant (Tpelec). Typical Value = 0."^^ . - . - . - "irmax"@en . - . - . - . - "Maximum turbine speed/load reference bias (Irmax) (note 3). Typical Value = 0."^^ . - . - . - "pmwset"@en . - . - . - . - "Power controller setpoint (Pmwset) (note 1). Unit = MW. Typical Value = 0."^^ . - . - "MechanicalLoadDynamics"@en . - . - "A mechanical load represents the variation in a motor's shaft torque or power as a function of shaft speed."^^ . - "MechanicalLoadDynamics"@en . - . - "Mechanical load function block whose behavior is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "MechLoad1"@en . - . - "Mechanical load model type 1."^^ . - . - . - . - . - "a"@en . - . - . - . - "Speed squared coefficient (a)."^^ . - . - . - "b"@en . - . - . - . - "Speed coefficient (b)."^^ . - . - . - "d"@en . - . - . - . - "Speed to the exponent coefficient (d)."^^ . - . - . - "e"@en . - . - . - . - "Exponent (e)."^^ . - . - "ExcitationSystemDynamics"@en . - . - "The excitation system model provides the field voltage (Efd) for a synchronous machine model. It is linked to a specific generator (synchronous machine). The data parameters are different for each excitation system model; the same parameter name may have different meaning in different models."^^ . - "ExcIEEEST1AUELselectorKind"@en . - "Type of connection for the UEL input used in ExcIEEEST1A."^^ . - . - . - . - "ignoreUELsignal"@en . - "Ignore UEL signal."^^ . - . - "inputHVgateVoltageOutput"@en . - "UEL input HV gate with voltage regulator output."^^ . - . - "inputHVgateErrorSignal"@en . - "UEL input HV gate with error signal."^^ . - . - "inputAddedToErrorSignal"@en . - "UEL input added to error signal."^^ . - . - "ExcREXSFeedbackSignalKind"@en . - "Type of rate feedback signals. "^^ . - . - . - . - "fieldVoltage"@en . - "The voltage regulator output voltage is used. It is the same as exciter field voltage."^^ . - . - "fieldCurrent"@en . - "The exciter field current is used."^^ . - . - "outputVoltage"@en . - "The output voltage of the exciter is used."^^ . - . - "ExcST6BOELselectorKind"@en . - "Type of connection for the OEL input used for static excitation systems type 6B."^^ . - . - . - . - "noOELinput"@en . - "No OEL input is used."^^ . - . - "beforeUEL"@en . - "The connection is before UEL."^^ . - . - "afterUEL"@en . - "The connection is after UEL."^^ . - . - "ExcST7BOELselectorKind"@en . - "Type of connection for the OEL input used for static excitation systems type 7B."^^ . - . - . - . - "noOELinput"@en . - "No OEL input is used."^^ . - . - "addVref"@en . - "The signal is added to Vref."^^ . - . - "inputLVgate"@en . - "The signal is connected in the input of the LV gate."^^ . - . - "outputLVgate"@en . - "The signal is connected in the output of the LV gate."^^ . - . - "ExcST7BUELselectorKind"@en . - "Type of connection for the UEL input used for static excitation systems type 7B."^^ . - . - . - . - "noUELinput"@en . - "No UEL input is used."^^ . - . - "addVref"@en . - "The signal is added to Vref."^^ . - . - "inputHVgate"@en . - "The signal is connected in the input of the HV gate."^^ . - . - "outputHVgate"@en . - "The signal is connected in the output of the HV gate."^^ . - . - "ExcitationSystemDynamics"@en . - . - "Excitation system function block whose behavior is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "ExcitationSystemDynamics"@en . - "Excitation system model with which this power system stabilizer model is associated."^^ . - . - . - . - . - "Yes" . - . - "PowerSystemStabilizerDynamics"@en . - "Power system stabilizer model associated with this excitation system model."^^ . - . - . - . - . - "No" . - . - "ExcitationSystemDynamics"@en . - "Excitation system model with which this Power Factor or VAr controller Type I model is associated."^^ . - . - . - . - . - "Yes" . - . - "PFVArControllerType1Dynamics"@en . - "Power Factor or VAr controller Type I model associated with this excitation system model."^^ . - . - . - . - . - "No" . - . - "ExcitationSystemDynamics"@en . - "Excitation system model with which this voltage compensator is associated."^^ . - . - . - . - . - "Yes" . - . - "VoltageCompensatorDynamics"@en . - "Voltage compensator model associated with this excitation system model."^^ . - . - . - . - . - "No" . - . - "ExcitationSystemDynamics"@en . - "Excitation system model with which this discontinuous excitation control model is associated."^^ . - . - . - . - . - "Yes" . - . - "DiscontinuousExcitationControlDynamics"@en . - "Discontinuous excitation control model associated with this excitation system model."^^ . - . - . - . - . - "No" . - . - "ExcitationSystemDynamics"@en . - "Excitation system model with which this underexcitation limiter model is associated."^^ . - . - . - . - . - "Yes" . - . - "UnderexcitationLimiterDynamics"@en . - "Undrexcitation limiter model associated with this excitation system model."^^ . - . - . - . - . - "No" . - . - "ExcitationSystemDynamics"@en . - "Excitation system model with which this Power Factor or VAr controller Type II is associated."^^ . - . - . - . - . - "Yes" . - . - "PFVArControllerType2Dynamics"@en . - "Power Factor or VAr controller Type II model associated with this excitation system model."^^ . - . - . - . - . - "No" . - . - "ExcitationSystemDynamics"@en . - "Excitation system model with which this overexcitation limiter model is associated."^^ . - . - . - . - . - "Yes" . - . - "OverexcitationLimiterDynamics"@en . - "Overexcitation limiter model associated with this excitation system model."^^ . - . - . - . - . - "No" . - . - "ExcIEEEAC1A"@en . - . - "The class represents IEEE Std 421.5-2005 type AC1A model. The model represents the field-controlled alternator-rectifier excitation systems designated Type AC1A. These excitation systems consist of an alternator main exciter with non-controlled rectifiers.Reference: IEEE Standard 421.5-2005 Section 6.1."^^ . - . - . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 400."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.02."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (VAMAX). Typical Value = 14.5."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (VAMIN). Typical Value = -14.5."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 0.8."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (KF). Typical Value = 0.03."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.2."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (KD). Typical Value = 0.38."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE1). Typical Value = 4.18."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE1, back of commutating reactance (SE[VE1]). Typical Value = 0.1."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE2). Typical Value = 3.14."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE2, back of commutating reactance (SE[VE2]). Typical Value = 0.03."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (VRMAX). Typical Value = 6.03."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (VRMIN). Typical Value = -5.43."^^ . - . - "ExcIEEEAC2A"@en . - . - "The class represents IEEE Std 421.5-2005 type AC2A model. The model represents a high initial response field-controlled alternator-rectifier excitation system. The alternator main exciter is used with non-controlled rectifiers. The Type AC2A model is similar to that of Type AC1A except for the inclusion of exciter time constant compensation and exciter field current limiting elements.Reference: IEEE Standard 421.5-2005 Section 6.2."^^ . - . - . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 400."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.02."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (VAMAX). Typical Value = 8."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (VAMIN). Typical Value = -8."^^ . - . - . - "kb"@en . - . - . - . - "Second stage regulator gain (KB). Typical Value = 25."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (VRMAX). Typical Value = 105."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (VRMIN). Typical Value = -95."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 0.6."^^ . - . - . - "vfemax"@en . - . - . - . - "Exciter field current limit reference (VFEMAX). Typical Value = 4.4."^^ . - . - . - "kh"@en . - . - . - . - "Exciter field current feedback gain (KH). Typical Value = 1."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (KF). Typical Value = 0.03."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.28."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (KD). Typical Value = 0.35."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE1). Typical Value = 4.4."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE1, back of commutating reactance (SE[VE1]). Typical Value = 0.037."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE2). Typical Value = 3.3."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE2, back of commutating reactance (SE[VE2]). Typical Value = 0.012."^^ . - . - "ExcIEEEAC3A"@en . - . - "The class represents IEEE Std 421.5-2005 type AC3A model. The model represents the field-controlled alternator-rectifier excitation systems designated Type AC3A. These excitation systems include an alternator main exciter with non-controlled rectifiers. The exciter employs self-excitation, and the voltage regulator power is derived from the exciter output voltage. Therefore, this system has an additional nonlinearity, simulated by the use of a multiplierwhose inputs are the voltage regulator command signal, Va, and the exciter output voltage, Efd, times KR. This model is applicable to excitation systems employing static voltage regulators.Reference: IEEE Standard 421.5-2005 Section 6.3."^^ . - . - . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 45.62."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.013."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (VAMAX). Typical Value = 1."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (VAMIN). Typical Value = -0.95."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 1.17."^^ . - . - . - "vemin"@en . - . - . - . - "Minimum exciter voltage output (VEMIN). Typical Value = 0.1."^^ . - . - . - "kr"@en . - . - . - . - "Constant associated with regulator and alternator field power supply (KR). Typical Value = 3.77."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (KF). Typical Value = 0.143."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "kn"@en . - . - . - . - "Excitation control system stabilizer gain (KN). Typical Value = 0.05."^^ . - . - . - "efdn"@en . - . - . - . - "Value of EFD at which feedback gain changes (EFDN). Typical Value = 2.36."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.104."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (KD). Typical Value = 0.499."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "vfemax"@en . - . - . - . - "Exciter field current limit reference (VFEMAX). Typical Value = 16."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE1) equals VEMAX (VE1). Typical Value = 6.24."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE1, back of commutating reactance (SE[VE1]). Typical Value = 1.143."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE2). Typical Value = 4.68."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE2, back of commutating reactance (SE[VE2]). Typical Value = 0.1."^^ . - . - "ExcIEEEAC4A"@en . - . - "The class represents IEEE Std 421.5-2005 type AC4A model. The model represents type AC4A alternator-supplied controlled-rectifier excitation system which is quite different from the other type ac systems. This high initial response excitation system utilizes a full thyristor bridge in the exciter output circuit. The voltage regulator controls the firing of the thyristor bridges. The exciter alternator uses an independent voltage regulator to control its output voltage to a constant value. These effects are not modeled; however, transient loading effects on the exciter alternator are included.Reference: IEEE Standard 421.5-2005 Section 6.4."^^ . - . - . - . - . - "vimax"@en . - . - . - . - "Maximum voltage regulator input limit (VIMAX). Typical Value = 10."^^ . - . - . - "vimin"@en . - . - . - . - "Minimum voltage regulator input limit (VIMIN). Typical Value = -10."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 1."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 10."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 200."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.015."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 5.64."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -4.53."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0."^^ . - . - "ExcIEEEAC5A"@en . - . - "The class represents IEEE Std 421.5-2005 type AC5A model. The model represents a simplified model for brushless excitation systems. The regulator is supplied from a source, such as a permanent magnet generator, which is not affected by system disturbances. Unlike other ac models, this model uses loaded rather than open circuit exciter saturation data in the same way as it is used for the dc models. Because the model has been widely implemented by the industry, it is sometimes used to represent other types of systems when either detailed data for them are not available or simplified models are required.Reference: IEEE Standard 421.5-2005 Section 6.5."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 400."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.02."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 7.3."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -7.3."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 0.8."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (KF). Typical Value = 0.03."^^ . - . - . - "tf1"@en . - . - . - . - "Excitation control system stabilizer time constant (TF1). Typical Value = 1."^^ . - . - . - "tf2"@en . - . - . - . - "Excitation control system stabilizer time constant (TF2). Typical Value = 1."^^ . - . - . - "tf3"@en . - . - . - . - "Excitation control system stabilizer time constant (TF3). Typical Value = 1."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD1). Typical Value = 5.6."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD1 (SE[EFD1]). Typical Value = 0.86."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD2). Typical Value = 4.2."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD2 (SE[EFD2]). Typical Value = 0.5."^^ . - . - "ExcIEEEAC6A"@en . - . - "The class represents IEEE Std 421.5-2005 type AC6A model. The model represents field-controlled alternator-rectifier excitation systems with system-supplied electronic voltage regulators. The maximum output of the regulator, VR, is a function of terminal voltage, VT. The field current limiter included in the original model AC6A remains in the 2005 update.Reference: IEEE Standard 421.5-2005 Section 6.6. "^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 536."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.086."^^ . - . - . - "tk"@en . - . - . - . - "Voltage regulator time constant (TK). Typical Value = 0.18."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 9."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 3."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (VAMAX). Typical Value = 75."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (VAMIN). Typical Value = -75."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 44."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -36."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 1."^^ . - . - . - "kh"@en . - . - . - . - "Exciter field current limiter gain (KH). Typical Value = 92."^^ . - . - . - "tj"@en . - . - . - . - "Exciter field current limiter time constant (TJ). Typical Value = 0.02."^^ . - . - . - "th"@en . - . - . - . - "Exciter field current limiter time constant (TH). Typical Value = 0.08."^^ . - . - . - "vfelim"@en . - . - . - . - "Exciter field current limit reference (VFELIM). Typical Value = 19."^^ . - . - . - "vhmax"@en . - . - . - . - "Maximum field current limiter signal reference (VHMAX). Typical Value = 75."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.173."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (KD). Typical Value = 1.91."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1.6."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE1) equals VEMAX (VE1). Typical Value = 7.4."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE1, back of commutating reactance (SE[VE1]). Typical Value = 0.214."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE2). Typical Value = 5.55."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE2, back of commutating reactance (SE[VE2]). Typical Value = 0.044."^^ . - . - "ExcIEEEAC7B"@en . - . - "The class represents IEEE Std 421.5-2005 type AC7B model. The model represents excitation systems which consist of an ac alternator with either stationary or rotating rectifiers to produce the dc field requirements. It is an upgrade to earlier ac excitation systems, which replace only the controls but retain the ac alternator and diode rectifier bridge.Reference: IEEE Standard 421.5-2005 Section 6.7.Note: In the IEEE Standard 421.5 – 2005, the [1 / sTE] block is shown as [1 / (1 + sTE)], which is incorrect."^^ . - . - . - . - . - "kpr"@en . - . - . - . - "Voltage regulator proportional gain (KPR). Typical Value = 4.24."^^ . - . - . - "kir"@en . - . - . - . - "Voltage regulator integral gain (KIR). Typical Value = 4.24."^^ . - . - . - "kdr"@en . - . - . - . - "Voltage regulator derivative gain (KDR). Typical Value = 0."^^ . - . - . - "tdr"@en . - . - . - . - "Lag time constant (TDR). Typical Value = 0."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 5.79."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -5.79."^^ . - . - . - "kpa"@en . - . - . - . - "Voltage regulator proportional gain (KPA). Typical Value = 65.36."^^ . - . - . - "kia"@en . - . - . - . - "Voltage regulator integral gain (KIA). Typical Value = 59.69."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (VAMAX). Typical Value = 1."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (VAMIN). Typical Value = -0.95."^^ . - . - . - "kp"@en . - . - . - . - "Potential circuit gain coefficient (KP). Typical Value = 4.96."^^ . - . - . - "kl"@en . - . - . - . - "Exciter field voltage lower limit parameter (KL). Typical Value = 10."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 1.1."^^ . - . - . - "vfemax"@en . - . - . - . - "Exciter field current limit reference (VFEMAX). Typical Value = 6.9."^^ . - . - . - "vemin"@en . - . - . - . - "Minimum exciter voltage output (VEMIN). Typical Value = 0."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.18."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (KD). Typical Value = 0.02."^^ . - . - . - "kf1"@en . - . - . - . - "Excitation control system stabilizer gain (KF1). Typical Value = 0.212."^^ . - . - . - "kf2"@en . - . - . - . - "Excitation control system stabilizer gain (KF2). Typical Value = 0."^^ . - . - . - "kf3"@en . - . - . - . - "Excitation control system stabilizer gain (KF3). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE1) equals VEMAX (VE1). Typical Value = 6.3."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE1, back of commutating reactance (SE[VE1]). Typical Value = 0.44."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE2). Typical Value = 3.02."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE2, back of commutating reactance (SE[VE2]). Typical Value = 0.075."^^ . - . - "ExcIEEEAC8B"@en . - . - "The class represents IEEE Std 421.5-2005 type AC8B model. This model represents a PID voltage regulator with either a brushless exciter or dc exciter. The AVR in this model consists of PID control, with separate constants for the proportional (KPR), integral (KIR), and derivative (KDR) gains. The representation of the brushless exciter (TE, KE, SE, KC, KD) is similar to the model Type AC2A. The Type AC8B model can be used to represent static voltage regulators applied to brushless excitation systems. Digitally based voltage regulators feeding dc rotating main exciters can be represented with the AC Type AC8B model with the parameters KC and KD set to 0. For thyristor power stages fed from the generator terminals, the limits VRMAX and VRMIN should be a function of terminal voltage: VT * VRMAX and VT * VRMIN.Reference: IEEE Standard 421.5-2005 Section 6.8. "^^ . - . - . - . - . - "kpr"@en . - . - . - . - "Voltage regulator proportional gain (KPR). Typical Value = 80."^^ . - . - . - "kir"@en . - . - . - . - "Voltage regulator integral gain (KIR). Typical Value = 5."^^ . - . - . - "kdr"@en . - . - . - . - "Voltage regulator derivative gain (KDR). Typical Value = 10."^^ . - . - . - "tdr"@en . - . - . - . - "Lag time constant (TDR). Typical Value = 0.1."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 35."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 1."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 1.2."^^ . - . - . - "vfemax"@en . - . - . - . - "Exciter field current limit reference (VFEMAX). Typical Value = 6."^^ . - . - . - "vemin"@en . - . - . - . - "Minimum exciter voltage output (VEMIN). Typical Value = 0."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.55."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (KD). Typical Value = 1.1."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE1) equals VEMAX (VE1). Typical Value = 6.5."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE1, back of commutating reactance (SE[VE1]). Typical Value = 0.3."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE2). Typical Value = 9."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, VE2, back of commutating reactance (SE[VE2]). Typical Value = 3."^^ . - . - "ExcIEEEDC1A"@en . - . - "The class represents IEEE Std 421.5-2005 type DC1A model. This model represents field-controlled dc commutator exciters with continuously acting voltage regulators (especially the direct-acting rheostatic, rotating amplifier, and magnetic amplifier types). Because this model has been widely implemented by the industry, it is sometimes used to represent other types of systems when detailed data for them are not available or when a simplified model is required.Reference: IEEE Standard 421.5-2005 Section 5.1. "^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 46."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.06."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 0."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -0.9."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 0.46."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gain (KF). Typical Value = 0.1."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD1). Typical Value = 3.1."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD1 (SE[EFD1]). Typical Value = 0.33."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD2). Typical Value = 2.3."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD2 (SE[EFD2]). Typical Value = 0.1."^^ . - . - . - "uelin"@en . - . - . - . - "UEL input (uelin).true = input is connected to the HV gatefalse = input connects to the error signal.Typical Value = true."^^ . - . - . - "exclim"@en . - . - . - . - "(exclim). IEEE standard is ambiguous about lower limit on exciter output.true = a lower limit of zero is applied to integrator outputfalse = a lower limit of zero is not applied to integrator output.Typical Value = true."^^ . - . - "ExcIEEEDC2A"@en . - . - "The class represents IEEE Std 421.5-2005 type DC2A model. This model represents represent field-controlled dc commutator exciters with continuously acting voltage regulators having supplies obtained from the generator or auxiliary bus. It differs from the Type DC1A model only in the voltage regulator output limits, which are now proportional to terminal voltage VT.It is representative of solid-state replacements for various forms of older mechanical and rotating amplifier regulating equipment connected to dc commutator exciters.Reference: IEEE Standard 421.5-2005 Section 5.2. "^^ . - . - . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD1). Typical Value = 3.05."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD2). Typical Value = 2.29."^^ . - . - . - "exclim"@en . - . - . - . - "(exclim). IEEE standard is ambiguous about lower limit on exciter output. Typical Value = - 999 which means that there is no limit applied."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 300."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gain (KF). Typical Value = 0.1."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD1 (SE[EFD1]). Typical Value = 0.279."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD2 (SE[EFD2]). Typical Value = 0.117."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.01."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 1.33."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 0.675."^^ . - . - . - "uelin"@en . - . - . - . - "UEL input (uelin).true = input is connected to the HV gatefalse = input connects to the error signal.Typical Value = true."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 4.95."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -4.9."^^ . - . - "ExcIEEEDC3A"@en . - . - "The class represents IEEE Std 421.5-2005 type DC3A model. This model represents represent older systems, in particular those dc commutator exciters with non-continuously acting regulators that were commonly used before the development of the continuously acting varieties. These systems respond at basically two different rates, depending upon the magnitude of voltage error. For small errors, adjustment is made periodically with a signal to a motor-operated rheostat. Larger errors cause resistors to be quickly shorted or inserted and a strong forcing signal applied to the exciter. Continuous motion of the motor-operated rheostat occurs for these larger error signals, even though it is bypassed by contactor action.Reference: IEEE Standard 421.5-2005 Section 5.3. "^^ . - . - . - . - . - "trh"@en . - . - . - . - "Rheostat travel time (TRH). Typical Value = 20."^^ . - . - . - "kv"@en . - . - . - . - "Fast raise/lower contact setting (KV). Typical Value = 0.05."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 0.5."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 0.05."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD1). Typical Value = 3.375."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD1 (SE[EFD1]). Typical Value = 0.267."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD2). Typical Value = 3.15."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD2 (SE[EFD2]). Typical Value = 0.068."^^ . - . - . - "exclim"@en . - . - . - . - "(exclim). IEEE standard is ambiguous about lower limit on exciter output.true = a lower limit of zero is applied to integrator outputfalse = a lower limit of zero is not applied to integrator output.Typical Value = true."^^ . - . - "ExcIEEEDC4B"@en . - . - "The class represents IEEE Std 421.5-2005 type DC4B model. These excitation systems utilize a field-controlled dc commutator exciter with a continuously acting voltage regulator having supplies obtained from the generator or auxiliary bus.Reference: IEEE Standard 421.5-2005 Section 5.4. "^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 1."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.2."^^ . - . - . - "kp"@en . - . - . - . - "Regulator proportional gain (KP). Typical Value = 20."^^ . - . - . - "ki"@en . - . - . - . - "Regulator integral gain (KI). Typical Value = 20."^^ . - . - . - "kd"@en . - . - . - . - "Regulator derivative gain (KD). Typical Value = 20."^^ . - . - . - "td"@en . - . - . - . - "Regulator derivative filter time constant(TD). Typical Value = 0.01."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 2.7."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -0.9."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 0.8."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gain (KF). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD1). Typical Value = 1.75."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD1 (SE[EFD1]). Typical Value = 0.08."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (EFD2). Typical Value = 2.33."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, EFD2 (SE[EFD2]). Typical Value = 0.27."^^ . - . - . - "vemin"@en . - . - . - . - "Minimum exciter voltage output(VEMIN). Typical Value = 0."^^ . - . - . - "oelin"@en . - . - . - . - "OEL input (OELin).true = LV gatefalse = subtract from error signal.Typical Value = true."^^ . - . - . - "uelin"@en . - . - . - . - "UEL input (UELin).true = HV gatefalse = add to error signal.Typical Value = true."^^ . - . - "ExcIEEEST1A"@en . - . - "The class represents IEEE Std 421.5-2005 type ST1A model. This model represents systems in which excitation power is supplied through a transformer from the generator terminals (or the unit’s auxiliary bus) and is regulated by a controlled rectifier. The maximum exciter voltage available from such systems is directly related to the generator terminal voltage.Reference: IEEE Standard 421.5-2005 Section 7.1. "^^ . - . - . - . - . - "ilr"@en . - . - . - . - "Exciter output current limit reference (ILR). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 190."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.08."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (KF). Typical Value = 0."^^ . - . - . - "klr"@en . - . - . - . - "Exciter output current limiter gain (KLR). Typical Value = 0."^^ . - . - . - "pssin"@en . - . - . - . - "Selector of the Power System Stabilizer (PSS) input (PSSin).true = PSS input (Vs) added to error signalfalse = PSS input (Vs) added to voltage regulator output.Typical Value = true."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 10."^^ . - . - . - "tb1"@en . - . - . - . - "Voltage regulator time constant (TB1). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 1."^^ . - . - . - "tc1"@en . - . - . - . - "Voltage regulator time constant (TC1). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "uelin"@en . - . - . - . - "Selector of the connection of the UEL input (UELin). Typical Value = ignoreUELsignal."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (VAMAX). Typical Value = 14.5."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (VAMIN). Typical Value = -14.5."^^ . - . - . - "vimax"@en . - . - . - . - "Maximum voltage regulator input limit (VIMAX). Typical Value = 999."^^ . - . - . - "vimin"@en . - . - . - . - "Minimum voltage regulator input limit (VIMIN). Typical Value = -999."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (VRMAX). Typical Value = 7.8."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (VRMIN). Typical Value = -6.7."^^ . - . - "ExcIEEEST2A"@en . - . - "The class represents IEEE Std 421.5-2005 type ST2A model. Some static systems utilize both current and voltage sources (generator terminal quantities) to comprise the power source. The regulator controls the exciter output through controlled saturation of the power transformer components. These compound-source rectifier excitation systems are designated Type ST2A and are represented by ExcIEEEST2A.Reference: IEEE Standard 421.5-2005 Section 7.2. "^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). Typical Value = 120."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.15."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (VRMAX). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (VRMIN). Typical Value = 0."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (KE). Typical Value = 1."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (TE). Typical Value = 0.5."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (KF). Typical Value = 0.05."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value = 1."^^ . - . - . - "kp"@en . - . - . - . - "Potential circuit gain coefficient (KP). Typical Value = 4.88."^^ . - . - . - "ki"@en . - . - . - . - "Potential circuit gain coefficient (KI). Typical Value = 8."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 1.82."^^ . - . - . - "efdmax"@en . - . - . - . - "Maximum field voltage (EFDMax). Typical Value = 99."^^ . - . - . - "uelin"@en . - . - . - . - "UEL input (UELin).true = HV gatefalse = add to error signal.Typical Value = true."^^ . - . - "ExcIEEEST3A"@en . - . - "The class represents IEEE Std 421.5-2005 type ST3A model. Some static systems utilize a field voltage control loop to linearize the exciter control characteristic. This also makes the output independent of supply source variations until supply limitations are reached. These systems utilize a variety of controlled-rectifier designs: full thyristor complements or hybrid bridgesin either series or shunt configurations. The power source may consist of only a potential source, either fed from the machine terminals or from internal windings. Some designs may have compound power sources utilizing both machine potential and current. These power sources are represented as phasor combinations of machine terminal current and voltage and are accommodated by suitable parameters in model Type ST3A which is represented by ExcIEEEST3A.Reference: IEEE Standard 421.5-2005 Section 7.3. "^^ . - . - . - . - . - "vimax"@en . - . - . - . - "Maximum voltage regulator input limit (VIMAX). Typical Value = 0.2."^^ . - . - . - "vimin"@en . - . - . - . - "Minimum voltage regulator input limit (VIMIN). Typical Value = -0.2."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (KA). This is parameter K in the IEEE Std. Typical Value = 200."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (TB). Typical Value = 10."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (TC). Typical Value = 1."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 10."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -10."^^ . - . - . - "km"@en . - . - . - . - "Forward gain constant of the inner loop field regulator (KM). Typical Value = 7.93."^^ . - . - . - "tm"@en . - . - . - . - "Forward time constant of inner loop field regulator (TM). Typical Value = 0.4."^^ . - . - . - "vmmax"@en . - . - . - . - "Maximum inner loop output (VMMax). Typical Value = 1."^^ . - . - . - "vmmin"@en . - . - . - . - "Minimum inner loop output (VMMin). Typical Value = 0."^^ . - . - . - "kg"@en . - . - . - . - "Feedback gain constant of the inner loop field regulator (KG). Typical Value = 1."^^ . - . - . - "kp"@en . - . - . - . - "Potential circuit gain coefficient (KP). Typical Value = 6.15."^^ . - . - . - "thetap"@en . - . - . - . - "Potential circuit phase angle (thetap). Typical Value = 0."^^ . - . - _:node1gda76hcix42 . -_:node1gda76hcix42 "deg" . - _:node1gda76hcix43 . -_:node1gda76hcix43 "none" . - . - "ki"@en . - . - . - . - "Potential circuit gain coefficient (KI). Typical Value = 0."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.2."^^ . - . - . - "xl"@en . - . - . - . - "Reactance associated with potential source (XL). Typical Value = 0.081."^^ . - . - . - "vbmax"@en . - . - . - . - "Maximum excitation voltage (VBMax). Typical Value = 6.9."^^ . - . - . - "vgmax"@en . - . - . - . - "Maximum inner loop feedback voltage (VGMax). Typical Value = 5.8."^^ . - . - "ExcIEEEST4B"@en . - . - "The class represents IEEE Std 421.5-2005 type ST4B model. This model is a variation of the Type ST3A model, with a proportional plus integral (PI) regulator block replacing the lag-lead regulator characteristic that is in the ST3A model. Both potential and compound source rectifier excitation systems are modeled. The PI regulator blocks have non-windup limits that are represented. The voltage regulator of this model is typically implemented digitally.Reference: IEEE Standard 421.5-2005 Section 7.4. "^^ . - . - . - . - . - "kpr"@en . - . - . - . - "Voltage regulator proportional gain (KPR). Typical Value = 10.75."^^ . - . - . - "kir"@en . - . - . - . - "Voltage regulator integral gain (KIR). Typical Value = 10.75."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (TA). Typical Value = 0.02."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -0.87."^^ . - . - . - "kpm"@en . - . - . - . - "Voltage regulator proportional gain output (KPM). Typical Value = 1."^^ . - . - . - "kim"@en . - . - . - . - "Voltage regulator integral gain output (KIM). Typical Value = 0."^^ . - . - . - "vmmax"@en . - . - . - . - "Maximum inner loop output (VMMax). Typical Value = 99."^^ . - . - . - "vmmin"@en . - . - . - . - "Minimum inner loop output (VMMin). Typical Value = -99."^^ . - . - . - "kg"@en . - . - . - . - "Feedback gain constant of the inner loop field regulator (KG). Typical Value = 0."^^ . - . - . - "kp"@en . - . - . - . - "Potential circuit gain coefficient (KP). Typical Value = 9.3."^^ . - . - . - "thetap"@en . - . - . - . - "Potential circuit phase angle (thetap). Typical Value = 0."^^ . - . - . - "ki"@en . - . - . - . - "Potential circuit gain coefficient (KI). Typical Value = 0."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (KC). Typical Value = 0.113."^^ . - . - . - "xl"@en . - . - . - . - "Reactance associated with potential source (XL). Typical Value = 0.124."^^ . - . - . - "vbmax"@en . - . - . - . - "Maximum excitation voltage (VBMax). Typical Value = 11.63."^^ . - . - "ExcIEEEST5B"@en . - . - "The class represents IEEE Std 421.5-2005 type ST5B model. The Type ST5B excitation system is a variation of the Type ST1A model, with alternative overexcitation and underexcitation inputs and additional limits.Reference: IEEE Standard 421.5-2005 Section 7.5.Note: the block diagram in the IEEE 421.5 standard has input signal Vc and does not indicate the summation point with Vref. The implementation of the ExcIEEEST5B shall consider summation point with Vref."^^ . - . - . - . - . - "kr"@en . - . - . - . - "Regulator gain (KR). Typical Value = 200."^^ . - . - . - "t1"@en . - . - . - . - "Firing circuit time constant (T1). Typical Value = 0.004."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier regulation factor (KC). Typical Value = 0.004."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 5."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -4."^^ . - . - . - "tc1"@en . - . - . - . - "Regulator lead time constant (TC1). Typical Value = 0.8."^^ . - . - . - "tb1"@en . - . - . - . - "Regulator lag time constant (TB1). Typical Value = 6."^^ . - . - . - "tc2"@en . - . - . - . - "Regulator lead time constant (TC2). Typical Value = 0.08."^^ . - . - . - "tb2"@en . - . - . - . - "Regulator lag time constant (TB2). Typical Value = 0.01."^^ . - . - . - "toc1"@en . - . - . - . - "OEL lead time constant (TOC1). Typical Value = 0.1."^^ . - . - . - "tob1"@en . - . - . - . - "OEL lag time constant (TOB1). Typical Value = 2."^^ . - . - . - "toc2"@en . - . - . - . - "OEL lead time constant (TOC2). Typical Value = 0.08."^^ . - . - . - "tob2"@en . - . - . - . - "OEL lag time constant (TOB2). Typical Value = 0.08."^^ . - . - . - "tuc1"@en . - . - . - . - "UEL lead time constant (TUC1). Typical Value = 2."^^ . - . - . - "tub1"@en . - . - . - . - "UEL lag time constant (TUB1). Typical Value = 10."^^ . - . - . - "tuc2"@en . - . - . - . - "UEL lead time constant (TUC2). Typical Value = 0.1."^^ . - . - . - "tub2"@en . - . - . - . - "UEL lag time constant (TUB2). Typical Value = 0.05."^^ . - . - "ExcIEEEST6B"@en . - . - "The class represents IEEE Std 421.5-2005 type ST6B model. This model consists of a PI voltage regulator with an inner loop field voltage regulator and pre-control. The field voltage regulator implements a proportional control. The pre-control and the delay in the feedback circuit increase the dynamic response.Reference: IEEE Standard 421.5-2005 Section 7.6. "^^ . - . - . - . - . - "ilr"@en . - . - . - . - "Exciter output current limit reference (ILR). Typical Value = 4.164."^^ . - . - . - "kci"@en . - . - . - . - "Exciter output current limit adjustment (KCI). Typical Value = 1.0577."^^ . - . - . - "kff"@en . - . - . - . - "Pre-control gain constant of the inner loop field regulator (KFF). Typical Value = 1."^^ . - . - . - "kg"@en . - . - . - . - "Feedback gain constant of the inner loop field regulator (KG). Typical Value = 1."^^ . - . - . - "kia"@en . - . - . - . - "Voltage regulator integral gain (KIA). Typical Value = 45.094."^^ . - . - . - "klr"@en . - . - . - . - "Exciter output current limiter gain (KLR). Typical Value = 17.33."^^ . - . - . - "km"@en . - . - . - . - "Forward gain constant of the inner loop field regulator (KM). Typical Value = 1."^^ . - . - . - "kpa"@en . - . - . - . - "Voltage regulator proportional gain (KPA). Typical Value = 18.038."^^ . - . - . - "oelin"@en . - . - . - . - "OEL input selector (OELin). Typical Value = noOELinput."^^ . - . - . - "tg"@en . - . - . - . - "Feedback time constant of inner loop field voltage regulator (TG). Typical Value = 0.02."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (VAMAX). Typical Value = 4.81."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (VAMIN). Typical Value = -3.85."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 4.81."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -3.85."^^ . - . - "ExcIEEEST7B"@en . - . - "The class represents IEEE Std 421.5-2005 type ST7B model. This model is representative of static potential-source excitation systems. In this system, the AVR consists of a PI voltage regulator. A phase lead-lag filter in series allows introduction of a derivative function, typically used with brushless excitation systems. In that case, the regulator is of the PID type. In addition, the terminal voltage channel includes a phase lead-lag filter. The AVR includes the appropriate inputs on its reference for overexcitation limiter (OEL1), underexcitation limiter (UEL), stator current limiter (SCL), and current compensator (DROOP). All these limitations, when they work at voltage reference level, keep the PSS (VS signal from Type PSS1A, PSS2A, or PSS2B) in operation. However, the UEL limitation can also be transferred to the high value (HV) gate acting on the output signal. In addition, the output signal passes through a low value (LV) gate for a ceiling overexcitation limiter (OEL2).Reference: IEEE Standard 421.5-2005 Section 7.7. "^^ . - . - . - . - . - "kh"@en . - . - . - . - "High-value gate feedback gain (KH). Typical Value 1."^^ . - . - . - "kia"@en . - . - . - . - "Voltage regulator integral gain (KIA). Typical Value = 1."^^ . - . - . - "kl"@en . - . - . - . - "Low-value gate feedback gain (KL). Typical Value 1."^^ . - . - . - "kpa"@en . - . - . - . - "Voltage regulator proportional gain (KPA). Typical Value = 40."^^ . - . - . - "oelin"@en . - . - . - . - "OEL input selector (OELin). Typical Value = noOELinput."^^ . - . - . - "tb"@en . - . - . - . - "Regulator lag time constant (TB). Typical Value 1."^^ . - . - . - "tc"@en . - . - . - . - "Regulator lead time constant (TC). Typical Value 1."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (TF). Typical Value 1."^^ . - . - . - "tg"@en . - . - . - . - "Feedback time constant of inner loop field voltage regulator (TG). Typical Value 1."^^ . - . - . - "tia"@en . - . - . - . - "Feedback time constant (TIA). Typical Value = 3."^^ . - . - . - "uelin"@en . - . - . - . - "UEL input selector (UELin). Typical Value = noUELinput."^^ . - . - . - "vmax"@en . - . - . - . - "Maximum voltage reference signal (VMAX). Typical Value = 1.1."^^ . - . - . - "vmin"@en . - . - . - . - "Minimum voltage reference signal (VMIN). Typical Value = 0.9."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (VRMAX). Typical Value = 5."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (VRMIN). Typical Value = -4.5."^^ . - . - "ExcAC1A"@en . - . - "Modified IEEE AC1A alternator-supplied rectifier excitation system with different rate feedback source."^^ . - . - . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 400."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.02."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (Vamax). Typical Value = 14.5."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (Vamin). Typical Value = -14.5."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 0.8."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (Kf). Typical Value = 0.03."^^ . - . - . - "kf1"@en . - . - . - . - "Coefficient to allow different usage of the model (Kf1). Typical Value = 0."^^ . - . - . - "kf2"@en . - . - . - . - "Coefficient to allow different usage of the model (Kf2). Typical Value = 1."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 1."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0.2."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (Kd). Typical Value = 0.38."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve1). Typical Value = 4.18."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve1, back of commutating reactance (Se[Ve1]). Typical Value = 0.1."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve2). Typical Value = 3.14."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve2, back of commutating reactance (Se[Ve2]). Typical Value = 0.03."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (Vrmax). Typical Value = 6.03."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (Rrmin). Typical Value = -5.43."^^ . - . - . - "hvlvgates"@en . - . - . - . - "Indicates if both HV gate and LV gate are active (HVLVgates).true = gates are usedfalse = gates are not used.Typical Value = true."^^ . - . - "ExcAC2A"@en . - . - "Modified IEEE AC2A alternator-supplied rectifier excitation system with different field current limit."^^ . - . - . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 400."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.02."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (Vamax). Typical Value = 8."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (Vamin). Typical Value = -8."^^ . - . - . - "kb"@en . - . - . - . - "Second stage regulator gain (Kb) (>0). Exciter field current controller gain. Typical Value = 25."^^ . - . - . - "kb1"@en . - . - . - . - "Second stage regulator gain (Kb1). It is exciter field current controller gain used as alternative to Kb to represent a variant of the ExcAC2A model. Typical Value = 25."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (Vrmax). Typical Value = 105."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (Vrmin). Typical Value = -95."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 0.6."^^ . - . - . - "vfemax"@en . - . - . - . - "Exciter field current limit reference (Vfemax). Typical Value = 4.4."^^ . - . - . - "kh"@en . - . - . - . - "Exciter field current feedback gain (Kh). Typical Value = 1."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (Kf). Typical Value = 0.03."^^ . - . - . - "kl"@en . - . - . - . - "Exciter field current limiter gain (Kl). Typical Value = 10."^^ . - . - . - "vlr"@en . - . - . - . - "Maximum exciter field current (Vlr). Typical Value = 4.4."^^ . - . - . - "kl1"@en . - . - . - . - "Coefficient to allow different usage of the model (Kl1). Typical Value = 1."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 1."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0.28."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (Kd). Typical Value = 0.35."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve1). Typical Value = 4.4."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve1, back of commutating reactance (Se[Ve1]). Typical Value = 0.037."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve2). Typical Value = 3.3."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve2, back of commutating reactance (Se[Ve2]). Typical Value = 0.012."^^ . - . - . - "hvgate"@en . - . - . - . - "Indicates if HV gate is active (HVgate).true = gate is usedfalse = gate is not used.Typical Value = true."^^ . - . - . - "lvgate"@en . - . - . - . - "Indicates if LV gate is active (LVgate).true = gate is usedfalse = gate is not used.Typical Value = true."^^ . - . - "ExcAC3A"@en . - . - "Modified IEEE AC3A alternator-supplied rectifier excitation system with different field current limit."^^ . - . - . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 0."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 45.62."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.013."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (Vamax). Typical Value = 1."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (Vamin). Typical Value = -0.95."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 1.17."^^ . - . - . - "vemin"@en . - . - . - . - "Minimum exciter voltage output (Vemin). Typical Value = 0.1."^^ . - . - . - "kr"@en . - . - . - . - "Constant associated with regulator and alternator field power supply (Kr). Typical Value =3.77."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (Kf). Typical Value = 0.143."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 1."^^ . - . - . - "kn"@en . - . - . - . - "Excitation control system stabilizer gain (Kn). Typical Value =0.05."^^ . - . - . - "efdn"@en . - . - . - . - "Value of EFD at which feedback gain changes (Efdn). Typical Value = 2.36."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0.104."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (Kd). Typical Value = 0.499."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "klv"@en . - . - . - . - "Gain used in the minimum field voltage limiter loop (Klv). Typical Value = 0.194."^^ . - . - . - "kf1"@en . - . - . - . - "Coefficient to allow different usage of the model (Kf1). Typical Value = 1."^^ . - . - . - "kf2"@en . - . - . - . - "Coefficient to allow different usage of the model (Kf2). Typical Value = 0."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "vfemax"@en . - . - . - . - "Exciter field current limit reference (Vfemax). Typical Value = 16."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve1) equals Vemax (Ve1). Typical Value = 6.24."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve1, back of commutating reactance (Se[Ve1]). Typical Value = 1.143."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve2). Typical Value = 4.68."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve2, back of commutating reactance (Se[Ve2]). Typical Value = 0.1."^^ . - . - . - "vlv"@en . - . - . - . - "Field voltage used in the minimum field voltage limiter loop (Vlv). Typical Value = 0.79."^^ . - . - "ExcAC4A"@en . - . - "Modified IEEE AC4A alternator-supplied rectifier excitation system with different minimum controller output."^^ . - . - . - . - . - "vimax"@en . - . - . - . - "Maximum voltage regulator input limit (Vimax). Typical Value = 10."^^ . - . - . - "vimin"@en . - . - . - . - "Minimum voltage regulator input limit (Vimin). Typical Value = -10."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 1."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 10."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 200."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.015."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 5.64."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = -4.53."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0."^^ . - . - "ExcAC5A"@en . - . - "Modified IEEE AC5A alternator-supplied rectifier excitation system with different minimum controller output."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 400."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 0."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.02."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 7.3."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value =-7.3."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 0.8."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (Kf). Typical Value = 0.03."^^ . - . - . - "tf1"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf1). Typical Value = 1."^^ . - . - . - "tf2"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf2). Typical Value = 0.8."^^ . - . - . - "tf3"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf3). Typical Value = 0."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd1). Typical Value = 5.6."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd1 (SE[Efd1]). Typical Value = 0.86."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd2). Typical Value = 4.2."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd2 (SE[Efd2]). Typical Value = 0.5."^^ . - . - . - "a"@en . - . - . - . - "Coefficient to allow different usage of the model (a). Typical Value = 1."^^ . - . - "ExcAC6A"@en . - . - "Modified IEEE AC6A alternator-supplied rectifier excitation system with speed input."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 536."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.086."^^ . - . - . - "tk"@en . - . - . - . - "Voltage regulator time constant (Tk). Typical Value = 0.18."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 9."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 3."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (Vamax). Typical Value = 75."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (Vamin). Typical Value = -75."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 44."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = -36."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 1."^^ . - . - . - "kh"@en . - . - . - . - "Exciter field current limiter gain (Kh). Typical Value = 92."^^ . - . - . - "tj"@en . - . - . - . - "Exciter field current limiter time constant (Tj). Typical Value = 0.02."^^ . - . - . - "th"@en . - . - . - . - "Exciter field current limiter time constant (Th). Typical Value = 0.08."^^ . - . - . - "vfelim"@en . - . - . - . - "Exciter field current limit reference (Vfelim). Typical Value = 19."^^ . - . - . - "vhmax"@en . - . - . - . - "Maximum field current limiter signal reference (Vhmax). Typical Value = 75."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0.173."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (Kd). Typical Value = 1.91."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1.6."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve1). Typical Value = 7.4."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve1, back of commutating reactance (Se[Ve1]). Typical Value = 0.214."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve2). Typical Value = 5.55."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve2, back of commutating reactance (Se[Ve2]). Typical Value = 0.044."^^ . - . - "ExcAC8B"@en . - . - "Modified IEEE AC8B alternator-supplied rectifier excitation system with speed input and input limiter."^^ . - . - . - . - . - "inlim"@en . - . - . - . - "Input limiter indicator.true = input limiter Vimax and Vimin is consideredfalse = input limiter Vimax and Vimin is not considered.Typical Value = true."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 1."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0.55."^^ . - . - . - "kd"@en . - . - . - . - "Demagnetizing factor, a function of exciter alternator reactances (Kd). Typical Value = 1.1."^^ . - . - . - "kdr"@en . - . - . - . - "Voltage regulator derivative gain (Kdr). Typical Value = 10."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "kir"@en . - . - . - . - "Voltage regulator integral gain (Kir). Typical Value = 5."^^ . - . - . - "kpr"@en . - . - . - . - "Voltage regulator proportional gain (Kpr). Typical Value = 80."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "pidlim"@en . - . - . - . - "PID limiter indicator.true = input limiter Vpidmax and Vpidmin is consideredfalse = input limiter Vpidmax and Vpidmin is not considered.Typical Value = true."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve1, back of commutating reactance (Se[Ve1]). Typical Value = 0.3."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve2, back of commutating reactance (Se[Ve2]). Typical Value = 3."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0."^^ . - . - . - "tdr"@en . - . - . - . - "Lag time constant (Tdr). Typical Value = 0.1."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 1.2."^^ . - . - . - "telim"@en . - . - . - . - "Selector for the limiter on the block [1/sTe].See diagram for meaning of true and false.Typical Value = false."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve1) equals VEMAX (Ve1). Typical Value = 6.5."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve2). Typical Value = 9."^^ . - . - . - "vemin"@en . - . - . - . - "Minimum exciter voltage output (Vemin). Typical Value = 0."^^ . - . - . - "vfemax"@en . - . - . - . - "Exciter field current limit reference (Vfemax). Typical Value = 6."^^ . - . - . - "vimax"@en . - . - . - . - "Input signal maximum (Vimax). Typical Value = 35."^^ . - . - . - "vimin"@en . - . - . - . - "Input signal minimum (Vimin). Typical Value = -10."^^ . - . - . - "vpidmax"@en . - . - . - . - "PID maximum controller output (Vpidmax). Typical Value = 35."^^ . - . - . - "vpidmin"@en . - . - . - . - "PID minimum controller output (Vpidmin). Typical Value = -10."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 35."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = 0."^^ . - . - . - "vtmult"@en . - . - . - . - "Multiply by generator's terminal voltage indicator.true =the limits Vrmax and Vrmin are multiplied by the generator’s terminal voltage to represent a thyristor power stage fed from the generator terminalsfalse = limits are not multiplied by generator's terminal voltage.Typical Value = false."^^ . - . - "ExcANS"@en . - . - "Italian excitation system. It represents static field voltage or excitation current feedback excitation system."^^ . - . - . - . - . - "k3"@en . - . - . - . - "AVR gain (K3). Typical Value = 1000."^^ . - . - . - "k2"@en . - . - . - . - "Exciter gain (K2). Typical Value = 20."^^ . - . - . - "kce"@en . - . - . - . - "Ceiling factor (KCE). Typical Value = 1."^^ . - . - . - "t3"@en . - . - . - . - "Time constant (T3). Typical Value = 1.6."^^ . - . - . - "t2"@en . - . - . - . - "Time constant (T2). Typical Value = 0.05."^^ . - . - . - "t1"@en . - . - . - . - "Time constant (T1). Typical Value = 20."^^ . - . - . - "blint"@en . - . - . - . - "Governor Control Flag (BLINT).0 = lead-lag regulator1 = proportional integral regulator.Typical Value = 0."^^ . - . - . - "kvfif"@en . - . - . - . - "Rate feedback signal flag (KVFIF).0 = output voltage of the exciter1 = exciter field current.Typical Value = 0."^^ . - . - . - "ifmn"@en . - . - . - . - "Minimum exciter current (IFMN). Typical Value = -5.2."^^ . - . - . - "ifmx"@en . - . - . - . - "Maximum exciter current (IFMX). Typical Value = 6.5."^^ . - . - . - "vrmn"@en . - . - . - . - "Maximum AVR output (VRMN). Typical Value = -5.2."^^ . - . - . - "vrmx"@en . - . - . - . - "Minimum AVR output (VRMX). Typical Value = 6.5."^^ . - . - . - "krvecc"@en . - . - . - . - "Feedback enabling (KRVECC).0 = Open loop control1 = Closed loop control.Typical Value = 1."^^ . - . - . - "tb"@en . - . - . - . - "Exciter time constant (TB). Typical Value = 0.04."^^ . - . - "ExcAVR1"@en . - . - "Italian excitation system corresponding to IEEE (1968) Type 1 Model. It represents exciter dynamo and electromechanical regulator."^^ . - . - . - . - . - "ka"@en . - . - . - . - "AVR gain (KA). Typical Value = 500."^^ . - . - . - "vrmn"@en . - . - . - . - "Maximum AVR output (VRMN). Typical Value = -6."^^ . - . - . - "vrmx"@en . - . - . - . - "Minimum AVR output (VRMX). Typical Value = 7."^^ . - . - . - "ta"@en . - . - . - . - "AVR time constant (TA). Typical Value = 0.2."^^ . - . - . - "tb"@en . - . - . - . - "AVR time constant (TB). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant (TE). Typical Value = 1."^^ . - . - . - "e1"@en . - . - . - . - "Field voltage value 1 (E1). Typical Value = 4.18."^^ . - . - . - "se1"@en . - . - . - . - "Saturation factor at E1 (S(E1)). Typical Value = 0.1."^^ . - . - . - "e2"@en . - . - . - . - "Field voltage value 2 (E2). Typical Value = 3.14."^^ . - . - . - "se2"@en . - . - . - . - "Saturation factor at E2 (S(E2)). Typical Value = 0.03."^^ . - . - . - "kf"@en . - . - . - . - "Rate feedback gain (KF). Typical Value = 0.02."^^ . - . - . - "tf"@en . - . - . - . - "Rate feedback time constant (TF). Typical Value = 1."^^ . - . - "ExcAVR2"@en . - . - "Italian excitation system corresponding to IEEE (1968) Type 2 Model. It represents alternator and rotating diodes and electromechanic voltage regulators."^^ . - . - . - . - . - "ka"@en . - . - . - . - "AVR gain (KA). Typical Value = 500."^^ . - . - . - "vrmn"@en . - . - . - . - "Maximum AVR output (VRMN). Typical Value = -6."^^ . - . - . - "vrmx"@en . - . - . - . - "Minimum AVR output (VRMX). Typical Value = 7."^^ . - . - . - "ta"@en . - . - . - . - "AVR time constant (TA). Typical Value = 0.02."^^ . - . - . - "tb"@en . - . - . - . - "AVR time constant (TB). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant (TE). Typical Value = 1."^^ . - . - . - "e1"@en . - . - . - . - "Field voltage value 1 (E1). Typical Value = 4.18."^^ . - . - . - "se1"@en . - . - . - . - "Saturation factor at E1 (S(E1)). Typical Value = 0.1."^^ . - . - . - "e2"@en . - . - . - . - "Field voltage value 2 (E2). Typical Value = 3.14."^^ . - . - . - "se2"@en . - . - . - . - "Saturation factor at E2 (S(E2)). Typical Value = 0.03."^^ . - . - . - "kf"@en . - . - . - . - "Rate feedback gain (KF). Typical Value = 0.02."^^ . - . - . - "tf1"@en . - . - . - . - "Rate feedback time constant (TF1). Typical Value = 1."^^ . - . - . - "tf2"@en . - . - . - . - "Rate feedback time constant (TF2). Typical Value = 1."^^ . - . - "ExcAVR3"@en . - . - "Italian excitation system. It represents exciter dynamo and electric regulator. "^^ . - . - . - . - . - "ka"@en . - . - . - . - "AVR gain (KA). Typical Value = 3000."^^ . - . - . - "vrmn"@en . - . - . - . - "Maximum AVR output (VRMN). Typical Value = -7.5."^^ . - . - . - "vrmx"@en . - . - . - . - "Minimum AVR output (VRMX). Typical Value = 7.5."^^ . - . - . - "t1"@en . - . - . - . - "AVR time constant (T1). Typical Value = 220."^^ . - . - . - "t2"@en . - . - . - . - "AVR time constant (T2). Typical Value = 1.6."^^ . - . - . - "t3"@en . - . - . - . - "AVR time constant (T3). Typical Value = 0.66."^^ . - . - . - "t4"@en . - . - . - . - "AVR time constant (T4). Typical Value = 0.07."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant (TE). Typical Value = 1."^^ . - . - . - "e1"@en . - . - . - . - "Field voltage value 1 (E1). Typical Value = 4.18."^^ . - . - . - "se1"@en . - . - . - . - "Saturation factor at E1 (S(E1)). Typical Value = 0.1."^^ . - . - . - "e2"@en . - . - . - . - "Field voltage value 2 (E2). Typical Value = 3.14."^^ . - . - . - "se2"@en . - . - . - . - "Saturation factor at E2 (S(E2)). Typical Value = 0.03."^^ . - . - "ExcAVR4"@en . - . - "Italian excitation system. It represents static exciter and electric voltage regulator."^^ . - . - . - . - . - "ka"@en . - . - . - . - "AVR gain (KA). Typical Value = 300."^^ . - . - . - "vrmn"@en . - . - . - . - "Maximum AVR output (VRMN). Typical Value = 0."^^ . - . - . - "vrmx"@en . - . - . - . - "Minimum AVR output (VRMX). Typical Value = 5."^^ . - . - . - "t1"@en . - . - . - . - "AVR time constant (T1). Typical Value = 4.8."^^ . - . - . - "t2"@en . - . - . - . - "AVR time constant (T2). Typical Value = 1.5."^^ . - . - . - "t3"@en . - . - . - . - "AVR time constant (T3). Typical Value = 0."^^ . - . - . - "t4"@en . - . - . - . - "AVR time constant (T4). Typical Value = 0."^^ . - . - . - "ke"@en . - . - . - . - "Exciter gain (KE). Typical Value = 1."^^ . - . - . - "vfmx"@en . - . - . - . - "Maximum exciter output (VFMX). Typical Value = 5."^^ . - . - . - "vfmn"@en . - . - . - . - "Minimum exciter output (VFMN). Typical Value = 0."^^ . - . - . - "kif"@en . - . - . - . - "Exciter internal reactance (KIF). Typical Value = 0."^^ . - . - . - "tif"@en . - . - . - . - "Exciter current feedback time constant (TIF). Typical Value = 0."^^ . - . - . - "t1if"@en . - . - . - . - "Exciter current feedback time constant (T1IF). Typical Value = 60."^^ . - . - . - "imul"@en . - . - . - . - "AVR output voltage dependency selector (Imul).true = selector is connectedfalse = selector is not connected.Typical Value = true."^^ . - . - "ExcAVR5"@en . - . - "Manual excitation control with field circuit resistance. This model can be used as a very simple representation of manual voltage control."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Gain (Ka)."^^ . - . - . - "ta"@en . - . - . - . - "Time constant (Ta)."^^ . - . - . - "rex"@en . - . - . - . - "Effective Output Resistance (Rex). Rex represents the effective output resistance seen by the excitation system."^^ . - . - "ExcAVR7"@en . - . - "IVO excitation system."^^ . - . - . - . - . - "k1"@en . - . - . - . - "Gain (K1). Typical Value = 1."^^ . - . - . - "a1"@en . - . - . - . - "Lead coefficient (A1). Typical Value = 0.5."^^ . - . - . - "a2"@en . - . - . - . - "Lag coefficient (A2). Typical Value = 0.5."^^ . - . - . - "t1"@en . - . - . - . - "Lead time constant (T1). Typical Value = 0.05."^^ . - . - . - "t2"@en . - . - . - . - "Lag time constant (T2). Typical Value = 0.1."^^ . - . - . - "vmax1"@en . - . - . - . - "Lead-lag max. limit (Vmax1). Typical Value = 5."^^ . - . - . - "vmin1"@en . - . - . - . - "Lead-lag min. limit (Vmin1). Typical Value = -5."^^ . - . - . - "k3"@en . - . - . - . - "Gain (K3). Typical Value = 3."^^ . - . - . - "a3"@en . - . - . - . - "Lead coefficient (A3). Typical Value = 0.5."^^ . - . - . - "a4"@en . - . - . - . - "Lag coefficient (A4). Typical Value = 0.5."^^ . - . - . - "t3"@en . - . - . - . - "Lead time constant (T3). Typical Value = 0.1."^^ . - . - . - "t4"@en . - . - . - . - "Lag time constant (T4). Typical Value = 0.1."^^ . - . - . - "vmax3"@en . - . - . - . - "Lead-lag max. limit (Vmax3). Typical Value = 5."^^ . - . - . - "vmin3"@en . - . - . - . - "Lead-lag min. limit (Vmin3). Typical Value = -5."^^ . - . - . - "k5"@en . - . - . - . - "Gain (K5). Typical Value = 1."^^ . - . - . - "a5"@en . - . - . - . - "Lead coefficient (A5). Typical Value = 0.5."^^ . - . - . - "a6"@en . - . - . - . - "Lag coefficient (A6). Typical Value = 0.5."^^ . - . - . - "t5"@en . - . - . - . - "Lead time constant (T5). Typical Value = 0.1."^^ . - . - . - "t6"@en . - . - . - . - "Lag time constant (T6). Typical Value = 0.1."^^ . - . - . - "vmax5"@en . - . - . - . - "Lead-lag max. limit (Vmax5). Typical Value = 5."^^ . - . - . - "vmin5"@en . - . - . - . - "Lead-lag min. limit (Vmin5). Typical Value = -2."^^ . - . - "ExcBBC"@en . - . - "Transformer fed static excitation system (static with ABB regulator). This model represents a static excitation system in which a gated thyristor bridge fed by a transformer at the main generator terminals feeds the main generator directly."^^ . - . - . - . - . - "t1"@en . - . - . - . - "Controller time constant (T1). Typical Value = 6."^^ . - . - . - "t2"@en . - . - . - . - "Controller time constant (T2). Typical Value = 1."^^ . - . - . - "t3"@en . - . - . - . - "Lead/lag time constant (T3). Typical Value = 0.05."^^ . - . - . - "t4"@en . - . - . - . - "Lead/lag time constant (T4). Typical Value = 0.01."^^ . - . - . - "k"@en . - . - . - . - "Steady state gain (K). Typical Value = 300."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum control element output (Vrmin). Typical Value = -5."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum control element output (Vrmax). Typical Value = 5."^^ . - . - . - "efdmin"@en . - . - . - . - "Minimum open circuit exciter voltage (Efdmin). Typical Value = -5."^^ . - . - . - "efdmax"@en . - . - . - . - "Maximum open circuit exciter voltage (Efdmax). Typical Value = 5."^^ . - . - . - "xe"@en . - . - . - . - "Effective excitation transformer reactance (Xe). Typical Value = 0.05."^^ . - . - . - "switch"@en . - . - . - . - "Supplementary signal routing selector (switch).true = Vs connected to 3rd summing pointfalse = Vs connected to 1st summing point (see diagram).Typical Value = true."^^ . - . - "ExcCZ"@en . - . - "Czech Proportion/Integral Exciter."^^ . - . - . - . - . - "kp"@en . - . - . - . - "Regulator proportional gain (Kp)."^^ . - . - . - "tc"@en . - . - . - . - "Regulator integral time constant (Tc). "^^ . - . - . - "vrmax"@en . - . - . - . - "Voltage regulator maximum limit (Vrmax). "^^ . - . - . - "vrmin"@en . - . - . - . - "Voltage regulator minimum limit (Vrmin). "^^ . - . - . - "ka"@en . - . - . - . - "Regulator gain (Ka)."^^ . - . - . - "ta"@en . - . - . - . - "Regulator time constant (Ta)."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke)."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te)."^^ . - . - . - "efdmax"@en . - . - . - . - "Exciter output maximum limit (Efdmax)."^^ . - . - . - "efdmin"@en . - . - . - . - "Exciter output minimum limit (Efdmin). "^^ . - . - "ExcDC1A"@en . - . - "Modified IEEE DC1A direct current commutator exciter with speed input and without underexcitation limiters (UEL) inputs."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 46."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.06."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 0."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = -0.9."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 0.46."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gain (Kf). Typical Value = 0.1."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 1."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd1). Typical Value = 3.1."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd1 (Se[Eefd1]). Typical Value = 0.33."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd2). Typical Value = 2.3."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd1 (Se[Eefd1]). Typical Value = 0.33."^^ . - . - . - "exclim"@en . - . - . - . - "(exclim).IEEE standard is ambiguous about lower limit on exciter output.true = a lower limit of zero is applied to integrator outputfalse = a lower limit of zero is not applied to integrator output.Typical Value = true."^^ . - . - . - "efdmin"@en . - . - . - . - "Minimum voltage exciter output limiter (Efdmin). Typical Value = -99."^^ . - . - . - "edfmax"@en . - . - . - . - "Maximum voltage exciter output limiter (Efdmax). Typical Value = 99."^^ . - . - "ExcDC2A"@en . - . - "Modified IEEE DC2A direct current commutator exciters with speed input, one more leg block in feedback loop and without underexcitation limiters (UEL) inputs. DC type 2 excitation system model with added speed multiplier, added lead-lag, and voltage-dependent limits."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 300."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.01."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 0."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 4.95."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = -4.9."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). If Ke is entered as zero, the model calculates an effective value of Ke such that the initial condition value of Vr is zero. The zero value of Ke is not changed. If Ke is entered as non-zero, its value is used directly, without change. Typical Value = 1."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 1.33."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gain (Kf). Typical Value = 0.1."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 0.675."^^ . - . - . - "tf1"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf1). Typical Value = 0."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd1). Typical Value = 3.05."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd1 (Se[Eefd1]). Typical Value = 0.279."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd2). Typical Value = 2.29."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd2 (Se[Efd2]). Typical Value = 0.117."^^ . - . - . - "exclim"@en . - . - . - . - "(exclim). IEEE standard is ambiguous about lower limit on exciter output.true = a lower limit of zero is applied to integrator outputfalse = a lower limit of zero is not applied to integrator output.Typical Value = true."^^ . - . - . - "vtlim"@en . - . - . - . - "(Vtlim).true = limiter at the block [Ka/(1+sTa)] is dependent on Vtfalse = limiter at the block is not dependent on Vt.Typical Value = true."^^ . - . - "ExcDC3A"@en . - . - "This is modified IEEE DC3A direct current commutator exciters with speed input, and death band. DC old type 4."^^ . - . - . - . - . - "trh"@en . - . - . - . - "Rheostat travel time (Trh). Typical Value = 20."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "kr"@en . - . - . - . - "Death band (Kr). If Kr is not zero, the voltage regulator input changes at a constant rate if Verr > Kr or Verr < -Kr as per the IEEE (1968) Type 4 model. If Kr is zero, the error signal drives the voltage regulator continuously as per the IEEE (1980) DC3 and IEEE (1992, 2005) DC3A models. Typical Value = 0."^^ . - . - . - "kv"@en . - . - . - . - "Fast raise/lower contact setting (Kv). Typical Value = 0.05."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 5."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 1.83."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "efd1"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd1). Typical Value = 2.6."^^ . - . - . - "seefd1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd1 (Se[Eefd1]). Typical Value = 0.1."^^ . - . - . - "efd2"@en . - . - . - . - "Exciter voltage at which exciter saturation is defined (Efd2). Typical Value = 3.45."^^ . - . - . - "seefd2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Efd2 (Se[Efd2]). Typical Value = 0.35."^^ . - . - . - "exclim"@en . - . - . - . - "(exclim). IEEE standard is ambiguous about lower limit on exciter output.true = a lower limit of zero is applied to integrator outputfalse = a lower limit of zero not applied to integrator output.Typical Value = true."^^ . - . - . - "edfmax"@en . - . - . - . - "Maximum voltage exciter output limiter (Efdmax). Typical Value = 99."^^ . - . - . - "efdmin"@en . - . - . - . - "Minimum voltage exciter output limiter (Efdmin). Typical Value = -99."^^ . - . - . - "efdlim"@en . - . - . - . - "(Efdlim).true = exciter output limiter is activefalse = exciter output limiter not active.Typical Value = true."^^ . - . - "ExcDC3A1"@en . - . - "This is modified old IEEE type 3 excitation system."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 300."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.01."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 5."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 1.83."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gain (Kf). Typical Value = 0.1."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 0.675."^^ . - . - . - "kp"@en . - . - . - . - "Potential circuit gain coefficient (Kp). Typical Value = 4.37."^^ . - . - . - "ki"@en . - . - . - . - "Potential circuit gain coefficient (Ki). Typical Value = 4.83."^^ . - . - . - "vbmax"@en . - . - . - . - "Available exciter voltage limiter (Vbmax). Typical Value = 11.63."^^ . - . - . - "exclim"@en . - . - . - . - "(exclim).true = lower limit of zero is applied to integrator outputfalse = lower limit of zero not applied to integrator output.Typical Value = true."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "vb1max"@en . - . - . - . - "Available exciter voltage limiter (Vb1max). Typical Value = 11.63."^^ . - . - . - "vblim"@en . - . - . - . - "Vb limiter indicator.true = exciter Vbmax limiter is activefalse = Vb1max is active.Typical Value = true."^^ . - . - "ExcELIN1"@en . - . - "Static PI transformer fed excitation system: ELIN (VATECH) - simplified model. This model represents an all-static excitation system. A PI voltage controller establishes a desired field current set point for a proportional current controller. The integrator of the PI controller has a follow-up input to match its signal to the present field current. A power system stabilizer with power input is included in the model."^^ . - . - . - . - . - "tfi"@en . - . - . - . - "Current transducer time constant (Tfi). Typical Value = 0."^^ . - . - . - "tnu"@en . - . - . - . - "Controller reset time constant (Tnu). Typical Value = 2."^^ . - . - . - "vpu"@en . - . - . - . - "Voltage controller proportional gain (Vpu). Typical Value = 34.5."^^ . - . - . - "vpi"@en . - . - . - . - "Current controller gain (Vpi). Typical Value = 12.45."^^ . - . - . - "vpnf"@en . - . - . - . - "Controller follow up gain (Vpnf). Typical Value = 2."^^ . - . - . - "dpnf"@en . - . - . - . - "Controller follow up dead band (Dpnf). Typical Value = 0."^^ . - . - . - "tsw"@en . - . - . - . - "Stabilizer parameters (Tsw). Typical Value = 3."^^ . - . - . - "efmin"@en . - . - . - . - "Minimum open circuit excitation voltage (Efmin). Typical Value = -5."^^ . - . - . - "efmax"@en . - . - . - . - "Maximum open circuit excitation voltage (Efmax). Typical Value = 5."^^ . - . - . - "xe"@en . - . - . - . - "Excitation transformer effective reactance (Xe) (>=0). Xe represents the regulation of the transformer/rectifier unit. Typical Value = 0.06."^^ . - . - . - "ks1"@en . - . - . - . - "Stabilizer Gain 1 (Ks1). Typical Value = 0."^^ . - . - . - "ks2"@en . - . - . - . - "Stabilizer Gain 2 (Ks2). Typical Value = 0."^^ . - . - . - "ts1"@en . - . - . - . - "Stabilizer Phase Lag Time Constant (Ts1). Typical Value = 1."^^ . - . - . - "ts2"@en . - . - . - . - "Stabilizer Filter Time Constant (Ts2). Typical Value = 1."^^ . - . - . - "smax"@en . - . - . - . - "Stabilizer Limit Output (smax). Typical Value = 0.1."^^ . - . - "ExcELIN2"@en . - . - "Detailed Excitation System Model - ELIN (VATECH). This model represents an all-static excitation system. A PI voltage controller establishes a desired field current set point for a proportional current controller. The integrator of the PI controller has a follow-up input to match its signal to the present field current. Power system stabilizer models used in conjunction with this excitation system model: PssELIN2, PssIEEE2B, Pss2B."^^ . - . - . - . - . - "k1"@en . - . - . - . - "Voltage regulator input gain (K1). Typical Value = 0."^^ . - . - . - "k1ec"@en . - . - . - . - "Voltage regulator input limit (K1ec). Typical Value = 2."^^ . - . - . - "kd1"@en . - . - . - . - "Voltage controller derivative gain (Kd1). Typical Value = 34.5."^^ . - . - . - "tb1"@en . - . - . - . - "Voltage controller derivative washout time constant (Tb1). Typical Value = 12.45."^^ . - . - . - "pid1max"@en . - . - . - . - "Controller follow up gain (PID1max). Typical Value = 2."^^ . - . - . - "ti1"@en . - . - . - . - "Controller follow up dead band (Ti1). Typical Value = 0."^^ . - . - . - "iefmax2"@en . - . - . - . - "Minimum open circuit excitation voltage (Iefmax2). Typical Value = -5."^^ . - . - . - "k2"@en . - . - . - . - "Gain (K2). Typical Value = 5."^^ . - . - . - "ketb"@en . - . - . - . - "Gain (Ketb). Typical Value = 0.06."^^ . - . - . - "upmax"@en . - . - . - . - "Limiter (Upmax). Typical Value = 3."^^ . - . - . - "upmin"@en . - . - . - . - "Limiter (Upmin). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Time constant (Te). Typical Value = 0."^^ . - . - . - "xp"@en . - . - . - . - "Excitation transformer effective reactance (Xp). Typical Value = 1."^^ . - . - . - "te2"@en . - . - . - . - "Time Constant (Te2). Typical Value = 1."^^ . - . - . - "ke2"@en . - . - . - . - "Gain (Ke2). Typical Value = 0.1."^^ . - . - . - "ve1"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve1). Typical Value = 3."^^ . - . - . - "seve1"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve1, back of commutating reactance (Se[Ve1]). Typical Value = 0."^^ . - . - . - "ve2"@en . - . - . - . - "Exciter alternator output voltages back of commutating reactance at which saturation is defined (Ve2). Typical Value = 0."^^ . - . - . - "seve2"@en . - . - . - . - "Exciter saturation function value at the corresponding exciter voltage, Ve2, back of commutating reactance (Se[Ve2]). Typical Value = 1."^^ . - . - . - "tr4"@en . - . - . - . - "Time constant (Tr4). Typical Value = 1."^^ . - . - . - "k3"@en . - . - . - . - "Gain (K3). Typical Value = 0.1."^^ . - . - . - "ti3"@en . - . - . - . - "Time constant (Ti3). Typical Value = 3."^^ . - . - . - "k4"@en . - . - . - . - "Gain (K4). Typical Value = 0."^^ . - . - . - "ti4"@en . - . - . - . - "Time constant (Ti4). Typical Value = 0."^^ . - . - . - "iefmax"@en . - . - . - . - "Limiter (Iefmax). Typical Value = 1."^^ . - . - . - "iefmin"@en . - . - . - . - "Limiter (Iefmin). Typical Value = 1."^^ . - . - . - "efdbas"@en . - . - . - . - "Gain (Efdbas). Typical Value = 0.1."^^ . - . - "ExcHU"@en . - . - "Hungarian Excitation System Model, with built-in voltage transducer."^^ . - . - . - . - . - "tr"@en . - . - . - . - "Filter time constant (Tr). If a voltage compensator is used in conjunction with this excitation system model, Tr should be set to 0. Typical Value = 0.01."^^ . - . - . - "te"@en . - . - . - . - "Major loop PI tag integration time constant (Te). Typical Value = 0.154."^^ . - . - . - "imin"@en . - . - . - . - "Major loop PI tag output signal lower limit (Imin). Typical Value = 0.1."^^ . - . - . - "imax"@en . - . - . - . - "Major loop PI tag output signal upper limit (Imax). Typical Value = 2.19."^^ . - . - . - "ae"@en . - . - . - . - "Major loop PI tag gain factor (Ae). Typical Value = 3."^^ . - . - . - "emin"@en . - . - . - . - "Field voltage control signal lower limit on AVR base (Emin). Typical Value = -0.866."^^ . - . - . - "emax"@en . - . - . - . - "Field voltage control signal upper limit on AVR base (Emax). Typical Value = 0.996."^^ . - . - . - "ki"@en . - . - . - . - "Current base conversion constant (Ki). Typical Value = 0.21428."^^ . - . - . - "ai"@en . - . - . - . - "Minor loop PI tag gain factor (Ai). Typical Value = 22."^^ . - . - . - "ti"@en . - . - . - . - "Minor loop PI control tag integration time constant (Ti). Typical Value = 0.01333."^^ . - . - . - "atr"@en . - . - . - . - "AVR constant (Atr). Typical Value = 2.19."^^ . - . - . - "ke"@en . - . - . - . - "Voltage base conversion constant (Ke). Typical Value = 4.666."^^ . - . - "ExcOEX3T"@en . - . - "Modified IEEE Type ST1 Excitation System with semi-continuous and acting terminal voltage limiter."^^ . - . - . - . - . - "t1"@en . - . - . - . - "Time constant (T1)."^^ . - . - . - "t2"@en . - . - . - . - "Time constant (T2)."^^ . - . - . - "t3"@en . - . - . - . - "Time constant (T3)."^^ . - . - . - "t4"@en . - . - . - . - "Time constant (T4)."^^ . - . - . - "ka"@en . - . - . - . - "Gain (KA)."^^ . - . - . - "t5"@en . - . - . - . - "Time constant (T5)."^^ . - . - . - "t6"@en . - . - . - . - "Time constant (T6)."^^ . - . - . - "vrmax"@en . - . - . - . - "Limiter (VRMAX)."^^ . - . - . - "vrmin"@en . - . - . - . - "Limiter (VRMIN). "^^ . - . - . - "te"@en . - . - . - . - "Time constant (TE)."^^ . - . - . - "kf"@en . - . - . - . - "Gain (KF)."^^ . - . - . - "tf"@en . - . - . - . - "Time constant (TF)."^^ . - . - . - "kc"@en . - . - . - . - "Gain (KC)."^^ . - . - . - "kd"@en . - . - . - . - "Gain (KD)."^^ . - . - . - "ke"@en . - . - . - . - "Gain (KE)."^^ . - . - . - "e1"@en . - . - . - . - "Saturation parameter (E1)."^^ . - . - . - "see1"@en . - . - . - . - "Saturation parameter (SE(E1))."^^ . - . - . - "e2"@en . - . - . - . - "Saturation parameter (E2)."^^ . - . - . - "see2"@en . - . - . - . - "Saturation parameter (SE(E2))."^^ . - . - "ExcPIC"@en . - . - "Proportional/Integral Regulator Excitation System Model. This model can be used to represent excitation systems with a proportional-integral (PI) voltage regulator controller. "^^ . - . - . - . - . - "ka"@en . - . - . - . - "PI controller gain (Ka). Typical Value = 3.15."^^ . - . - . - "ta1"@en . - . - . - . - "PI controller time constant (Ta1). Typical Value = 1."^^ . - . - . - "vr1"@en . - . - . - . - "PI maximum limit (Vr1). Typical Value = 1."^^ . - . - . - "vr2"@en . - . - . - . - "PI minimum limit (Vr2). Typical Value = -0.87."^^ . - . - . - "ta2"@en . - . - . - . - "Voltage regulator time constant (Ta2). Typical Value = 0.01."^^ . - . - . - "ta3"@en . - . - . - . - "Lead time constant (Ta3). Typical Value = 0."^^ . - . - . - "ta4"@en . - . - . - . - "Lag time constant (Ta4). Typical Value = 0."^^ . - . - . - "vrmax"@en . - . - . - . - "Voltage regulator maximum limit (Vrmax). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Voltage regulator minimum limit (Vrmin). Typical Value = -0.87."^^ . - . - . - "kf"@en . - . - . - . - "Rate feedback gain (Kf). Typical Value = 0."^^ . - . - . - "tf1"@en . - . - . - . - "Rate feedback time constant (Tf1). Typical Value = 0."^^ . - . - . - "tf2"@en . - . - . - . - "Rate feedback lag time constant (Tf2). Typical Value = 0."^^ . - . - . - "efdmax"@en . - . - . - . - "Exciter maximum limit (Efdmax). Typical Value = 8."^^ . - . - . - "efdmin"@en . - . - . - . - "Exciter minimum limit (Efdmin). Typical Value = -0.87."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant (Ke). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant (Te). Typical Value = 0."^^ . - . - . - "e1"@en . - . - . - . - "Field voltage value 1 (E1). Typical Value = 0."^^ . - . - . - "se1"@en . - . - . - . - "Saturation factor at E1 (Se1). Typical Value = 0."^^ . - . - . - "e2"@en . - . - . - . - "Field voltage value 2 (E2). Typical Value = 0."^^ . - . - . - "se2"@en . - . - . - . - "Saturation factor at E2 (Se2). Typical Value = 0."^^ . - . - . - "kp"@en . - . - . - . - "Potential source gain (Kp). Typical Value = 6.5."^^ . - . - . - "ki"@en . - . - . - . - "Current source gain (Ki). Typical Value = 0."^^ . - . - . - "kc"@en . - . - . - . - "Exciter regulation factor (Kc). Typical Value = 0.08."^^ . - . - "ExcREXS"@en . - . - "General Purpose Rotating Excitation System Model. This model can be used to represent a wide range of excitation systems whose DC power source is an AC or DC generator. It encompasses IEEE type AC1, AC2, DC1, and DC2 excitation system models. "^^ . - . - . - . - . - "e1"@en . - . - . - . - "Field voltage value 1 (E1). Typical Value = 3."^^ . - . - . - "e2"@en . - . - . - . - "Field voltage value 2 (E2). Typical Value = 4."^^ . - . - . - "fbf"@en . - . - . - . - "Rate feedback signal flag (Fbf). Typical Value = fieldCurrent."^^ . - . - . - "flimf"@en . - . - . - . - "Limit type flag (Flimf). Typical Value = 0."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier regulation factor (Kc). Typical Value = 0.05."^^ . - . - . - "kd"@en . - . - . - . - "Exciter regulation factor (Kd). Typical Value = 2."^^ . - . - . - "ke"@en . - . - . - . - "Exciter field proportional constant (Ke). Typical Value = 1."^^ . - . - . - "kefd"@en . - . - . - . - "Field voltage feedback gain (Kefd). Typical Value = 0."^^ . - . - . - "kf"@en . - . - . - . - "Rate feedback gain (Kf). Typical Value = 0.05."^^ . - . - . - "kh"@en . - . - . - . - "Field voltage controller feedback gain (Kh). Typical Value = 0."^^ . - . - . - "kii"@en . - . - . - . - "Field Current Regulator Integral Gain (Kii). Typical Value = 0."^^ . - . - . - "kip"@en . - . - . - . - "Field Current Regulator Proportional Gain (Kip). Typical Value = 1."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "kvi"@en . - . - . - . - "Voltage Regulator Integral Gain (Kvi). Typical Value = 0."^^ . - . - . - "kvp"@en . - . - . - . - "Voltage Regulator Proportional Gain (Kvp). Typical Value = 2800."^^ . - . - . - "kvphz"@en . - . - . - . - "V/Hz limiter gain (Kvphz). Typical Value = 0."^^ . - . - . - "nvphz"@en . - . - . - . - "Pickup speed of V/Hz limiter (Nvphz). Typical Value = 0."^^ . - . - . - "se1"@en . - . - . - . - "Saturation factor at E1 (Se1). Typical Value = 0.0001."^^ . - . - . - "se2"@en . - . - . - . - "Saturation factor at E2 (Se2). Typical Value = 0.001."^^ . - . - . - "ta"@en . - . - . - . - "Voltage Regulator time constant (Ta). Typical Value = 0.01."^^ . - . - . - "tb1"@en . - . - . - . - "Lag time constant (Tb1). Typical Value = 0."^^ . - . - . - "tb2"@en . - . - . - . - "Lag time constant (Tb2). Typical Value = 0."^^ . - . - . - "tc1"@en . - . - . - . - "Lead time constant (Tc1). Typical Value = 0."^^ . - . - . - "tc2"@en . - . - . - . - "Lead time constant (Tc2). Typical Value = 0."^^ . - . - . - "te"@en . - . - . - . - "Exciter field time constant (Te). Typical Value = 1.2."^^ . - . - . - "tf"@en . - . - . - . - "Rate feedback time constant (Tf). Typical Value = 1."^^ . - . - . - "tf1"@en . - . - . - . - "Feedback lead time constant (Tf1). Typical Value = 0."^^ . - . - . - "tf2"@en . - . - . - . - "Feedback lag time constant (Tf2). Typical Value = 0."^^ . - . - . - "tp"@en . - . - . - . - "Field current Bridge time constant (Tp). Typical Value = 0."^^ . - . - . - "vcmax"@en . - . - . - . - "Maximum compounding voltage (Vcmax). Typical Value = 0."^^ . - . - . - "vfmax"@en . - . - . - . - "Maximum Exciter Field Current (Vfmax). Typical Value = 47."^^ . - . - . - "vfmin"@en . - . - . - . - "Minimum Exciter Field Current (Vfmin). Typical Value = -20."^^ . - . - . - "vimax"@en . - . - . - . - "Voltage Regulator Input Limit (Vimax). Typical Value = 0.1."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum controller output (Vrmax). Typical Value = 47."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum controller output (Vrmin). Typical Value = -20."^^ . - . - . - "xc"@en . - . - . - . - "Exciter compounding reactance (Xc). Typical Value = 0."^^ . - . - "ExcSCRX"@en . - . - "Simple excitation system model representing generic characteristics of many excitation systems; intended for use where negative field current may be a problem."^^ . - . - . - . - . - "tatb"@en . - . - . - . - "Ta/Tb - gain reduction ratio of lag-lead element (TaTb). The parameter Ta is not defined explicitly. Typical Value = 0.1."^^ . - . - . - "tb"@en . - . - . - . - "Denominator time constant of lag-lead block (Tb). Typical Value = 10."^^ . - . - . - "k"@en . - . - . - . - "Gain (K) (>0). Typical Value = 200."^^ . - . - . - "te"@en . - . - . - . - "Time constant of gain block (Te) (>0). Typical Value = 0.02."^^ . - . - . - "emin"@en . - . - . - . - "Minimum field voltage output (Emin). Typical Value = 0."^^ . - . - . - "emax"@en . - . - . - . - "Maximum field voltage output (Emax). Typical Value = 5."^^ . - . - . - "cswitch"@en . - . - . - . - "Power source switch (Cswitch).true = fixed voltage of 1.0 PUfalse = generator terminal voltage."^^ . - . - . - "rcrfd"@en . - . - . - . - "Rc/Rfd - ratio of field discharge resistance to field winding resistance (RcRfd). Typical Value = 0."^^ . - . - "ExcSEXS"@en . - . - "Simplified Excitation System Model."^^ . - . - . - . - . - "tatb"@en . - . - . - . - "Ta/Tb - gain reduction ratio of lag-lead element (TaTb). Typical Value = 0.1."^^ . - . - . - "tb"@en . - . - . - . - "Denominator time constant of lag-lead block (Tb). Typical Value = 10."^^ . - . - . - "k"@en . - . - . - . - "Gain (K) (>0). Typical Value = 100."^^ . - . - . - "te"@en . - . - . - . - "Time constant of gain block (Te). Typical Value = 0.05."^^ . - . - . - "emin"@en . - . - . - . - "Minimum field voltage output (Emin). Typical Value = -5."^^ . - . - . - "emax"@en . - . - . - . - "Maximum field voltage output (Emax). Typical Value = 5."^^ . - . - . - "kc"@en . - . - . - . - "PI controller gain (Kc). Typical Value = 0.08."^^ . - . - . - "tc"@en . - . - . - . - "PI controller phase lead time constant (Tc). Typical Value = 0."^^ . - . - . - "efdmin"@en . - . - . - . - "Field voltage clipping minimum limit (Efdmin). Typical Value = -5."^^ . - . - . - "efdmax"@en . - . - . - . - "Field voltage clipping maximum limit (Efdmax). Typical Value = 5."^^ . - . - "ExcSK"@en . - . - "Slovakian Excitation System Model. UEL and secondary voltage control are included in this model. When this model is used, there cannot be a separate underexcitation limiter or VAr controller model."^^ . - . - . - . - . - "efdmax"@en . - . - . - . - "Field voltage clipping limit (Efdmax). "^^ . - . - . - "efdmin"@en . - . - . - . - "Field voltage clipping limit (Efdmin). "^^ . - . - . - "emax"@en . - . - . - . - "Maximum field voltage output (Emax). Typical Value = 20."^^ . - . - . - "emin"@en . - . - . - . - "Minimum field voltage output (Emin). Typical Value = -20."^^ . - . - . - "k"@en . - . - . - . - "Gain (K). Typical Value = 1."^^ . - . - . - "k1"@en . - . - . - . - "Parameter of underexcitation limit (K1). Typical Value = 0.1364."^^ . - . - . - "k2"@en . - . - . - . - "Parameter of underexcitation limit (K2). Typical Value = -0.3861."^^ . - . - . - "kc"@en . - . - . - . - "PI controller gain (Kc). Typical Value = 70."^^ . - . - . - "kce"@en . - . - . - . - "Rectifier regulation factor (Kce). Typical Value = 0."^^ . - . - . - "kd"@en . - . - . - . - "Exciter internal reactance (Kd). Typical Value = 0."^^ . - . - . - "kgob"@en . - . - . - . - "P controller gain (Kgob). Typical Value = 10."^^ . - . - . - "kp"@en . - . - . - . - "PI controller gain (Kp). Typical Value = 1."^^ . - . - . - "kqi"@en . - . - . - . - "PI controller gain of integral component (Kqi). Typical Value = 0."^^ . - . - . - "kqob"@en . - . - . - . - "Rate of rise of the reactive power (Kqob). "^^ . - . - . - "kqp"@en . - . - . - . - "PI controller gain (Kqp). Typical Value = 0."^^ . - . - . - "nq"@en . - . - . - . - "Dead band of reactive power (nq). Determines the range of sensitivity. Typical Value = 0.001."^^ . - . - . - "qconoff"@en . - . - . - . - "Secondary voltage control state (Qc_on_off).true = secondary voltage control is ONfalse = secondary voltage control is OFF.Typical Value = false."^^ . - . - . - "qz"@en . - . - . - . - "Desired value (setpoint) of reactive power, manual setting (Qz). "^^ . - . - . - "remote"@en . - . - . - . - "Selector to apply automatic calculation in secondary controller model.true = automatic calculation is activatedfalse = manual set is active; the use of desired value of reactive power (Qz) is required.Typical Value = true."^^ . - . - . - "sbase"@en . - . - . - . - "Apparent power of the unit (Sbase). Unit = MVA. Typical Value = 259."^^ . - . - "ApparentPower"@en . - "Product of the RMS value of the voltage and the RMS value of the current."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix44 . -_:node1gda76hcix44 "VA" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix45 . -_:node1gda76hcix45 "M" . - . - . - "tc"@en . - . - . - . - "PI controller phase lead time constant (Tc). Typical Value = 8."^^ . - . - . - "te"@en . - . - . - . - "Time constant of gain block (Te). Typical Value = 0.1."^^ . - . - . - "ti"@en . - . - . - . - "PI controller phase lead time constant (Ti). Typical Value = 2."^^ . - . - . - "tp"@en . - . - . - . - "Time constant (Tp). Typical Value = 0.1."^^ . - . - . - "tr"@en . - . - . - . - "Voltage transducer time constant (Tr). Typical Value = 0.01."^^ . - . - . - "uimax"@en . - . - . - . - "Maximum error (Uimax). Typical Value = 10."^^ . - . - . - "uimin"@en . - . - . - . - "Minimum error (UImin). Typical Value = -10."^^ . - . - . - "urmax"@en . - . - . - . - "Maximum controller output (URmax). Typical Value = 10."^^ . - . - . - "urmin"@en . - . - . - . - "Minimum controller output (URmin). Typical Value = -10."^^ . - . - . - "vtmax"@en . - . - . - . - "Maximum terminal voltage input (Vtmax). Determines the range of voltage dead band. Typical Value = 1.05."^^ . - . - . - "vtmin"@en . - . - . - . - "Minimum terminal voltage input (Vtmin). Determines the range of voltage dead band. Typical Value = 0.95."^^ . - . - . - "yp"@en . - . - . - . - "Maximum output (Yp). Minimum output = 0. Typical Value = 1."^^ . - . - "ExcST1A"@en . - . - "Modification of an old IEEE ST1A static excitation system without overexcitation limiter (OEL) and underexcitation limiter (UEL)."^^ . - . - . - . - . - "vimax"@en . - . - . - . - "Maximum voltage regulator input limit (Vimax). Typical Value = 999."^^ . - . - . - "vimin"@en . - . - . - . - "Minimum voltage regulator input limit (Vimin). Typical Value = -999."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 1."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 10."^^ . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 190."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.02."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (Vrmax). Typical Value = 7.8."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (Vrmin). Typical Value = -6.7."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0.05."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (Kf). Typical Value = 0."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 1."^^ . - . - . - "tc1"@en . - . - . - . - "Voltage regulator time constant (Tc1). Typical Value = 0."^^ . - . - . - "tb1"@en . - . - . - . - "Voltage regulator time constant (Tb1). Typical Value = 0."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (Vamax). Typical Value = 999."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (Vamin). Typical Value = -999."^^ . - . - . - "ilr"@en . - . - . - . - "Exciter output current limit reference (Ilr). Typical Value = 0."^^ . - . - . - "klr"@en . - . - . - . - "Exciter output current limiter gain (Klr). Typical Value = 0."^^ . - . - . - "xe"@en . - . - . - . - "Excitation xfmr effective reactance (Xe). Typical Value = 0.04."^^ . - . - "ExcST2A"@en . - . - "Modified IEEE ST2A static excitation system - another lead-lag block added to match the model defined by WECC."^^ . - . - . - . - . - "ka"@en . - . - . - . - "Voltage regulator gain (Ka). Typical Value = 120."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.15."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator outputs (Vrmax). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator outputs (Vrmin). Typical Value = -1."^^ . - . - . - "ke"@en . - . - . - . - "Exciter constant related to self-excited field (Ke). Typical Value = 1."^^ . - . - . - "te"@en . - . - . - . - "Exciter time constant, integration rate associated with exciter control (Te). Typical Value = 0.5."^^ . - . - . - "kf"@en . - . - . - . - "Excitation control system stabilizer gains (Kf). Typical Value = 0.05."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 0.7."^^ . - . - . - "kp"@en . - . - . - . - "Potential circuit gain coefficient (Kp). Typical Value = 4.88."^^ . - . - . - "ki"@en . - . - . - . - "Potential circuit gain coefficient (Ki). Typical Value = 8."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 1.82."^^ . - . - . - "efdmax"@en . - . - . - . - "Maximum field voltage (Efdmax). Typical Value = 99."^^ . - . - . - "uelin"@en . - . - . - . - "UEL input (UELin).true = HV gatefalse = add to error signal.Typical Value = false."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 0."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 0."^^ . - . - "ExcST3A"@en . - . - "Modified IEEE ST3A static excitation system with added speed multiplier."^^ . - . - . - . - . - "vimax"@en . - . - . - . - "Maximum voltage regulator input limit (Vimax). Typical Value = 0.2."^^ . - . - . - "vimin"@en . - . - . - . - "Minimum voltage regulator input limit (Vimin). Typical Value = -0.2."^^ . - . - . - "kj"@en . - . - . - . - "AVR gain (Kj). Typical Value = 200."^^ . - . - . - "tb"@en . - . - . - . - "Voltage regulator time constant (Tb). Typical Value = 6.67."^^ . - . - . - "tc"@en . - . - . - . - "Voltage regulator time constant (Tc). Typical Value = 1."^^ . - . - . - "efdmax"@en . - . - . - . - "Maximum AVR output (Efdmax). Typical Value = 6.9."^^ . - . - . - "km"@en . - . - . - . - "Forward gain constant of the inner loop field regulator (Km). Typical Value = 7.04."^^ . - . - . - "tm"@en . - . - . - . - "Forward time constant of inner loop field regulator (Tm). Typical Value = 1."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = 0."^^ . - . - . - "kg"@en . - . - . - . - "Feedback gain constant of the inner loop field regulator (Kg). Typical Value = 1."^^ . - . - . - "kp"@en . - . - . - . - "Potential source gain (Kp) (>0). Typical Value = 4.37."^^ . - . - . - "thetap"@en . - . - . - . - "Potential circuit phase angle (thetap). Typical Value = 20."^^ . - . - . - "ki"@en . - . - . - . - "Potential circuit gain coefficient (Ki). Typical Value = 4.83."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 1.1."^^ . - . - . - "xl"@en . - . - . - . - "Reactance associated with potential source (Xl). Typical Value = 0.09."^^ . - . - . - "vbmax"@en . - . - . - . - "Maximum excitation voltage (Vbmax). Typical Value = 8.63."^^ . - . - . - "vgmax"@en . - . - . - . - "Maximum inner loop feedback voltage (Vgmax). Typical Value = 6.53."^^ . - . - . - "ks"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks). Typical Value = 0."^^ . - . - . - "ks1"@en . - . - . - . - "Coefficient to allow different usage of the model-speed coefficient (Ks1). Typical Value = 0."^^ . - . - "ExcST4B"@en . - . - "Modified IEEE ST4B static excitation system with maximum inner loop feedback gain Vgmax."^^ . - . - . - . - . - "kpr"@en . - . - . - . - "Voltage regulator proportional gain (Kpr). Typical Value = 10.75."^^ . - . - . - "kir"@en . - . - . - . - "Voltage regulator integral gain (Kir). Typical Value = 10.75."^^ . - . - . - "ta"@en . - . - . - . - "Voltage regulator time constant (Ta). Typical Value = 0.02."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 1."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = -0.87."^^ . - . - . - "kpm"@en . - . - . - . - "Voltage regulator proportional gain output (Kpm). Typical Value = 1."^^ . - . - . - "kim"@en . - . - . - . - "Voltage regulator integral gain output (Kim). Typical Value = 0."^^ . - . - . - "vmmax"@en . - . - . - . - "Maximum inner loop output (Vmmax). Typical Value = 99."^^ . - . - . - "vmmin"@en . - . - . - . - "Minimum inner loop output (Vmmin). Typical Value = -99."^^ . - . - . - "kg"@en . - . - . - . - "Feedback gain constant of the inner loop field regulator (Kg). Typical Value = 0."^^ . - . - . - "kp"@en . - . - . - . - "Potential circuit gain coefficient (Kp). Typical Value = 9.3."^^ . - . - . - "thetap"@en . - . - . - . - "Potential circuit phase angle (thetap). Typical Value = 0."^^ . - . - . - "ki"@en . - . - . - . - "Potential circuit gain coefficient (Ki). Typical Value = 0."^^ . - . - . - "kc"@en . - . - . - . - "Rectifier loading factor proportional to commutating reactance (Kc). Typical Value = 0.113."^^ . - . - . - "xl"@en . - . - . - . - "Reactance associated with potential source (Xl). Typical Value = 0.124."^^ . - . - . - "vbmax"@en . - . - . - . - "Maximum excitation voltage (Vbmax). Typical Value = 11.63."^^ . - . - . - "vgmax"@en . - . - . - . - "Maximum inner loop feedback voltage (Vgmax). Typical Value = 5.8."^^ . - . - . - "uel"@en . - . - . - . - "Selector (Uel).true = UEL is part of block diagramfalse = UEL is not part of block diagram.Typical Value = false."^^ . - . - . - "lvgate"@en . - . - . - . - "Selector (LVgate).true = LVgate is part of the block diagramfalse = LVgate is not part of the block diagram.Typical Value = false."^^ . - . - "ExcST6B"@en . - . - "Modified IEEE ST6B static excitation system with PID controller and optional inner feedbacks loop."^^ . - . - . - . - . - "ilr"@en . - . - . - . - "Exciter output current limit reference (Ilr). Typical Value = 4.164."^^ . - . - . - "k1"@en . - . - . - . - "Selector (K1).true = feedback is from Ifdfalse = feedback is not from Ifd.Typical Value = true."^^ . - . - . - "kcl"@en . - . - . - . - "Exciter output current limit adjustment (Kcl). Typical Value = 1.0577."^^ . - . - . - "kff"@en . - . - . - . - "Pre-control gain constant of the inner loop field regulator (Kff). Typical Value = 1."^^ . - . - . - "kg"@en . - . - . - . - "Feedback gain constant of the inner loop field regulator (Kg). Typical Value = 1."^^ . - . - . - "kia"@en . - . - . - . - "Voltage regulator integral gain (Kia). Typical Value = 45.094."^^ . - . - . - "klr"@en . - . - . - . - "Exciter output current limit adjustment (Kcl). Typical Value = 17.33."^^ . - . - . - "km"@en . - . - . - . - "Forward gain constant of the inner loop field regulator (Km). Typical Value = 1."^^ . - . - . - "kpa"@en . - . - . - . - "Voltage regulator proportional gain (Kpa). Typical Value = 18.038."^^ . - . - . - "kvd"@en . - . - . - . - "Voltage regulator derivative gain (Kvd). Typical Value = 0."^^ . - . - . - "oelin"@en . - . - . - . - "OEL input selector (OELin). Typical Value = noOELinput."^^ . - . - . - "tg"@en . - . - . - . - "Feedback time constant of inner loop field voltage regulator (Tg). Typical Value = 0.02."^^ . - . - . - "ts"@en . - . - . - . - "Rectifier firing time constant (Ts). Typical Value = 0."^^ . - . - . - "tvd"@en . - . - . - . - "Voltage regulator derivative gain (Tvd). Typical Value = 0."^^ . - . - . - "vamax"@en . - . - . - . - "Maximum voltage regulator output (Vamax). Typical Value = 4.81."^^ . - . - . - "vamin"@en . - . - . - . - "Minimum voltage regulator output (Vamin). Typical Value = -3.85."^^ . - . - . - "vilim"@en . - . - . - . - "Selector (Vilim).true = Vimin-Vimax limiter is activefalse = Vimin-Vimax limiter is not active.Typical Value = true."^^ . - . - . - "vimax"@en . - . - . - . - "Maximum voltage regulator input limit (Vimax). Typical Value = 10."^^ . - . - . - "vimin"@en . - . - . - . - "Minimum voltage regulator input limit (Vimin). Typical Value = -10."^^ . - . - . - "vmult"@en . - . - . - . - "Selector (Vmult).true = multiply regulator output by terminal voltagefalse = do not multiply regulator output by terminal voltage.Typical Value = true."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 4.81."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = -3.85."^^ . - . - . - "xc"@en . - . - . - . - "Excitation source reactance (Xc). Typical Value = 0.05."^^ . - . - "ExcST7B"@en . - . - "Modified IEEE ST7B static excitation system without stator current limiter (SCL) and current compensator (DROOP) inputs."^^ . - . - . - . - . - "kh"@en . - . - . - . - "High-value gate feedback gain (Kh). Typical Value = 1."^^ . - . - . - "kia"@en . - . - . - . - "Voltage regulator integral gain (Kia). Typical Value = 1."^^ . - . - . - "kl"@en . - . - . - . - "Low-value gate feedback gain (Kl). Typical Value = 1."^^ . - . - . - "kpa"@en . - . - . - . - "Voltage regulator proportional gain (Kpa). Typical Value = 40."^^ . - . - . - "oelin"@en . - . - . - . - "OEL input selector (OELin). Typical Value = noOELinput."^^ . - . - . - "tb"@en . - . - . - . - "Regulator lag time constant (Tb). Typical Value = 1."^^ . - . - . - "tc"@en . - . - . - . - "Regulator lead time constant (Tc). Typical Value = 1."^^ . - . - . - "tf"@en . - . - . - . - "Excitation control system stabilizer time constant (Tf). Typical Value = 1."^^ . - . - . - "tg"@en . - . - . - . - "Feedback time constant of inner loop field voltage regulator (Tg). Typical Value = 1."^^ . - . - . - "tia"@en . - . - . - . - "Feedback time constant (Tia). Typical Value = 3."^^ . - . - . - "ts"@en . - . - . - . - "Rectifier firing time constant (Ts). Typical Value = 0."^^ . - . - . - "uelin"@en . - . - . - . - "UEL input selector (UELin). Typical Value = noUELinput."^^ . - . - . - "vmax"@en . - . - . - . - "Maximum voltage reference signal (Vmax). Typical Value = 1.1."^^ . - . - . - "vmin"@en . - . - . - . - "Minimum voltage reference signal (Vmin). Typical Value = 0.9."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum voltage regulator output (Vrmax). Typical Value = 5."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum voltage regulator output (Vrmin). Typical Value = -4.5."^^ . - . - "OverexcitationLimiterDynamics"@en . - . - "Overexcitation limiters (OELs) are also referred to as maximum excitation limiters and field current limiters. The possibility of voltage collapse in stressed power systems increases the importance of modelling these limiters in studies of system conditions that cause machines to operate at high levels of excitation for a sustained period, such as voltage collapse or system-islanding. Such events typically occur over a long time frame compared with transient or small-signal stability simulations."^^ . - "OverexcitationLimiterDynamics"@en . - . - "OOverexcitation limiter function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "OverexcLimIEEE"@en . - . - "The over excitation limiter model is intended to represent the significant features of OELs necessary for some large-scale system studies. It is the result of a pragmatic approach to obtain a model that can be widely applied with attainable data from generator owners. An attempt to include all variations in the functionality of OELs and duplicate how they interact with the rest of the excitation systems would likely result in a level of application insufficient for the studies for which they are intended.Reference: IEEE OEL 421.5-2005 Section 9. "^^ . - . - . - . - . - "itfpu"@en . - . - . - . - "OEL timed field current limiter pickup level (ITFPU). Typical Value = 1.05."^^ . - . - . - "ifdmax"@en . - . - . - . - "OEL instantaneous field current limit (IFDMAX). Typical Value = 1.5."^^ . - . - . - "ifdlim"@en . - . - . - . - "OEL timed field current limit (IFDLIM). Typical Value = 1.05."^^ . - . - . - "hyst"@en . - . - . - . - "OEL pickup/drop-out hysteresis (HYST). Typical Value = 0.03."^^ . - . - . - "kcd"@en . - . - . - . - "OEL cooldown gain (KCD). Typical Value = 1."^^ . - . - . - "kramp"@en . - . - . - . - "OEL ramped limit rate (KRAMP). Unit = PU/sec. Typical Value = 10."^^ . - . - "OverexcLim2"@en . - . - "Different from LimIEEEOEL, LimOEL2 has a fixed pickup threshold and reduces the excitation set-point by mean of non-windup integral regulator.Irated is the rated machine excitation current (calculated from nameplate conditions: Vnom, Pnom, CosPhinom)."^^ . - . - . - . - . - "koi"@en . - . - . - . - "Gain Over excitation limiter (KOI). Typical Value = 0.1."^^ . - . - . - "voimax"@en . - . - . - . - "Maximum error signal (VOIMAX). Typical Value = 0."^^ . - . - . - "voimin"@en . - . - . - . - "Minimum error signal (VOIMIN). Typical Value = -9999."^^ . - . - . - "ifdlim"@en . - . - . - . - "Limit value of rated field current (IFDLIM). Typical Value = 1.05."^^ . - . - "OverexcLimX1"@en . - . - "Field voltage over excitation limiter."^^ . - . - . - . - . - "efdrated"@en . - . - . - . - "Rated field voltage (EFDRATED). Typical Value = 1.05."^^ . - . - . - "efd1"@en . - . - . - . - "Low voltage point on the inverse time characteristic (EFD1). Typical Value = 1.1."^^ . - . - . - "t1"@en . - . - . - . - "Time to trip the exciter at the low voltage point on the inverse time characteristic (TIME1). Typical Value = 120."^^ . - . - . - "efd2"@en . - . - . - . - "Mid voltage point on the inverse time characteristic (EFD2). Typical Value = 1.2."^^ . - . - . - "t2"@en . - . - . - . - "Time to trip the exciter at the mid voltage point on the inverse time characteristic (TIME2). Typical Value = 40."^^ . - . - . - "efd3"@en . - . - . - . - "High voltage point on the inverse time characteristic (EFD3). Typical Value = 1.5."^^ . - . - . - "t3"@en . - . - . - . - "Time to trip the exciter at the high voltage point on the inverse time characteristic (TIME3). Typical Value = 15."^^ . - . - . - "efddes"@en . - . - . - . - "Desired field voltage (EFDDES). Typical Value = 0.9."^^ . - . - . - "kmx"@en . - . - . - . - "Gain (KMX). Typical Value = 0.01."^^ . - . - . - "vlow"@en . - . - . - . - "Low voltage limit (VLOW) (>0)."^^ . - . - "OverexcLimX2"@en . - . - "Field Voltage or Current overexcitation limiter designed to protect the generator field of an AC machine with automatic excitation control from overheating due to prolonged overexcitation."^^ . - . - . - . - . - "m"@en . - . - . - . - "(m).true = IFD limitingfalse = EFD limiting."^^ . - . - . - "efdrated"@en . - . - . - . - "Rated field voltage if m=F or field current if m=T (EFDRATED). Typical Value = 1.05."^^ . - . - . - "efd1"@en . - . - . - . - "Low voltage or current point on the inverse time characteristic (EFD1). Typical Value = 1.1."^^ . - . - . - "t1"@en . - . - . - . - "Time to trip the exciter at the low voltage or current point on the inverse time characteristic (TIME1). Typical Value = 120."^^ . - . - . - "efd2"@en . - . - . - . - "Mid voltage or current point on the inverse time characteristic (EFD2). Typical Value = 1.2."^^ . - . - . - "t2"@en . - . - . - . - "Time to trip the exciter at the mid voltage or current point on the inverse time characteristic (TIME2). Typical Value = 40."^^ . - . - . - "efd3"@en . - . - . - . - "High voltage or current point on the inverse time characteristic (EFD3). Typical Value = 1.5."^^ . - . - . - "t3"@en . - . - . - . - "Time to trip the exciter at the high voltage or current point on the inverse time characteristic (TIME3). Typical Value = 15."^^ . - . - . - "efddes"@en . - . - . - . - "Desired field voltage if m=F or field current if m=T (EFDDES). Typical Value = 1."^^ . - . - . - "kmx"@en . - . - . - . - "Gain (KMX). Typical Value = 0.002."^^ . - . - . - "vlow"@en . - . - . - . - "Low voltage limit (VLOW) (>0)."^^ . - . - "UnderexcitationLimiterDynamics"@en . - . - "Underexcitation limiters (UELs) act to boost excitation. The UEL typically senses either a combination of voltage and current of the synchronous machine or a combination of real and reactive power. Some UELs utilize a temperature or pressure recalibration feature, in which the UEL characteristic is shifted depending upon the generator cooling gas temperature or pressure. "^^ . - "UnderexcitationLimiterDynamics"@en . - . - "Underexcitation limiter function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "UnderexcLimIEEE1"@en . - . - "The class represents the Type UEL1 model which has a circular limit boundary when plotted in terms of machine reactive power vs. real power output.Reference: IEEE UEL1 421.5-2005 Section 10.1. "^^ . - . - . - . - . - "kur"@en . - . - . - . - "UEL radius setting (KUR). Typical Value = 1.95."^^ . - . - . - "kuc"@en . - . - . - . - "UEL center setting (KUC). Typical Value = 1.38."^^ . - . - . - "kuf"@en . - . - . - . - "UEL excitation system stabilizer gain (KUF). Typical Value = 3.3."^^ . - . - . - "vurmax"@en . - . - . - . - "UEL maximum limit for radius phasor magnitude (VURMAX). Typical Value = 5.8."^^ . - . - . - "vucmax"@en . - . - . - . - "UEL maximum limit for operating point phasor magnitude (VUCMAX). Typical Value = 5.8."^^ . - . - . - "kui"@en . - . - . - . - "UEL integral gain (KUI). Typical Value = 0."^^ . - . - . - "kul"@en . - . - . - . - "UEL proportional gain (KUL). Typical Value = 100."^^ . - . - . - "vuimax"@en . - . - . - . - "UEL integrator output maximum limit (VUIMAX)."^^ . - . - . - "vuimin"@en . - . - . - . - "UEL integrator output minimum limit (VUIMIN)."^^ . - . - . - "tu1"@en . - . - . - . - "UEL lead time constant (TU1). Typical Value = 0."^^ . - . - . - "tu2"@en . - . - . - . - "UEL lag time constant (TU2). Typical Value = 0.05."^^ . - . - . - "tu3"@en . - . - . - . - "UEL lead time constant (TU3). Typical Value = 0."^^ . - . - . - "tu4"@en . - . - . - . - "UEL lag time constant (TU4). Typical Value = 0."^^ . - . - . - "vulmax"@en . - . - . - . - "UEL output maximum limit (VULMAX). Typical Value = 18."^^ . - . - . - "vulmin"@en . - . - . - . - "UEL output minimum limit (VULMIN). Typical Value = -18."^^ . - . - "UnderexcLimIEEE2"@en . - . - "The class represents the Type UEL2 which has either a straight-line or multi-segment characteristic when plotted in terms of machine reactive power output vs. real power output.Reference: IEEE UEL2 421.5-2005 Section 10.2. (Limit characteristic lookup table shown in Figure 10.4 (p 32) of the standard)."^^ . - . - . - . - . - "tuv"@en . - . - . - . - "Voltage filter time constant (TUV). Typical Value = 5."^^ . - . - . - "tup"@en . - . - . - . - "Real power filter time constant (TUP). Typical Value = 5."^^ . - . - . - "tuq"@en . - . - . - . - "Reactive power filter time constant (TUQ). Typical Value = 0."^^ . - . - . - "kui"@en . - . - . - . - "UEL integral gain (KUI). Typical Value = 0.5."^^ . - . - . - "kul"@en . - . - . - . - "UEL proportional gain (KUL). Typical Value = 0.8."^^ . - . - . - "vuimax"@en . - . - . - . - "UEL integrator output maximum limit (VUIMAX). Typical Value = 0.25."^^ . - . - . - "vuimin"@en . - . - . - . - "UEL integrator output minimum limit (VUIMIN). Typical Value = 0."^^ . - . - . - "kuf"@en . - . - . - . - "UEL excitation system stabilizer gain (KUF). Typical Value = 0."^^ . - . - . - "kfb"@en . - . - . - . - "Gain associated with optional integrator feedback input signal to UEL (KFB). Typical Value = 0."^^ . - . - . - "tul"@en . - . - . - . - "Time constant associated with optional integrator feedback input signal to UEL (TUL). Typical Value = 0."^^ . - . - . - "tu1"@en . - . - . - . - "UEL lead time constant (TU1). Typical Value = 0."^^ . - . - . - "tu2"@en . - . - . - . - "UEL lag time constant (TU2). Typical Value = 0."^^ . - . - . - "tu3"@en . - . - . - . - "UEL lead time constant (TU3). Typical Value = 0."^^ . - . - . - "tu4"@en . - . - . - . - "UEL lag time constant (TU4). Typical Value = 0."^^ . - . - . - "vulmax"@en . - . - . - . - "UEL output maximum limit (VULMAX). Typical Value = 0.25."^^ . - . - . - "vulmin"@en . - . - . - . - "UEL output minimum limit (VULMIN). Typical Value = 0."^^ . - . - . - "p0"@en . - . - . - . - "Real power values for endpoints (P0). Typical Value = 0."^^ . - . - . - "q0"@en . - . - . - . - "Reactive power values for endpoints (Q0). Typical Value = -0.31."^^ . - . - . - "p1"@en . - . - . - . - "Real power values for endpoints (P1). Typical Value = 0.3."^^ . - . - . - "q1"@en . - . - . - . - "Reactive power values for endpoints (Q1). Typical Value = -0.31."^^ . - . - . - "p2"@en . - . - . - . - "Real power values for endpoints (P2). Typical Value = 0.6."^^ . - . - . - "q2"@en . - . - . - . - "Reactive power values for endpoints (Q2). Typical Value = -0.28."^^ . - . - . - "p3"@en . - . - . - . - "Real power values for endpoints (P3). Typical Value = 0.9."^^ . - . - . - "q3"@en . - . - . - . - "Reactive power values for endpoints (Q3). Typical Value = -0.21."^^ . - . - . - "p4"@en . - . - . - . - "Real power values for endpoints (P4). Typical Value = 1.02."^^ . - . - . - "q4"@en . - . - . - . - "Reactive power values for endpoints (Q4). Typical Value = 0."^^ . - . - . - "p5"@en . - . - . - . - "Real power values for endpoints (P5). "^^ . - . - . - "q5"@en . - . - . - . - "Reactive power values for endpoints (Q5). "^^ . - . - . - "p6"@en . - . - . - . - "Real power values for endpoints (P6)."^^ . - . - . - "q6"@en . - . - . - . - "Reactive power values for endpoints (Q6). "^^ . - . - . - "p7"@en . - . - . - . - "Real power values for endpoints (P7). "^^ . - . - . - "q7"@en . - . - . - . - "Reactive power values for endpoints (Q7). "^^ . - . - . - "p8"@en . - . - . - . - "Real power values for endpoints (P8). "^^ . - . - . - "q8"@en . - . - . - . - "Reactive power values for endpoints (Q8). "^^ . - . - . - "p9"@en . - . - . - . - "Real power values for endpoints (P9). "^^ . - . - . - "q9"@en . - . - . - . - "Reactive power values for endpoints (Q9). "^^ . - . - . - "p10"@en . - . - . - . - "Real power values for endpoints (P10). "^^ . - . - . - "q10"@en . - . - . - . - "Reactive power values for endpoints (Q10). "^^ . - . - . - "k1"@en . - . - . - . - "UEL terminal voltage exponent applied to real power input to UEL limit look-up table (k1). Typical Value = 2."^^ . - . - . - "k2"@en . - . - . - . - "UEL terminal voltage exponent applied to reactive power output from UEL limit look-up table (k2). Typical Value = 2."^^ . - . - "UnderexcLim2Simplified"@en . - . - "This model can be derived from UnderexcLimIEEE2.The limit characteristic (look –up table) is a single straight-line, the same as UnderexcLimIEEE2 (see Figure 10.4 (p 32), IEEE 421.5-2005 Section 10.2)."^^ . - . - . - . - . - "q0"@en . - . - . - . - "Segment Q initial point (Q0). Typical Value = -0.31."^^ . - . - . - "q1"@en . - . - . - . - "Segment Q end point (Q1). Typical Value = -0.1."^^ . - . - . - "p0"@en . - . - . - . - "Segment P initial point (P0). Typical Value = 0."^^ . - . - . - "p1"@en . - . - . - . - "Segment P end point (P1). Typical Value = 1."^^ . - . - . - "kui"@en . - . - . - . - "Gain Under excitation limiter (Kui). Typical Value = 0.1."^^ . - . - . - "vuimin"@en . - . - . - . - "Minimum error signal (VUImin). Typical Value = 0."^^ . - . - . - "vuimax"@en . - . - . - . - "Maximum error signal (VUImax). Typical Value = 1."^^ . - . - "UnderexcLimX1"@en . - . - "Allis-Chalmers minimum excitation limiter."^^ . - . - . - . - . - "kf2"@en . - . - . - . - "Differential gain (Kf2)."^^ . - . - . - "tf2"@en . - . - . - . - "Differential time constant (Tf2) (>0)."^^ . - . - . - "km"@en . - . - . - . - "Minimum excitation limit gain (Km)."^^ . - . - . - "tm"@en . - . - . - . - "Minimum excitation limit time constant (Tm)."^^ . - . - . - "melmax"@en . - . - . - . - "Minimum excitation limit value (MELMAX)."^^ . - . - . - "k"@en . - . - . - . - "Minimum excitation limit slope (K) (>0)."^^ . - . - "UnderexcLimX2"@en . - . - "Westinghouse minimum excitation limiter."^^ . - . - . - . - . - "kf2"@en . - . - . - . - "Differential gain (Kf2)."^^ . - . - . - "tf2"@en . - . - . - . - "Differential time constant (Tf2) (>0)."^^ . - . - . - "km"@en . - . - . - . - "Minimum excitation limit gain (Km)."^^ . - . - . - "tm"@en . - . - . - . - "Minimum excitation limit time constant (Tm)."^^ . - . - . - "melmax"@en . - . - . - . - "Minimum excitation limit value (MELMAX)."^^ . - . - . - "qo"@en . - . - . - . - "Excitation center setting (Qo)."^^ . - . - . - "r"@en . - . - . - . - "Excitation radius (R)."^^ . - . - "PowerSystemStabilizerDynamics"@en . - . - "The power system stabilizer (PSS) model provides an input (Vs) to the excitation system model to improve damping of system oscillations. A variety of input signals may be used depending on the particular design."^^ . - "PowerSystemStabilizerDynamics"@en . - . - "Power system stabilizer function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "PssIEEE1A"@en . - . - "The class represents IEEE Std 421.5-2005 type PSS1A power system stabilizer model. PSS1A is the generalized form of a PSS with a single input. Some common stabilizer input signals are speed, frequency, and power.Reference: IEEE 1A 421.5-2005 Section 8.1. "^^ . - . - . - . - . - "inputSignalType"@en . - . - . - . - "Type of input signal. Typical Value = rotorAngularFrequencyDeviation."^^ . - . - "InputSignalKind"@en . - "Input signal type. In Dynamics modelling, commonly represented by j parameter."^^ . - . - . - . - "rotorSpeed"@en . - "Input signal is rotor or shaft speed (angular frequency)."^^ . - . - "rotorAngularFrequencyDeviation"@en . - "Input signal is rotor or shaft angular frequency deviation."^^ . - . - "busFrequency"@en . - "Input signal is bus voltage frequency. This could be a terminal frequency or remote frequency."^^ . - . - "busFrequencyDeviation"@en . - "Input signal is deviation of bus voltage frequency. This could be a terminal frequency deviation or remote frequency deviation."^^ . - . - "generatorElectricalPower"@en . - "Input signal is generator electrical power on rated S."^^ . - . - "generatorAcceleratingPower"@en . - "Input signal is generating accelerating power."^^ . - . - "busVoltage"@en . - "Input signal is bus voltage. This could be a terminal voltage or remote voltage."^^ . - . - "busVoltageDerivative"@en . - "Input signal is derivative of bus voltage. This could be a terminal voltage derivative or remote voltage derivative."^^ . - . - "branchCurrent"@en . - "Input signal is amplitude of remote branch current."^^ . - . - "fieldCurrent"@en . - "Input signal is generator field current."^^ . - . - . - "a1"@en . - . - . - . - "PSS signal conditioning frequency filter constant (A1). Typical Value = 0.061."^^ . - . - . - "a2"@en . - . - . - . - "PSS signal conditioning frequency filter constant (A2). Typical Value = 0.0017."^^ . - . - . - "t1"@en . - . - . - . - "Lead/lag time constant (T1). Typical Value = 0.3."^^ . - . - . - "t2"@en . - . - . - . - "Lead/lag time constant (T2). Typical Value = 0.03."^^ . - . - . - "t3"@en . - . - . - . - "Lead/lag time constant (T3). Typical Value = 0.3."^^ . - . - . - "t4"@en . - . - . - . - "Lead/lag time constant (T4). Typical Value = 0.03."^^ . - . - . - "t5"@en . - . - . - . - "Washout time constant (T5). Typical Value = 10."^^ . - . - . - "t6"@en . - . - . - . - "Transducer time constant (T6). Typical Value = 0.01."^^ . - . - . - "ks"@en . - . - . - . - "Stabilizer gain (Ks). Typical Value = 5."^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum stabilizer output (Vrmax). Typical Value = 0.05."^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum stabilizer output (Vrmin). Typical Value = -0.05."^^ . - . - "PssIEEE2B"@en . - . - "The class represents IEEE Std 421.5-2005 type PSS2B power system stabilizer model. This stabilizer model is designed to represent a variety of dual-input stabilizers, which normally use combinations of power and speed or frequency to derive the stabilizing signal.Reference: IEEE 2B 421.5-2005 Section 8.2."^^ . - . - . - . - . - "inputSignal1Type"@en . - . - . - . - "Type of input signal #1. Typical Value = rotorSpeed."^^ . - . - . - "inputSignal2Type"@en . - . - . - . - "Type of input signal #2. Typical Value = generatorElectricalPower."^^ . - . - . - "vsi1max"@en . - . - . - . - "Input signal #1 max limit (Vsi1max). Typical Value = 2."^^ . - . - . - "vsi1min"@en . - . - . - . - "Input signal #1 min limit (Vsi1min). Typical Value = -2."^^ . - . - . - "tw1"@en . - . - . - . - "First washout on signal #1 (Tw1). Typical Value = 2."^^ . - . - . - "tw2"@en . - . - . - . - "Second washout on signal #1 (Tw2). Typical Value = 2."^^ . - . - . - "vsi2max"@en . - . - . - . - "Input signal #2 max limit (Vsi2max). Typical Value = 2."^^ . - . - . - "vsi2min"@en . - . - . - . - "Input signal #2 min limit (Vsi2min). Typical Value = -2."^^ . - . - . - "tw3"@en . - . - . - . - "First washout on signal #2 (Tw3). Typical Value = 2."^^ . - . - . - "tw4"@en . - . - . - . - "Second washout on signal #2 (Tw4). Typical Value = 0."^^ . - . - . - "t1"@en . - . - . - . - "Lead/lag time constant (T1). Typical Value = 0.12."^^ . - . - . - "t2"@en . - . - . - . - "Lead/lag time constant (T2). Typical Value = 0.02."^^ . - . - . - "t3"@en . - . - . - . - "Lead/lag time constant (T3). Typical Value = 0.3."^^ . - . - . - "t4"@en . - . - . - . - "Lead/lag time constant (T4). Typical Value = 0.02."^^ . - . - . - "t6"@en . - . - . - . - "Time constant on signal #1 (T6). Typical Value = 0."^^ . - . - . - "t7"@en . - . - . - . - "Time constant on signal #2 (T7). Typical Value = 2."^^ . - . - . - "t8"@en . - . - . - . - "Lead of ramp tracking filter (T8). Typical Value = 0.2."^^ . - . - . - "t9"@en . - . - . - . - "Lag of ramp tracking filter (T9). Typical Value = 0.1."^^ . - . - . - "t10"@en . - . - . - . - "Lead/lag time constant (T10). Typical Value = 0."^^ . - . - . - "t11"@en . - . - . - . - "Lead/lag time constant (T11). Typical Value = 0."^^ . - . - . - "ks1"@en . - . - . - . - "Stabilizer gain (Ks1). Typical Value = 12."^^ . - . - . - "ks2"@en . - . - . - . - "Gain on signal #2 (Ks2). Typical Value = 0.2."^^ . - . - . - "ks3"@en . - . - . - . - "Gain on signal #2 input before ramp-tracking filter (Ks3). Typical Value = 1."^^ . - . - . - "n"@en . - . - . - . - "Order of ramp tracking filter (N). Typical Value = 1."^^ . - . - . - "m"@en . - . - . - . - "Denominator order of ramp tracking filter (M). Typical Value = 5."^^ . - . - . - "vstmax"@en . - . - . - . - "Stabilizer output max limit (Vstmax). Typical Value = 0.1."^^ . - . - . - "vstmin"@en . - . - . - . - "Stabilizer output min limit (Vstmin). Typical Value = -0.1."^^ . - . - "PssIEEE3B"@en . - . - "The class represents IEEE Std 421.5-2005 type PSS3B power system stabilizer model. The PSS model PSS3B has dual inputs of electrical power and rotor angular frequency deviation. The signals are used to derive an equivalent mechanical power signal.Reference: IEEE 3B 421.5-2005 Section 8.3. "^^ . - . - . - . - . - "inputSignal1Type"@en . - . - . - . - "Type of input signal #1. Typical Value = generatorElectricalPower."^^ . - . - . - "inputSignal2Type"@en . - . - . - . - "Type of input signal #2. Typical Value = rotorSpeed."^^ . - . - . - "t1"@en . - . - . - . - "Transducer time constant (T1). Typical Value = 0.012."^^ . - . - . - "t2"@en . - . - . - . - "Transducer time constant (T2). Typical Value = 0.012."^^ . - . - . - "tw1"@en . - . - . - . - "Washout time constant (Tw1). Typical Value = 0.3."^^ . - . - . - "tw2"@en . - . - . - . - "Washout time constant (Tw2). Typical Value = 0.3."^^ . - . - . - "tw3"@en . - . - . - . - "Washout time constant (Tw3). Typical Value = 0.6."^^ . - . - . - "ks1"@en . - . - . - . - "Gain on signal # 1 (Ks1). Typical Value = -0.602."^^ . - . - . - "ks2"@en . - . - . - . - "Gain on signal # 2 (Ks2). Typical Value = 30.12."^^ . - . - . - "a1"@en . - . - . - . - "Notch filter parameter (A1). Typical Value = 0.359."^^ . - . - . - "a2"@en . - . - . - . - "Notch filter parameter (A2). Typical Value = 0.586."^^ . - . - . - "a3"@en . - . - . - . - "Notch filter parameter (A3). Typical Value = 0.429."^^ . - . - . - "a4"@en . - . - . - . - "Notch filter parameter (A4). Typical Value = 0.564."^^ . - . - . - "a5"@en . - . - . - . - "Notch filter parameter (A5). Typical Value = 0.001."^^ . - . - . - "a6"@en . - . - . - . - "Notch filter parameter (A6). Typical Value = 0."^^ . - . - . - "a7"@en . - . - . - . - "Notch filter parameter (A7). Typical Value = 0.031."^^ . - . - . - "a8"@en . - . - . - . - "Notch filter parameter (A8). Typical Value = 0."^^ . - . - . - "vstmax"@en . - . - . - . - "Stabilizer output max limit (Vstmax). Typical Value = 0.1."^^ . - . - . - "vstmin"@en . - . - . - . - "Stabilizer output min limit (Vstmin). Typical Value = -0.1."^^ . - . - "PssIEEE4B"@en . - . - "The class represents IEEE Std 421.5-2005 type PSS2B power system stabilizer model. The PSS4B model represents a structure based on multiple working frequency bands. Three separate bands, respectively dedicated to the low-, intermediate- and high-frequency modes of oscillations, are used in this delta-omega (speed input) PSS.Reference: IEEE 4B 421.5-2005 Section 8.4. "^^ . - . - . - . - . - "bwh1"@en . - . - . - . - "Notch filter 1 (high-frequency band): Three dB bandwidth (Bwi). "^^ . - . - . - "bwh2"@en . - . - . - . - "Notch filter 2 (high-frequency band): Three dB bandwidth (Bwi). "^^ . - . - . - "bwl1"@en . - . - . - . - "Notch filter 1 (low-frequency band): Three dB bandwidth (Bwi). "^^ . - . - . - "bwl2"@en . - . - . - . - "Notch filter 2 (low-frequency band): Three dB bandwidth (Bwi). "^^ . - . - . - "kh"@en . - . - . - . - "High band gain (KH). Typical Value = 120."^^ . - . - . - "kh1"@en . - . - . - . - "High band differential filter gain (KH1). Typical Value = 66."^^ . - . - . - "kh11"@en . - . - . - . - "High band first lead-lag blocks coefficient (KH11). Typical Value = 1."^^ . - . - . - "kh17"@en . - . - . - . - "High band first lead-lag blocks coefficient (KH17). Typical Value = 1."^^ . - . - . - "kh2"@en . - . - . - . - "High band differential filter gain (KH2). Typical Value = 66."^^ . - . - . - "ki"@en . - . - . - . - "Intermediate band gain (KI). Typical Value = 30."^^ . - . - . - "ki1"@en . - . - . - . - "Intermediate band differential filter gain (KI1). Typical Value = 66."^^ . - . - . - "ki11"@en . - . - . - . - "Intermediate band first lead-lag blocks coefficient (KI11). Typical Value = 1."^^ . - . - . - "ki17"@en . - . - . - . - "Intermediate band first lead-lag blocks coefficient (KI17). Typical Value = 1."^^ . - . - . - "ki2"@en . - . - . - . - "Intermediate band differential filter gain (KI2). Typical Value = 66."^^ . - . - . - "kl"@en . - . - . - . - "Low band gain (KL). Typical Value = 7.5."^^ . - . - . - "kl1"@en . - . - . - . - "Low band differential filter gain (KL1). Typical Value = 66."^^ . - . - . - "kl11"@en . - . - . - . - "Low band first lead-lag blocks coefficient (KL11). Typical Value = 1."^^ . - . - . - "kl17"@en . - . - . - . - "Low band first lead-lag blocks coefficient (KL17). Typical Value = 1."^^ . - . - . - "kl2"@en . - . - . - . - "Low band differential filter gain (KL2). Typical Value = 66."^^ . - . - . - "omeganh1"@en . - . - . - . - "Notch filter 1 (high-frequency band): filter frequency (omegani)."^^ . - . - . - "omeganh2"@en . - . - . - . - "Notch filter 2 (high-frequency band): filter frequency (omegani)."^^ . - . - . - "omeganl1"@en . - . - . - . - "Notch filter 1 (low-frequency band): filter frequency (omegani)."^^ . - . - . - "omeganl2"@en . - . - . - . - "Notch filter 2 (low-frequency band): filter frequency (omegani)."^^ . - . - . - "th1"@en . - . - . - . - "High band time constant (TH1). Typical Value = 0.01513."^^ . - . - . - "th10"@en . - . - . - . - "High band time constant (TH10). Typical Value = 0."^^ . - . - . - "th11"@en . - . - . - . - "High band time constant (TH11). Typical Value = 0."^^ . - . - . - "th12"@en . - . - . - . - "High band time constant (TH12). Typical Value = 0."^^ . - . - . - "th2"@en . - . - . - . - "High band time constant (TH2). Typical Value = 0.01816."^^ . - . - . - "th3"@en . - . - . - . - "High band time constant (TH3). Typical Value = 0."^^ . - . - . - "th4"@en . - . - . - . - "High band time constant (TH4). Typical Value = 0."^^ . - . - . - "th5"@en . - . - . - . - "High band time constant (TH5). Typical Value = 0."^^ . - . - . - "th6"@en . - . - . - . - "High band time constant (TH6). Typical Value = 0."^^ . - . - . - "th7"@en . - . - . - . - "High band time constant (TH7). Typical Value = 0.01816."^^ . - . - . - "th8"@en . - . - . - . - "High band time constant (TH8). Typical Value = 0.02179."^^ . - . - . - "th9"@en . - . - . - . - "High band time constant (TH9). Typical Value = 0."^^ . - . - . - "ti1"@en . - . - . - . - "Intermediate band time constant (TI1). Typical Value = 0.173."^^ . - . - . - "ti10"@en . - . - . - . - "Intermediate band time constant (TI11). Typical Value = 0."^^ . - . - . - "ti11"@en . - . - . - . - "Intermediate band time constant (TI11). Typical Value = 0."^^ . - . - . - "ti12"@en . - . - . - . - "Intermediate band time constant (TI2). Typical Value = 0."^^ . - . - . - "ti2"@en . - . - . - . - "Intermediate band time constant (TI2). Typical Value = 0.2075."^^ . - . - . - "ti3"@en . - . - . - . - "Intermediate band time constant (TI3). Typical Value = 0."^^ . - . - . - "ti4"@en . - . - . - . - "Intermediate band time constant (TI4). Typical Value = 0."^^ . - . - . - "ti5"@en . - . - . - . - "Intermediate band time constant (TI5). Typical Value = 0."^^ . - . - . - "ti6"@en . - . - . - . - "Intermediate band time constant (TI6). Typical Value = 0."^^ . - . - . - "ti7"@en . - . - . - . - "Intermediate band time constant (TI7). Typical Value = 0.2075."^^ . - . - . - "ti8"@en . - . - . - . - "Intermediate band time constant (TI8). Typical Value = 0.2491."^^ . - . - . - "ti9"@en . - . - . - . - "Intermediate band time constant (TI9). Typical Value = 0."^^ . - . - . - "tl1"@en . - . - . - . - "Low band time constant (TL1). Typical Value = 1.73."^^ . - . - . - "tl10"@en . - . - . - . - "Low band time constant (TL10). Typical Value = 0."^^ . - . - . - "tl11"@en . - . - . - . - "Low band time constant (TL11). Typical Value = 0."^^ . - . - . - "tl12"@en . - . - . - . - "Low band time constant (TL12). Typical Value = 0."^^ . - . - . - "tl2"@en . - . - . - . - "Low band time constant (TL2). Typical Value = 2.075."^^ . - . - . - "tl3"@en . - . - . - . - "Low band time constant (TL3). Typical Value = 0."^^ . - . - . - "tl4"@en . - . - . - . - "Low band time constant (TL4). Typical Value = 0."^^ . - . - . - "tl5"@en . - . - . - . - "Low band time constant (TL5). Typical Value = 0."^^ . - . - . - "tl6"@en . - . - . - . - "Low band time constant (TL6). Typical Value = 0."^^ . - . - . - "tl7"@en . - . - . - . - "Low band time constant (TL7). Typical Value = 2.075."^^ . - . - . - "tl8"@en . - . - . - . - "Low band time constant (TL8). Typical Value = 2.491."^^ . - . - . - "tl9"@en . - . - . - . - "Low band time constant (TL9). Typical Value = 0."^^ . - . - . - "vhmax"@en . - . - . - . - "High band output maximum limit (VHmax). Typical Value = 0.6."^^ . - . - . - "vhmin"@en . - . - . - . - "High band output minimum limit (VHmin). Typical Value = -0.6."^^ . - . - . - "vimax"@en . - . - . - . - "Intermediate band output maximum limit (VImax). Typical Value = 0.6."^^ . - . - . - "vimin"@en . - . - . - . - "Intermediate band output minimum limit (VImin). Typical Value = -0.6."^^ . - . - . - "vlmax"@en . - . - . - . - "Low band output maximum limit (VLmax). Typical Value = 0.075."^^ . - . - . - "vlmin"@en . - . - . - . - "Low band output minimum limit (VLmin). Typical Value = -0.075."^^ . - . - . - "vstmax"@en . - . - . - . - "PSS output maximum limit (VSTmax). Typical Value = 0.15."^^ . - . - . - "vstmin"@en . - . - . - . - "PSS output minimum limit (VSTmin). Typical Value = -0.15."^^ . - . - "Pss1"@en . - . - "Italian PSS - three input PSS (speed, frequency, power)."^^ . - . - . - . - . - "kw"@en . - . - . - . - "Shaft speed power input gain (KW). Typical Value = 0."^^ . - . - . - "kf"@en . - . - . - . - "Frequency power input gain (KF). Typical Value = 5."^^ . - . - . - "kpe"@en . - . - . - . - "Electric power input gain (KPE). Typical Value = 0.3."^^ . - . - . - "pmin"@en . - . - . - . - "Minimum power PSS enabling (PMIN). Typical Value = 0.25."^^ . - . - . - "ks"@en . - . - . - . - "PSS gain (KS). Typical Value = 1."^^ . - . - . - "vsmn"@en . - . - . - . - "Stabilizer output max limit (VSMN). Typical Value = -0.06."^^ . - . - . - "vsmx"@en . - . - . - . - "Stabilizer output min limit (VSMX). Typical Value = 0.06."^^ . - . - . - "tpe"@en . - . - . - . - "Electric power filter time constant (TPE). Typical Value = 0.05."^^ . - . - . - "t5"@en . - . - . - . - "Washout (T5). Typical Value = 3.5."^^ . - . - . - "t6"@en . - . - . - . - "Filter time constant (T6). Typical Value = 0."^^ . - . - . - "t7"@en . - . - . - . - "Lead/lag time constant (T7). Typical Value = 0."^^ . - . - . - "t8"@en . - . - . - . - "Lead/lag time constant (T8). Typical Value = 0."^^ . - . - . - "t9"@en . - . - . - . - "Lead/lag time constant (T9). Typical Value = 0."^^ . - . - . - "t10"@en . - . - . - . - "Lead/lag time constant (T10). Typical Value = 0."^^ . - . - . - "vadat"@en . - . - . - . - "Signal selector (VadAt).true = closed (Generator Power is greater than Pmin)false = open (Pe is smaller than Pmin).Typical Value = true."^^ . - . - "Pss1A"@en . - . - "Single input power system stabilizer. It is a modified version in order to allow representation of various vendors' implementations on PSS type 1A."^^ . - . - . - . - . - "inputSignalType"@en . - . - . - . - "Type of input signal."^^ . - . - . - "a1"@en . - . - . - . - "Notch filter parameter (A1)."^^ . - . - . - "a2"@en . - . - . - . - "Notch filter parameter (A2). "^^ . - . - . - "t1"@en . - . - . - . - "Lead/lag time constant (T1). "^^ . - . - . - "t2"@en . - . - . - . - "Lead/lag time constant (T2). "^^ . - . - . - "t3"@en . - . - . - . - "Lead/lag time constant (T3). "^^ . - . - . - "t4"@en . - . - . - . - "Lead/lag time constant (T4). "^^ . - . - . - "t5"@en . - . - . - . - "Washout time constant (T5). "^^ . - . - . - "t6"@en . - . - . - . - "Transducer time constant (T6). "^^ . - . - . - "ks"@en . - . - . - . - "Stabilizer gain (Ks). "^^ . - . - . - "vrmax"@en . - . - . - . - "Maximum stabilizer output (Vrmax). "^^ . - . - . - "vrmin"@en . - . - . - . - "Minimum stabilizer output (Vrmin). "^^ . - . - . - "vcu"@en . - . - . - . - "Stabilizer input cutoff threshold (Vcu). "^^ . - . - . - "vcl"@en . - . - . - . - "Stabilizer input cutoff threshold (Vcl). "^^ . - . - . - "a3"@en . - . - . - . - "Notch filter parameter (A3). "^^ . - . - . - "a4"@en . - . - . - . - "Notch filter parameter (A4). "^^ . - . - . - "a5"@en . - . - . - . - "Notch filter parameter (A5). "^^ . - . - . - "a6"@en . - . - . - . - "Notch filter parameter (A6). "^^ . - . - . - "a7"@en . - . - . - . - "Notch filter parameter (A7). "^^ . - . - . - "a8"@en . - . - . - . - "Notch filter parameter (A8). "^^ . - . - . - "kd"@en . - . - . - . - "Selector (Kd).true = e-sTdelay usedfalse = e-sTdelay not used."^^ . - . - . - "tdelay"@en . - . - . - . - "Time constant (Tdelay). "^^ . - . - "Pss2B"@en . - . - "Modified IEEE PSS2B Model. Extra lead/lag (or rate) block added at end (up to 4 lead/lags total)."^^ . - . - . - . - . - "inputSignal1Type"@en . - . - . - . - "Type of input signal #1. Typical Value = rotorSpeed."^^ . - . - . - "inputSignal2Type"@en . - . - . - . - "Type of input signal #2. Typical Value = generatorElectricalPower."^^ . - . - . - "vsi1max"@en . - . - . - . - "Input signal #1 max limit (Vsi1max). Typical Value = 2."^^ . - . - . - "vsi1min"@en . - . - . - . - "Input signal #1 min limit (Vsi1min). Typical Value = -2."^^ . - . - . - "tw1"@en . - . - . - . - "First washout on signal #1 (Tw1). Typical Value = 2."^^ . - . - . - "tw2"@en . - . - . - . - "Second washout on signal #1 (Tw2). Typical Value = 2."^^ . - . - . - "vsi2max"@en . - . - . - . - "Input signal #2 max limit (Vsi2max). Typical Value = 2."^^ . - . - . - "vsi2min"@en . - . - . - . - "Input signal #2 min limit (Vsi2min). Typical Value = -2."^^ . - . - . - "tw3"@en . - . - . - . - "First washout on signal #2 (Tw3). Typical Value = 2."^^ . - . - . - "tw4"@en . - . - . - . - "Second washout on signal #2 (Tw4). Typical Value = 0."^^ . - . - . - "t1"@en . - . - . - . - "Lead/lag time constant (T1). Typical Value = 0.12."^^ . - . - . - "t2"@en . - . - . - . - "Lead/lag time constant (T2). Typical Value = 0.02."^^ . - . - . - "t3"@en . - . - . - . - "Lead/lag time constant (T3). Typical Value = 0.3."^^ . - . - . - "t4"@en . - . - . - . - "Lead/lag time constant (T4). Typical Value = 0.02."^^ . - . - . - "t6"@en . - . - . - . - "Time constant on signal #1 (T6). Typical Value = 0."^^ . - . - . - "t7"@en . - . - . - . - "Time constant on signal #2 (T7). Typical Value = 2."^^ . - . - . - "t8"@en . - . - . - . - "Lead of ramp tracking filter (T8). Typical Value = 0.2."^^ . - . - . - "t9"@en . - . - . - . - "Lag of ramp tracking filter (T9). Typical Value = 0.1."^^ . - . - . - "t10"@en . - . - . - . - "Lead/lag time constant (T10). Typical Value = 0."^^ . - . - . - "t11"@en . - . - . - . - "Lead/lag time constant (T11). Typical Value = 0."^^ . - . - . - "ks1"@en . - . - . - . - "Stabilizer gain (Ks1). Typical Value = 12."^^ . - . - . - "ks2"@en . - . - . - . - "Gain on signal #2 (Ks2). Typical Value = 0.2."^^ . - . - . - "ks3"@en . - . - . - . - "Gain on signal #2 input before ramp-tracking filter (Ks3). Typical Value = 1."^^ . - . - . - "ks4"@en . - . - . - . - "Gain on signal #2 input after ramp-tracking filter (Ks4). Typical Value = 1."^^ . - . - . - "n"@en . - . - . - . - "Order of ramp tracking filter (N). Typical Value = 1."^^ . - . - . - "m"@en . - . - . - . - "Denominator order of ramp tracking filter (M). Typical Value = 5."^^ . - . - . - "vstmax"@en . - . - . - . - "Stabilizer output max limit (Vstmax). Typical Value = 0.1."^^ . - . - . - "vstmin"@en . - . - . - . - "Stabilizer output min limit (Vstmin). Typical Value = -0.1."^^ . - . - . - "a"@en . - . - . - . - "Numerator constant (a). Typical Value = 1."^^ . - . - . - "ta"@en . - . - . - . - "Lead constant (Ta). Typical Value = 0."^^ . - . - . - "tb"@en . - . - . - . - "Lag time constant (Tb). Typical Value = 0."^^ . - . - "Pss2ST"@en . - . - "PTI Microprocessor-Based Stabilizer type 1."^^ . - . - . - . - . - "inputSignal1Type"@en . - . - . - . - "Type of input signal #1. Typical Value = rotorAngularFrequencyDeviation."^^ . - . - . - "inputSignal2Type"@en . - . - . - . - "Type of input signal #2. Typical Value = generatorElectricalPower."^^ . - . - . - "k1"@en . - . - . - . - "Gain (K1). "^^ . - . - . - "k2"@en . - . - . - . - "Gain (K2). "^^ . - . - . - "t1"@en . - . - . - . - "Time constant (T1). "^^ . - . - . - "t2"@en . - . - . - . - "Time constant (T2)."^^ . - . - . - "t3"@en . - . - . - . - "Time constant (T3). "^^ . - . - . - "t4"@en . - . - . - . - "Time constant (T4)."^^ . - . - . - "t5"@en . - . - . - . - "Time constant (T5). "^^ . - . - . - "t6"@en . - . - . - . - "Time constant (T6). "^^ . - . - . - "t7"@en . - . - . - . - "Time constant (T7). "^^ . - . - . - "t8"@en . - . - . - . - "Time constant (T8). "^^ . - . - . - "t9"@en . - . - . - . - "Time constant (T9). "^^ . - . - . - "t10"@en . - . - . - . - "Time constant (T10). "^^ . - . - . - "lsmax"@en . - . - . - . - "Limiter (Lsmax). "^^ . - . - . - "lsmin"@en . - . - . - . - "Limiter (Lsmin). "^^ . - . - . - "vcu"@en . - . - . - . - "Cutoff limiter (Vcu). "^^ . - . - . - "vcl"@en . - . - . - . - "Cutoff limiter (Vcl). "^^ . - . - "Pss5"@en . - . - "Italian PSS - Detailed PSS."^^ . - . - . - . - . - "kpe"@en . - . - . - . - "Electric power input gain (KPE). Typical Value = 0.3."^^ . - . - . - "kf"@en . - . - . - . - "Frequency/shaft speed input gain (KF). Typical Value = 5."^^ . - . - . - "isfreq"@en . - . - . - . - "Selector for Frequency/shaft speed input (IsFreq).true = speedfalse = frequency.Typical Value = true."^^ . - . - . - "kpss"@en . - . - . - . - "PSS gain (KPSS). Typical Value = 1."^^ . - . - . - "ctw2"@en . - . - . - . - "Selector for Second washout enabling (CTW2).true = second washout filter is bypassedfalse = second washout filter in use.Typical Value = true."^^ . - . - . - "tw1"@en . - . - . - . - "First WashOut (Tw1). Typical Value = 3.5."^^ . - . - . - "tw2"@en . - . - . - . - "Second WashOut (Tw2). Typical Value = 0."^^ . - . - . - "tl1"@en . - . - . - . - "Lead/lag time constant (TL1). Typical Value = 0."^^ . - . - . - "tl2"@en . - . - . - . - "Lead/lag time constant (TL2). Typical Value = 0."^^ . - . - . - "tl3"@en . - . - . - . - "Lead/lag time constant (TL3). Typical Value = 0."^^ . - . - . - "tl4"@en . - . - . - . - "Lead/lag time constant (TL4). Typical Value = 0."^^ . - . - . - "vsmn"@en . - . - . - . - "Stabilizer output max limit (VSMN). Typical Value = -0.1."^^ . - . - . - "vsmx"@en . - . - . - . - "Stabilizer output min limit (VSMX). Typical Value = 0.1."^^ . - . - . - "tpe"@en . - . - . - . - "Electric power filter time constant (TPE). Typical Value = 0.05."^^ . - . - . - "pmm"@en . - . - . - . - "Minimum power PSS enabling (Pmn). Typical Value = 0.25."^^ . - . - . - "deadband"@en . - . - . - . - "Stabilizer output dead band (DeadBand). Typical Value = 0."^^ . - . - . - "vadat"@en . - . - . - . - "Signal selector (VadAtt).true = closed (Generator Power is greater than Pmin)false = open (Pe is smaller than Pmin).Typical Value = true."^^ . - . - "PssELIN2"@en . - . - "Power system stabilizer typically associated with ExcELIN2 (though PssIEEE2B or Pss2B can also be used)."^^ . - . - . - . - . - "ts1"@en . - . - . - . - "Time constant (Ts1). Typical Value = 0."^^ . - . - . - "ts2"@en . - . - . - . - "Time constant (Ts2). Typical Value = 1."^^ . - . - . - "ts3"@en . - . - . - . - "Time constant (Ts3). Typical Value = 1."^^ . - . - . - "ts4"@en . - . - . - . - "Time constant (Ts4). Typical Value = 0.1."^^ . - . - . - "ts5"@en . - . - . - . - "Time constant (Ts5). Typical Value = 0."^^ . - . - . - "ts6"@en . - . - . - . - "Time constant (Ts6). Typical Value = 1."^^ . - . - . - "ks1"@en . - . - . - . - "Gain (Ks1). Typical Value = 1."^^ . - . - . - "ks2"@en . - . - . - . - "Gain (Ks2). Typical Value = 0.1."^^ . - . - . - "ppss"@en . - . - . - . - "Coefficient (p_PSS) (>=0 and <=4). Typical Value = 0.1."^^ . - . - . - "apss"@en . - . - . - . - "Coefficient (a_PSS). Typical Value = 0.1."^^ . - . - . - "psslim"@en . - . - . - . - "PSS limiter (psslim). Typical Value = 0.1."^^ . - . - "PssPTIST1"@en . - . - "PTI Microprocessor-Based Stabilizer type 1."^^ . - . - . - . - . - "m"@en . - . - . - . - "(M). M=2*H. Typical Value = 5."^^ . - . - . - "tf"@en . - . - . - . - "Time constant (Tf). Typical Value = 0.2."^^ . - . - . - "tp"@en . - . - . - . - "Time constant (Tp). Typical Value = 0.2."^^ . - . - . - "t1"@en . - . - . - . - "Time constant (T1). Typical Value = 0.3."^^ . - . - . - "t2"@en . - . - . - . - "Time constant (T2). Typical Value = 1."^^ . - . - . - "t3"@en . - . - . - . - "Time constant (T3). Typical Value = 0.2."^^ . - . - . - "t4"@en . - . - . - . - "Time constant (T4). Typical Value = 0.05."^^ . - . - . - "k"@en . - . - . - . - "Gain (K). Typical Value = 9."^^ . - . - . - "dtf"@en . - . - . - . - "Time step frequency calculation (Dtf). Typical Value = 0.025."^^ . - . - . - "dtc"@en . - . - . - . - "Time step related to activation of controls (Dtc). Typical Value = 0.025."^^ . - . - . - "dtp"@en . - . - . - . - "Time step active power calculation (Dtp). Typical Value = 0.0125."^^ . - . - "PssPTIST3"@en . - . - "PTI Microprocessor-Based Stabilizer type 3."^^ . - . - . - . - . - "m"@en . - . - . - . - "(M). M=2*H. Typical Value = 5."^^ . - . - . - "tf"@en . - . - . - . - "Time constant (Tf). Typical Value = 0.2."^^ . - . - . - "tp"@en . - . - . - . - "Time constant (Tp). Typical Value = 0.2."^^ . - . - . - "t1"@en . - . - . - . - "Time constant (T1). Typical Value = 0.3."^^ . - . - . - "t2"@en . - . - . - . - "Time constant (T2). Typical Value = 1."^^ . - . - . - "t3"@en . - . - . - . - "Time constant (T3). Typical Value = 0.2."^^ . - . - . - "t4"@en . - . - . - . - "Time constant (T4). Typical Value = 0.05."^^ . - . - . - "k"@en . - . - . - . - "Gain (K). Typical Value = 9."^^ . - . - . - "dtf"@en . - . - . - . - "Time step frequency calculation (0.03 for 50 Hz) (Dtf). Typical Value = 0.025."^^ . - . - . - "dtc"@en . - . - . - . - "Time step related to activation of controls (0.03 for 50 Hz) (Dtc). Typical Value = 0.025."^^ . - . - . - "dtp"@en . - . - . - . - "Time step active power calculation (0.015 for 50 Hz) (Dtp). Typical Value = 0.0125."^^ . - . - . - "t5"@en . - . - . - . - "Time constant (T5). "^^ . - . - . - "t6"@en . - . - . - . - "Time constant (T6). "^^ . - . - . - "a0"@en . - . - . - . - "Filter coefficient (A0). "^^ . - . - . - "a1"@en . - . - . - . - "Limiter (Al). "^^ . - . - . - "a2"@en . - . - . - . - "Filter coefficient (A2). "^^ . - . - . - "b0"@en . - . - . - . - "Filter coefficient (B0). "^^ . - . - . - "b1"@en . - . - . - . - "Filter coefficient (B1). "^^ . - . - . - "b2"@en . - . - . - . - "Filter coefficient (B2). "^^ . - . - . - "a3"@en . - . - . - . - "Filter coefficient (A3). "^^ . - . - . - "a4"@en . - . - . - . - "Filter coefficient (A4). "^^ . - . - . - "a5"@en . - . - . - . - "Filter coefficient (A5). "^^ . - . - . - "b3"@en . - . - . - . - "Filter coefficient (B3). "^^ . - . - . - "b4"@en . - . - . - . - "Filter coefficient (B4). "^^ . - . - . - "b5"@en . - . - . - . - "Filter coefficient (B5). "^^ . - . - . - "athres"@en . - . - . - . - "Threshold value above which output averaging will be bypassed (Athres). Typical Value = 0.005."^^ . - . - . - "dl"@en . - . - . - . - "Limiter (Dl). "^^ . - . - . - "al"@en . - . - . - . - "Limiter (Al)."^^ . - . - . - "lthres"@en . - . - . - . - "Threshold value (Lthres)."^^ . - . - . - "pmin"@en . - . - . - . - "(Pmin)."^^ . - . - . - "isw"@en . - . - . - . - "Digital/analog output switch (Isw).true = produce analog outputfalse = convert to digital output, using tap selection table. "^^ . - . - . - "nav"@en . - . - . - . - "Number of control outputs to average (Nav) (1 <= Nav <= 16). Typical Value = 4."^^ . - . - . - "ncl"@en . - . - . - . - "Number of counts at limit to active limit function (Ncl) (>0). "^^ . - . - . - "ncr"@en . - . - . - . - "Number of counts until reset after limit function is triggered (Ncr). "^^ . - . - "PssSB4"@en . - . - "Power sensitive stabilizer model."^^ . - . - . - . - . - "tt"@en . - . - . - . - "Time constant (Tt)."^^ . - . - . - "kx"@en . - . - . - . - "Gain (Kx)."^^ . - . - . - "tx2"@en . - . - . - . - "Time constant (Tx2)."^^ . - . - . - "ta"@en . - . - . - . - "Time constant (Ta)."^^ . - . - . - "tx1"@en . - . - . - . - "Reset time constant (Tx1)."^^ . - . - . - "tb"@en . - . - . - . - "Time constant (Tb)."^^ . - . - . - "tc"@en . - . - . - . - "Time constant (Tc)."^^ . - . - . - "td"@en . - . - . - . - "Time constant (Td)."^^ . - . - . - "te"@en . - . - . - . - "Time constant (Te)."^^ . - . - . - "vsmax"@en . - . - . - . - "Limiter (Vsmax)."^^ . - . - . - "vsmin"@en . - . - . - . - "Limiter (Vsmin)."^^ . - . - "PssSH"@en . - . - "Model for Siemens “H infinity” power system stabilizer with generator electrical power input."^^ . - . - . - . - . - "k"@en . - . - . - . - "Main gain (K). Typical Value = 1."^^ . - . - . - "k0"@en . - . - . - . - "Gain 0 (K0). Typical Value = 0.012."^^ . - . - . - "k1"@en . - . - . - . - "Gain 1 (K1). Typical Value = 0.488."^^ . - . - . - "k2"@en . - . - . - . - "Gain 2 (K2). Typical Value = 0.064."^^ . - . - . - "k3"@en . - . - . - . - "Gain 3 (K3). Typical Value = 0.224."^^ . - . - . - "k4"@en . - . - . - . - "Gain 4 (K4). Typical Value = 0.1."^^ . - . - . - "td"@en . - . - . - . - "Input time constant (Td). Typical Value = 10."^^ . - . - . - "t1"@en . - . - . - . - "Time constant 1 (T1). Typical Value = 0.076."^^ . - . - . - "t2"@en . - . - . - . - "Time constant 2 (T2). Typical Value = 0.086."^^ . - . - . - "t3"@en . - . - . - . - "Time constant 3 (T3). Typical Value = 1.068."^^ . - . - . - "t4"@en . - . - . - . - "Time constant 4 (T4). Typical Value = 1.913."^^ . - . - . - "vsmax"@en . - . - . - . - "Output maximum limit (Vsmax). Typical Value = 0.1."^^ . - . - . - "vsmin"@en . - . - . - . - "Output minimum limit (Vsmin). Typical Value = -0.1."^^ . - . - "PssSK"@en . - . - "PSS Slovakian type – three inputs."^^ . - . - . - . - . - "k1"@en . - . - . - . - "Gain P (K1). Typical Value = -0.3."^^ . - . - . - "k2"@en . - . - . - . - "Gain fe (K2). Typical Value = -0.15."^^ . - . - . - "k3"@en . - . - . - . - "Gain If (K3). Typical Value = 10."^^ . - . - . - "t1"@en . - . - . - . - "Denominator time constant (T1). Typical Value = 0.3."^^ . - . - . - "t2"@en . - . - . - . - "Filter time constant (T2). Typical Value = 0.35."^^ . - . - . - "t3"@en . - . - . - . - "Denominator time constant (T3). Typical Value = 0.22."^^ . - . - . - "t4"@en . - . - . - . - "Filter time constant (T4). Typical Value = 0.02."^^ . - . - . - "t5"@en . - . - . - . - "Denominator time constant (T5). Typical Value = 0.02."^^ . - . - . - "t6"@en . - . - . - . - "Filter time constant (T6). Typical Value = 0.02."^^ . - . - . - "vsmax"@en . - . - . - . - "Stabilizer output max limit (Vsmax). Typical Value = 0.4."^^ . - . - . - "vsmin"@en . - . - . - . - "Stabilizer output min limit (Vsmin). Typical Value = -0.4."^^ . - . - "PssWECC"@en . - . - "Dual input Power System Stabilizer, based on IEEE type 2, with modified output limiter defined by WECC (Western Electricity Coordinating Council, USA)."^^ . - . - . - . - . - "inputSignal1Type"@en . - . - . - . - "Type of input signal #1."^^ . - . - . - "inputSignal2Type"@en . - . - . - . - "Type of input signal #2."^^ . - . - . - "k1"@en . - . - . - . - "Input signal 1 gain (K1). "^^ . - . - . - "t1"@en . - . - . - . - "Input signal 1 transducer time constant (T1)."^^ . - . - . - "k2"@en . - . - . - . - "Input signal 2 gain (K2). "^^ . - . - . - "t2"@en . - . - . - . - "Input signal 2 transducer time constant (T2). "^^ . - . - . - "t3"@en . - . - . - . - "Stabilizer washout time constant (T3). "^^ . - . - . - "t4"@en . - . - . - . - "Stabilizer washout time lag constant (T4) (>0)."^^ . - . - . - "t5"@en . - . - . - . - "Lead time constant (T5). "^^ . - . - . - "t6"@en . - . - . - . - "Lag time constant (T6). "^^ . - . - . - "t7"@en . - . - . - . - "Lead time constant (T7). "^^ . - . - . - "t8"@en . - . - . - . - "Lag time constant (T8). "^^ . - . - . - "t10"@en . - . - . - . - "Lag time constant (T10). "^^ . - . - . - "t9"@en . - . - . - . - "Lead time constant (T9). "^^ . - . - . - "vsmax"@en . - . - . - . - "Maximum output signal (Vsmax). "^^ . - . - . - "vsmin"@en . - . - . - . - "Minimum output signal (Vsmin). "^^ . - . - . - "vcu"@en . - . - . - . - "Maximum value for voltage compensator output (VCU). "^^ . - . - . - "vcl"@en . - . - . - . - "Minimum value for voltage compensator output (VCL). "^^ . - . - "DiscontinuousExcitationControlDynamics"@en . - . - "In some particular system configurations, continuous excitation control with terminal voltage and power system stabilizing regulator input signals does not ensure that the potential of the excitation system for improving system stability is fully exploited. For these situations, discontinuous excitation control signals may be employed to enhance stability following large transient disturbances.For additional information please refer to IEEE Standard 421.5-2005, Section 12."^^ . - "DiscontinuousExcitationControlDynamics"@en . - . - "Discontinuous excitation control function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "DiscExcContIEEEDEC1A"@en . - . - "The class represents IEEE Type DEC1A discontinuous excitation control model that boosts generator excitation to a level higher than that demanded by the voltage regulator and stabilizer immediately following a system fault.Reference: IEEE Standard 421.5-2005 Section 12.2. "^^ . - . - . - . - . - "vtlmt"@en . - . - . - . - "Voltage reference (VTLMT). Typical Value = 1.1."^^ . - . - . - "vomax"@en . - . - . - . - "Limiter (VOMAX). Typical Value = 0.3."^^ . - . - . - "vomin"@en . - . - . - . - "Limiter (VOMIN). Typical Value = 0.1."^^ . - . - . - "ketl"@en . - . - . - . - "Terminal voltage limiter gain (KETL). Typical Value = 47."^^ . - . - . - "vtc"@en . - . - . - . - "Terminal voltage level reference (VTC). Typical Value = 0.95."^^ . - . - . - "val"@en . - . - . - . - "Regulator voltage reference (VAL). Typical Value = 5.5."^^ . - . - . - "esc"@en . - . - . - . - "Speed change reference (ESC). Typical Value = 0.0015."^^ . - . - . - "kan"@en . - . - . - . - "Discontinuous controller gain (KAN). Typical Value = 400."^^ . - . - . - "tan"@en . - . - . - . - "Discontinuous controller time constant (TAN). Typical Value = 0.08."^^ . - . - . - "tw5"@en . - . - . - . - "DEC washout time constant (TW5). Typical Value = 5."^^ . - . - . - "vsmax"@en . - . - . - . - "Limiter (VSMAX). Typical Value = 0.2."^^ . - . - . - "vsmin"@en . - . - . - . - "Limiter (VSMIN). Typical Value = -0.066."^^ . - . - . - "td"@en . - . - . - . - "Time constant (TD). Typical Value = 0.03."^^ . - . - . - "tl1"@en . - . - . - . - "Time constant (TL1). Typical Value = 0.025."^^ . - . - . - "tl2"@en . - . - . - . - "Time constant (TL2). Typical Value = 1.25."^^ . - . - . - "vtm"@en . - . - . - . - "Voltage limits (VTM). Typical Value = 1.13."^^ . - . - . - "vtn"@en . - . - . - . - "Voltage limits (VTN). Typical Value = 1.12."^^ . - . - . - "vanmax"@en . - . - . - . - "Limiter for Van (VANMAX)."^^ . - . - "DiscExcContIEEEDEC2A"@en . - . - "The class represents IEEE Type DEC2A model for the discontinuous excitation control. This system provides transient excitation boosting via an open-loop control as initiated by a trigger signal generated remotely.Reference: IEEE Standard 421.5-2005 Section 12.3. "^^ . - . - . - . - . - "vk"@en . - . - . - . - "Discontinuous controller input reference (VK). "^^ . - . - . - "td1"@en . - . - . - . - "Discontinuous controller time constant (TD1). "^^ . - . - . - "td2"@en . - . - . - . - "Discontinuous controller washout time constant (TD2). "^^ . - . - . - "vdmin"@en . - . - . - . - "Limiter (VDMIN). "^^ . - . - . - "vdmax"@en . - . - . - . - "Limiter (VDMAX). "^^ . - . - "DiscExcContIEEEDEC3A"@en . - . - "The class represents IEEE Type DEC3A model. In some systems, the stabilizer output is disconnected from the regulator immediately following a severe fault to prevent the stabilizer from competing with action of voltage regulator during the first swing.Reference: IEEE Standard 421.5-2005 Section 12.4. "^^ . - . - . - . - . - "vtmin"@en . - . - . - . - "Terminal undervoltage comparison level (VTMIN). "^^ . - . - . - "tdr"@en . - . - . - . - "Reset time delay (TDR). "^^ . - . - "PFVArControllerType1Dynamics"@en . - . - "Excitation systems for synchronous machines are sometimes supplied with an optional means of automatically adjusting generator output reactive power (VAr) or power factor (PF) to a user-specified value This can be accomplished with either a reactive power or power factor controller or regulator. A reactive power or power factor controller is defined as a PF/VAr controller in IEEE Std 421.1 as “A control function that acts through the reference adjuster to modify the voltage regulator set point to maintain the synchronous machine steady-state power factor or reactive power at a predetermined value.” For additional information please refer to IEEE Standard 421.5-2005, Section 11."^^ . - "PFVArControllerType1Dynamics"@en . - . - "Power Factor or VAr controller Type I function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "PFVArControllerType1Dynamics"@en . - "Power Factor or VAr controller Type I model with which this voltage adjuster is associated."^^ . - . - . - . - . - "Yes" . - . - "VoltageAdjusterDynamics"@en . - "Voltage adjuster model associated with this Power Factor or VA controller Type I model."^^ . - . - . - . - . - "No" . - . - "PFVArType1IEEEPFController"@en . - . - "The class represents IEEE PF Controller Type 1 which operates by moving the voltage reference directly.Reference: IEEE Standard 421.5-2005 Section 11.2. "^^ . - . - . - . - . - "ovex"@en . - . - . - . - "Overexcitation Flag (OVEX)true = overexcitedfalse = underexcited."^^ . - . - . - "tpfc"@en . - . - . - . - "PF controller time delay (TPFC). Typical Value = 5."^^ . - . - . - "vitmin"@en . - . - . - . - "Minimum machine terminal current needed to enable pf/var controller (VITMIN)."^^ . - . - . - "vpf"@en . - . - . - . - "Synchronous machine power factor (VPF)."^^ . - . - . - "vpfcbw"@en . - . - . - . - "PF controller dead band (VPFC_BW). Typical Value = 0.05."^^ . - . - . - "vpfref"@en . - . - . - . - "PF controller reference (VPFREF)."^^ . - . - . - "vvtmax"@en . - . - . - . - "Maximum machine terminal voltage needed for pf/var controller to be enabled (VVTMAX)."^^ . - . - . - "vvtmin"@en . - . - . - . - "Minimum machine terminal voltage needed to enable pf/var controller (VVTMIN)."^^ . - . - "PFVArType1IEEEVArController"@en . - . - "The class represents IEEE VAR Controller Type 1 which operates by moving the voltage reference directly.Reference: IEEE Standard 421.5-2005 Section 11.3."^^ . - . - . - . - . - "tvarc"@en . - . - . - . - "Var controller time delay (TVARC). Typical Value = 5."^^ . - . - . - "vvar"@en . - . - . - . - "Synchronous machine power factor (VVAR)."^^ . - . - . - "vvarcbw"@en . - . - . - . - "Var controller dead band (VVARC_BW). Typical Value = 0.02."^^ . - . - . - "vvarref"@en . - . - . - . - "Var controller reference (VVARREF)."^^ . - . - . - "vvtmax"@en . - . - . - . - "Maximum machine terminal voltage needed for pf/var controller to be enabled (VVTMAX)."^^ . - . - . - "vvtmin"@en . - . - . - . - "Minimum machine terminal voltage needed to enable pf/var controller (VVTMIN)."^^ . - . - "VoltageAdjusterDynamics"@en . - . - "A voltage adjuster is a reference adjuster that uses inputs from a reactive power or power factor controller to modify the voltage regulator set point to maintain the synchronous machine steady-state power factor or reactive power at a predetermined value. For additional information please refer to IEEE Standard 421.5-2005, Section 11."^^ . - "VoltageAdjusterDynamics"@en . - . - "Voltage adjuster function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "VAdjIEEE"@en . - . - "The class represents IEEE Voltage Adjuster which is used to represent the voltage adjuster in either a power factor or var control system.Reference: IEEE Standard 421.5-2005 Section 11.1."^^ . - . - . - . - . - "vadjf"@en . - . - . - . - "Set high to provide a continuous raise or lower (VADJF)."^^ . - . - . - "adjslew"@en . - . - . - . - "Rate at which output of adjuster changes (ADJ_SLEW). Unit = sec./PU. Typical Value = 300."^^ . - . - . - "vadjmax"@en . - . - . - . - "Maximum output of the adjuster (VADJMAX). Typical Value = 1.1."^^ . - . - . - "vadjmin"@en . - . - . - . - "Minimum output of the adjuster (VADJMIN). Typical Value = 0.9."^^ . - . - . - "taon"@en . - . - . - . - "Time that adjuster pulses are on (TAON). Typical Value = 0.1."^^ . - . - . - "taoff"@en . - . - . - . - "Time that adjuster pulses are off (TAOFF). Typical Value = 0.5."^^ . - . - "PFVArControllerType2Dynamics"@en . - . - "A var/pf regulator is defined as “A synchronous machine regulator that functions to maintain the power factor or reactive component of power at a predetermined value.” For additional information please refer to IEEE Standard 421.5-2005, Section 11."^^ . - "PFVArControllerType2Dynamics"@en . - . - "Power Factor or VAr controller Type II function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "PFVArType2IEEEPFController"@en . - . - "The class represents IEEE PF Controller Type 2 which is a summing point type controller and makes up the outside loop of a two-loop system. This controller is implemented as a slow PI type controller. The voltage regulator forms the inner loop and is implemented as a fast controller.Reference: IEEE Standard 421.5-2005 Section 11.4. "^^ . - . - . - . - . - "pfref"@en . - . - . - . - "Power factor reference (PFREF)."^^ . - . - . - "vref"@en . - . - . - . - "Voltage regulator reference (VREF)."^^ . - . - . - "vclmt"@en . - . - . - . - "Maximum output of the pf controller (VCLMT). Typical Value = 0.1."^^ . - . - . - "kp"@en . - . - . - . - "Proportional gain of the pf controller (KP). Typical Value = 1."^^ . - . - . - "ki"@en . - . - . - . - "Integral gain of the pf controller (KI). Typical Value = 1."^^ . - . - . - "vs"@en . - . - . - . - "Generator sensing voltage (VS)."^^ . - . - . - "exlon"@en . - . - . - . - "Overexcitation or under excitation flag (EXLON)true = 1 (not in the overexcitation or underexcitation state, integral action is active)false = 0 (in the overexcitation or underexcitation state, so integral action is disabled to allow the limiter to play its role)."^^ . - . - "PFVArType2IEEEVArController"@en . - . - "The class represents IEEE VAR Controller Type 2 which is a summing point type controller. It makes up the outside loop of a two-loop system. This controller is implemented as a slow PI type controller, and the voltage regulator forms the inner loop and is implemented as a fast controller.Reference: IEEE Standard 421.5-2005 Section 11.5."^^ . - . - . - . - . - "qref"@en . - . - . - . - "Reactive power reference (QREF). "^^ . - . - . - "vref"@en . - . - . - . - "Voltage regulator reference (VREF)."^^ . - . - . - "vclmt"@en . - . - . - . - "Maximum output of the pf controller (VCLMT)."^^ . - . - . - "kp"@en . - . - . - . - "Proportional gain of the pf controller (KP)."^^ . - . - . - "ki"@en . - . - . - . - "Integral gain of the pf controller (KI)."^^ . - . - . - "vs"@en . - . - . - . - "Generator sensing voltage (VS)."^^ . - . - . - "exlon"@en . - . - . - . - "Overexcitation or under excitation flag (EXLON)true = 1 (not in the overexcitation or underexcitation state, integral action is active)false = 0 (in the overexcitation or underexcitation state, so integral action is disabled to allow the limiter to play its role)."^^ . - . - "PFVArType2Common1"@en . - . - "Power factor / Reactive power regulator. This model represents the power factor or reactive power controller such as the Basler SCP-250. The controller measures power factor or reactive power (PU on generator rated power) and compares it with the operator's set point."^^ . - . - . - . - . - "j"@en . - . - . - . - "Selector (J).true = control mode for reactive powerfalse = control mode for power factor."^^ . - . - . - "kp"@en . - . - . - . - "Proportional gain (Kp)."^^ . - . - . - "ki"@en . - . - . - . - "Reset gain (Ki)."^^ . - . - . - "max"@en . - . - . - . - "Output limit (max)."^^ . - . - . - "ref"@en . - . - . - . - "Reference value of reactive power or power factor (Ref).The reference value is initialised by this model. This initialisation may override the value exchanged by this attribute to represent a plant operator's change of the reference setting."^^ . - . - "VoltageCompensatorDynamics"@en . - . - "Synchronous machine terminal voltage transducer and current compensator models adjust the terminal voltage feedback to the excitation system by adding a quantity that is proportional to the terminal current of the generator. It is linked to a specific generator (synchronous machine).Several types of compensation are available on most excitation systems. Synchronous machine active and reactive current compensation are the most common. Either reactive droop compensation and/or line-drop compensation may be used, simulating an impedance drop and effectively regulating at some point other than the terminals of the machine. The impedance or range of adjustment and type of compensation should be specified for different types. Care must be taken to ensure that a consistent pu system is utilized for the compensator parameters and the synchronous machine current base.For further information see IEEE Standard 421.5-2005, Section 4."^^ . - "VoltageCompensatorDynamics"@en . - . - "Voltage compensator function block whose behaviour is described by reference to a standard model or by definition of a user-defined model."^^ . - "abstract" . - . - . - "VCompIEEEType1"@en . - . - "The class represents the terminal voltage transducer and the load compensator as defined in the IEEE Std 421.5-2005, Section 4. This model is common to all excitation system models described in the IEEE Standard. Reference: IEEE Standard 421.5-2005 Section 4. "^^ . - . - . - . - . - "rc"@en . - . - . - . - "Resistive component of compensation of a generator (Rc)."^^ . - . - . - "xc"@en . - . - . - . - "Reactive component of compensation of a generator (Xc)."^^ . - . - . - "tr"@en . - . - . - . - "Time constant which is used for the combined voltage sensing and compensation signal (Tr)."^^ . - . - "VCompIEEEType2"@en . - . - "The class represents the terminal voltage transducer and the load compensator as defined in the IEEE Std 421.5-2005, Section 4. This model is designed to cover the following types of compensation:
    \t
  • reactive droop
  • \t
  • transformer-drop or line-drop compensation
  • \t
  • reactive differential compensation known also as cross-current compensation.
Reference: IEEE Standard 421.5-2005, Section 4."^^ . - . - . - . - . - "tr"@en . - . - . - . - "Time constant which is used for the combined voltage sensing and compensation signal (Tr)."^^ . - . - "VcompIEEEType2"@en . - "The standard IEEE Type 2 voltage compensator of this compensation."^^ . - . - . - . - . - "Yes" . - . - "GenICompensationForGenJ"@en . - "Compensation of this voltage compensator's generator for current flow out of another generator."^^ . - . - . - . - . - "No" . - . - "GenICompensationForGenJ"@en . - . - "This class provides the resistive and reactive components of compensation for the generator associated with the IEEE Type 2 voltage compensator for current flow out of one of the other generators in the interconnection."^^ . - . - . - . - . - "rcij"@en . - . - . - . - "Resistive component of compensation of generator associated with this IEEE Type 2 voltage compensator for current flow out of another generator (Rcij)."^^ . - . - . - "xcij"@en . - . - . - . - "Reactive component of compensation of generator associated with this IEEE Type 2 voltage compensator for current flow out of another generator (Xcij)."^^ . - . - "WindDynamics"@en . - . - "Wind turbines are generally divided into 4 types, which are currently significant in power systems. The 4 types have the following characteristics:
    \t
  • Type 1: Wind turbine with directly grid connected asynchronous generator with fixed rotor resistance (typically squirrel cage)
  • \t
  • Type 2: Wind turbine with directly grid connected asynchronous generator with variable rotor resistance
  • \t
  • Type 3: Wind turbines with doubly-fed asynchronous generators (directly connected stator and rotor connected through power converter)
  • \t
  • Type 4: Wind turbines connected fully through a power converter.
Models included in this package are according to IEC 61400-27-1."^^ . - "WindAeroConstIEC"@en . - . - "The constant aerodynamic torque model assumes that the aerodynamic torque is constant.Reference: IEC Standard 61400-27-1 Section 6.6.1.1."^^ . - . - . - . - "WindGenTurbineType1IEC"@en . - "Wind turbine type 1 model with which this wind aerodynamic model is associated."^^ . - . - . - . - . - "No" . - . - "WindAeroConstIEC"@en . - "Wind aerodynamic model associated with this wind turbine type 1 model."^^ . - . - . - . - . - "Yes" . - . - "WindAeroLinearIEC"@en . - . - "The linearised aerodynamic model.Reference: IEC Standard 614000-27-1 Section 6.6.1.2."^^ . - . - . - . - . - "dpomega"@en . - . - . - . - "Partial derivative of aerodynamic power with respect to changes in WTR speed (dpomega). It is case dependent parameter."^^ . - . - . - "dptheta"@en . - . - . - . - "Partial derivative of aerodynamic power with respect to changes in pitch angle (dptheta). It is case dependent parameter."^^ . - . - . - "omegazero"@en . - . - . - . - "Rotor speed if the wind turbine is not derated (omega0). It is case dependent parameter."^^ . - . - . - "pavail"@en . - . - . - . - "Available aerodynamic power (pavail). It is case dependent parameter."^^ . - . - . - "thetazero"@en . - . - . - . - "Pitch angle if the wind turbine is not derated (theta0). It is case dependent parameter."^^ . - . - "WindGenTurbineType3IEC"@en . - "Wind generator type 3 model with which this wind aerodynamic model is associated."^^ . - . - . - . - . - "No" . - . - "WindAeroLinearIEC"@en . - "Wind aerodynamic model associated with this wind generator type 3 model."^^ . - . - . - . - . - "Yes" . - . - "WindContCurrLimIEC"@en . - . - "Current limitation model. The current limitation model combines the physical limits.Reference: IEC Standard 61400-27-1 Section 6.6.5.7."^^ . - . - . - . - . - "imax"@en . - . - . - . - "Maximum continuous current at the wind turbine terminals (imax). It is type dependent parameter."^^ . - . - . - "imaxdip"@en . - . - . - . - "Maximum current during voltage dip at the wind turbine terminals (imax,dip). It is project dependent parameter."^^ . - . - . - "mdfslim"@en . - . - . - . - "Limitation of type 3 stator current (MDFSLim):- false=0: total current limitation,- true=1: stator current limitation).It is type dependent parameter."^^ . - . - . - "mqpri"@en . - . - . - . - "Prioritisation of q control during LVRT (Mqpri):- true = 1: reactive power priority,- false = 0: active power priority.It is project dependent parameter."^^ . - . - . - "tufilt"@en . - . - . - . - "Voltage measurement filter time constant (Tufilt). It is type dependent parameter."^^ . - . - "WindTurbineType3or4IEC"@en . - "Wind turbine type 3 or 4 model with which this wind control current limitation model is associated."^^ . - . - . - . - . - "No" . - . - "WindContCurrLimIEC"@en . - "Wind control current limitation model associated with this wind turbine type 3 or 4 model."^^ . - . - . - . - . - "Yes" . - . - "WindDynamicsLookupTable"@en . - "The current control limitation model with which this wind dynamics lookup table is associated."^^ . - . - . - . - . - "No" . - . - "WindContCurrLimIEC"@en . - "The wind dynamics lookup table associated with this current control limitation model."^^ . - . - . - . - . - "Yes" . - . - "WindContPitchAngleIEC"@en . - . - "Pitch angle control model.Reference: IEC Standard 61400-27-1 Section 6.6.5.8."^^ . - . - . - . - . - "dthetamax"@en . - . - . - . - "Maximum pitch positive ramp rate (dthetamax). It is type dependent parameter. Unit = degrees/sec. "^^ . - . - . - "dthetamin"@en . - . - . - . - "Maximum pitch negative ramp rate (dthetamin). It is type dependent parameter. Unit = degrees/sec. "^^ . - . - . - "kic"@en . - . - . - . - "Power PI controller integration gain (KIc). It is type dependent parameter."^^ . - . - . - "kiomega"@en . - . - . - . - "Speed PI controller integration gain (KIomega). It is type dependent parameter."^^ . - . - . - "kpc"@en . - . - . - . - "Power PI controller proportional gain (KPc). It is type dependent parameter."^^ . - . - . - "kpomega"@en . - . - . - . - "Speed PI controller proportional gain (KPomega). It is type dependent parameter."^^ . - . - . - "kpx"@en . - . - . - . - "Pitch cross coupling gain (KPX). It is type dependent parameter."^^ . - . - . - "thetamax"@en . - . - . - . - "Maximum pitch angle (thetamax). It is type dependent parameter."^^ . - . - . - "thetamin"@en . - . - . - . - "Minimum pitch angle (thetamin). It is type dependent parameter."^^ . - . - . - "ttheta"@en . - . - . - . - "Pitch time constant (ttheta). It is type dependent parameter."^^ . - . - "WindGenTurbineType3IEC"@en . - "Wind turbine type 3 model with which this pitch control model is associated."^^ . - . - . - . - . - "No" . - . - "WindContPitchAngleIEC"@en . - "Wind control pitch angle model associated with this wind turbine type 3."^^ . - . - . - . - . - "Yes" . - . - "WindContPType3IEC"@en . - . - "P control model Type 3.Reference: IEC Standard 61400-27-1 Section 6.6.5.3."^^ . - . - . - . - . - "dpmax"@en . - . - . - . - "Maximum wind turbine power ramp rate (dpmax). It is project dependent parameter."^^ . - . - . - "dtrisemaxlvrt"@en . - . - . - . - "Limitation of torque rise rate during LVRT for S1 (dTrisemaxLVRT). It is project dependent parameter."^^ . - . - . - "kdtd"@en . - . - . - . - "Gain for active drive train damping (KDTD). It is type dependent parameter."^^ . - . - . - "kip"@en . - . - . - . - "PI controller integration parameter (KIp). It is type dependent parameter."^^ . - . - . - "kpp"@en . - . - . - . - "PI controller proportional gain (KPp). It is type dependent parameter."^^ . - . - . - "mplvrt"@en . - . - . - . - "Enable LVRT power control mode (MpLVRT).true = 1: voltage controlfalse = 0: reactive power control.It is project dependent parameter."^^ . - . - . - "omegaoffset"@en . - . - . - . - "Offset to reference value that limits controller action during rotor speed changes (omegaoffset). It is case dependent parameter."^^ . - . - . - "pdtdmax"@en . - . - . - . - "Maximum active drive train damping power (pDTDmax). It is type dependent parameter."^^ . - . - . - "rramp"@en . - . - . - . - "Ramp limitation of torque, required in some grid codes (Rramp). It is project dependent parameter."^^ . - . - . - "tdvs"@en . - . - . - . - "Time delay after deep voltage sags (TDVS). It is project dependent parameter."^^ . - . - . - "temin"@en . - . - . - . - "Minimum electrical generator torque (Temin). It is type dependent parameter."^^ . - . - . - "tomegafilt"@en . - . - . - . - "Filter time constant for generator speed measurement (Tomegafilt). It is type dependent parameter."^^ . - . - . - "tpfilt"@en . - . - . - . - "Filter time constant for power measurement (Tpfilt). It is type dependent parameter."^^ . - . - . - "tpord"@en . - . - . - . - "Time constant in power order lag (Tpord). It is type dependent parameter."^^ . - . - . - "tufilt"@en . - . - . - . - "Filter time constant for voltage measurement (Tufilt). It is type dependent parameter."^^ . - . - . - "tuscale"@en . - . - . - . - "Voltage scaling factor of reset-torque (Tuscale). It is project dependent parameter."^^ . - . - . - "twref"@en . - . - . - . - "Time constant in speed reference filter (Tomega,ref). It is type dependent parameter."^^ . - . - . - "udvs"@en . - . - . - . - "Voltage limit for hold LVRT status after deep voltage sags (uDVS). It is project dependent parameter."^^ . - . - . - "updip"@en . - . - . - . - "Voltage dip threshold for P-control (uPdip). Part of turbine control, often different (e.g 0.8) from converter thresholds. It is project dependent parameter."^^ . - . - . - "wdtd"@en . - . - . - . - "Active drive train damping frequency (omegaDTD). It can be calculated from two mass model parameters. It is type dependent parameter."^^ . - . - . - "zeta"@en . - . - . - . - "Coefficient for active drive train damping (zeta). It is type dependent parameter."^^ . - . - "WindGenTurbineType3IEC"@en . - "Wind turbine type 3 model with which this Wind control P type 3 model is associated."^^ . - . - . - . - . - "No" . - . - "WindContPType3IEC"@en . - "Wind control P type 3 model associated with this wind turbine type 3 model."^^ . - . - . - . - . - "Yes" . - . - "WindDynamicsLookupTable"@en . - "The P control type 3 model with which this wind dynamics lookup table is associated."^^ . - . - . - . - . - "No" . - . - "WindContPType3IEC"@en . - "The wind dynamics lookup table associated with this P control type 3 model."^^ . - . - . - . - . - "Yes" . - . - "WindContPType4aIEC"@en . - . - "P control model Type 4A.Reference: IEC Standard 61400-27-1 Section 6.6.5.4."^^ . - . - . - . - . - "dpmax"@en . - . - . - . - "Maximum wind turbine power ramp rate (dpmax). It is project dependent parameter."^^ . - . - . - "tpord"@en . - . - . - . - "Time constant in power order lag (Tpord). It is type dependent parameter."^^ . - . - . - "tufilt"@en . - . - . - . - "Voltage measurement filter time constant (Tufilt). It is type dependent parameter."^^ . - . - "WindTurbineType4aIEC"@en . - " Wind turbine type 4A model with which this wind control P type 4A model is associated."^^ . - . - . - . - . - "No" . - . - "WindContPType4aIEC"@en . - "Wind control P type 4A model associated with this wind turbine type 4A model."^^ . - . - . - . - . - "Yes" . - . - "WindContPType4bIEC"@en . - . - "P control model Type 4B.Reference: IEC Standard 61400-27-1 Section 6.6.5.5."^^ . - . - . - . - . - "dpmax"@en . - . - . - . - "Maximum wind turbine power ramp rate (dpmax). It is project dependent parameter."^^ . - . - . - "tpaero"@en . - . - . - . - "Time constant in aerodynamic power response (Tpaero). It is type dependent parameter."^^ . - . - . - "tpord"@en . - . - . - . - "Time constant in power order lag (Tpord). It is type dependent parameter."^^ . - . - . - "tufilt"@en . - . - . - . - "Voltage measurement filter time constant (Tufilt). It is type dependent parameter."^^ . - . - "WindTurbineType4bIEC"@en . - "Wind turbine type 4B model with which this wind control P type 4B model is associated."^^ . - . - . - . - . - "No" . - . - "WindContPType4bIEC"@en . - "Wind control P type 4B model associated with this wind turbine type 4B model."^^ . - . - . - . - . - "Yes" . - . - "WindContQIEC"@en . - . - "Q control model.Reference: IEC Standard 61400-27-1 Section 6.6.5.6."^^ . - . - . - . - . - "iqh1"@en . - . - . - . - "Maximum reactive current injection during dip (iqh1). It is type dependent parameter."^^ . - . - . - "iqmax"@en . - . - . - . - "Maximum reactive current injection (iqmax). It is type dependent parameter."^^ . - . - . - "iqmin"@en . - . - . - . - "Minimum reactive current injection (iqmin). It is type dependent parameter."^^ . - . - . - "iqpost"@en . - . - . - . - "Post fault reactive current injection (iqpost). It is project dependent parameter."^^ . - . - . - "kiq"@en . - . - . - . - "Reactive power PI controller integration gain (KI,q). It is type dependent parameter."^^ . - . - . - "kiu"@en . - . - . - . - "Voltage PI controller integration gain (KI,u). It is type dependent parameter."^^ . - . - . - "kpq"@en . - . - . - . - "Reactive power PI controller proportional gain (KP,q). It is type dependent parameter."^^ . - . - . - "kpu"@en . - . - . - . - "Voltage PI controller proportional gain (KP,u). It is type dependent parameter."^^ . - . - . - "kqv"@en . - . - . - . - "Voltage scaling factor for LVRT current (Kqv). It is project dependent parameter."^^ . - . - . - "qmax"@en . - . - . - . - "Maximum reactive power (qmax). It is type dependent parameter."^^ . - . - . - "qmin"@en . - . - . - . - "Minimum reactive power (qmin). It is type dependent parameter."^^ . - . - . - "rdroop"@en . - . - . - . - "Resistive component of voltage drop impedance (rdroop). It is project dependent parameter."^^ . - . - . - "tiq"@en . - . - . - . - "Time constant in reactive current lag (Tiq). It is type dependent parameter."^^ . - . - . - "tpfilt"@en . - . - . - . - "Power measurement filter time constant (Tpfilt). It is type dependent parameter."^^ . - . - . - "tpost"@en . - . - . - . - "Length of time period where post fault reactive power is injected (Tpost). It is project dependent parameter."^^ . - . - . - "tqord"@en . - . - . - . - "Time constant in reactive power order lag (Tqord). It is type dependent parameter."^^ . - . - . - "tufilt"@en . - . - . - . - "Voltage measurement filter time constant (Tufilt). It is type dependent parameter."^^ . - . - . - "udb1"@en . - . - . - . - "Voltage dead band lower limit (udb1). It is type dependent parameter."^^ . - . - . - "udb2"@en . - . - . - . - "Voltage dead band upper limit (udb2). It is type dependent parameter."^^ . - . - . - "umax"@en . - . - . - . - "Maximum voltage in voltage PI controller integral term (umax). It is type dependent parameter."^^ . - . - . - "umin"@en . - . - . - . - "Minimum voltage in voltage PI controller integral term (umin). It is type dependent parameter."^^ . - . - . - "uqdip"@en . - . - . - . - "Voltage threshold for LVRT detection in q control (uqdip). It is type dependent parameter."^^ . - . - . - "uref0"@en . - . - . - . - "User defined bias in voltage reference (uref0), used when MqG = MG,u. It is case dependent parameter."^^ . - . - . - "windLVRTQcontrolModesType"@en . - . - . - . - "Types of LVRT Q control modes (MqLVRT). It is project dependent parameter."^^ . - . - "WindLVRTQcontrolModesKind"@en . - "LVRT Q control modes MqLVRT."^^ . - . - . - . - "mode1"@en . - "Voltage dependent reactive current injection (MLVRT,1)."^^ . - . - "mode2"@en . - "Reactive current injection controlled as the pre-fault value plus an additional voltage dependent reactive current injection (MLVRT,2)."^^ . - . - "mode3"@en . - "Reactive current injection controlled as the pre-fault value plus an additional voltage dependent reactive current injection during fault, and as the pre-fault value plus an additional constant reactive current injection post fault (MLVRT,3)."^^ . - . - . - "windQcontrolModesType"@en . - . - . - . - "Types of general wind turbine Q control modes (MqG). It is project dependent parameter."^^ . - . - "WindQcontrolModesKind"@en . - "General wind turbine Q control modes MqG."^^ . - . - . - . - "voltage"@en . - "Voltage control (MG,u)."^^ . - . - "reactivePower"@en . - "Reactive power control (MG,q)."^^ . - . - "openLoopReactivePower"@en . - "Open loop reactive power control (only used with closed loop at plant level) (MG,qol)."^^ . - . - "powerFactor"@en . - "Power factor control (MG,pf)."^^ . - . - . - "xdroop"@en . - . - . - . - "Inductive component of voltage drop impedance (xdroop). It is project dependent parameter."^^ . - . - "WindTurbineType3or4IEC"@en . - "Wind turbine type 3 or 4 model with which this reactive control mode is associated."^^ . - . - . - . - . - "No" . - . - "WIndContQIEC"@en . - "Wind control Q model associated with this wind turbine type 3 or 4 model."^^ . - . - . - . - . - "Yes" . - . - "WindContRotorRIEC"@en . - . - "Rotor resistance control model.Reference: IEC Standard 61400-27-1 Section 6.6.5.2."^^ . - . - . - . - . - "kirr"@en . - . - . - . - "Integral gain in rotor resistance PI controller (KIrr). It is type dependent parameter."^^ . - . - . - "komegafilt"@en . - . - . - . - "Filter gain for generator speed measurement (Komegafilt). It is type dependent parameter."^^ . - . - . - "kpfilt"@en . - . - . - . - "Filter gain for power measurement (Kpfilt). It is type dependent parameter."^^ . - . - . - "kprr"@en . - . - . - . - "Proportional gain in rotor resistance PI controller (KPrr). It is type dependent parameter."^^ . - . - . - "rmax"@en . - . - . - . - "Maximum rotor resistance (rmax). It is type dependent parameter."^^ . - . - . - "rmin"@en . - . - . - . - "Minimum rotor resistance (rmin). It is type dependent parameter."^^ . - . - . - "tomegafilt"@en . - . - . - . - "Filter time constant for generator speed measurement (Tomegafilt). It is type dependent parameter."^^ . - . - . - "tpfilt"@en . - . - . - . - "Filter time constant for power measurement (Tpfilt). It is type dependent parameter."^^ . - . - "WindContRotorRIEC"@en . - "The rotor resistance control model with which this wind dynamics lookup table is associated."^^ . - . - . - . - . - "Yes" . - . - "WindDynamicsLookupTable"@en . - "The wind dynamics lookup table associated with this rotor resistance control model."^^ . - . - . - . - . - "No" . - . - "WindGenTurbineType2IEC"@en . - "Wind turbine type 2 model with whitch this wind control rotor resistance model is associated."^^ . - . - . - . - . - "No" . - . - "WindContRotorRIEC"@en . - "Wind control rotor resistance model associated with wind turbine type 2 model."^^ . - . - . - . - . - "Yes" . - . - "WindDynamicsLookupTable"@en . - . - "The class models a look up table for the purpose of wind standard models."^^ . - . - . - . - . - "input"@en . - . - . - . - "Input value (x) for the lookup table function."^^ . - . - . - "lookupTableFunctionType"@en . - . - . - . - "Type of the lookup table function."^^ . - . - "WindLookupTableFunctionKind"@en . - "Function of the lookup table."^^ . - . - . - . - "fpslip"@en . - "Power versus slip lookup table (fpslip()). It is used for rotor resistance control model, IEC 61400-27-1, section 6.6.5.2. "^^ . - . - "fpomega"@en . - "Power vs. speed lookup table (fpomega()). It is used for P control model type 3, IEC 61400-27-1, section 6.6.5.3. "^^ . - . - "ipvdl"@en . - "Lookup table for voltage dependency of active current limits (ipVDL()). It is used for current limitation model, IEC 61400-27-1, section 6.6.5.7. "^^ . - . - "iqvdl"@en . - "Lookup table for voltage dependency of reactive current limits (iqVDL()). It is used for current limitation model, IEC 61400-27-1, section 6.6.5.7. "^^ . - . - "fdpf"@en . - "Power vs. frequency lookup table (fdpf()). It is used for wind power plant frequency and active power control model, IEC 61400-27-1, Annex E. "^^ . - . - . - "output"@en . - . - . - . - "Output value (y) for the lookup table function."^^ . - . - . - "sequence"@en . - . - . - . - "Sequence numbers of the pairs of the input (x) and the output (y) of the lookup table function."^^ . - . - "WindDynamicsLookupTable"@en . - "The frequency and active power wind plant control model with which this wind dynamics lookup table is associated."^^ . - . - . - . - . - "No" . - . - "WindPlantFreqPcontrolIEC"@en . - "The wind dynamics lookup table associated with this frequency and active power wind plant model."^^ . - . - . - . - . - "Yes" . - . - "WindGenTurbineType1IEC"@en . - . - "Wind turbine IEC Type 1.Reference: IEC Standard 61400-27-1, section 6.5.2."^^ . - . - . - . - "WindGenTurbineType2IEC"@en . - . - "Wind turbine IEC Type 2.Reference: IEC Standard 61400-27-1, section 6.5.3."^^ . - . - . - . - "WindGenTurbineType2IEC"@en . - "Wind turbine type 2 model with which this Pitch control emulator model is associated."^^ . - . - . - . - . - "No" . - . - "WindPitchContEmulIEC"@en . - "Pitch control emulator model associated with this wind turbine type 2 model."^^ . - . - . - . - . - "Yes" . - . - "WindGenTurbineType3aIEC"@en . - . - "IEC Type 3A generator set model.Reference: IEC Standard 61400-27-1 Section 6.6.3.2."^^ . - . - . - . - . - "kpc"@en . - . - . - . - "Current PI controller proportional gain (KPc). It is type dependent parameter."^^ . - . - . - "xs"@en . - . - . - . - "Electromagnetic transient reactance (xS). It is type dependent parameter."^^ . - . - . - "tic"@en . - . - . - . - "Current PI controller integration time constant (TIc). It is type dependent parameter."^^ . - . - "WindGenTurbineType3bIEC"@en . - . - "IEC Type 3B generator set model.Reference: IEC Standard 61400-27-1 Section 6.6.3.3."^^ . - . - . - . - . - "fducw"@en . - . - . - . - "Crowbar duration versus voltage variation look-up table (fduCW()). It is case dependent parameter."^^ . - . - . - "tg"@en . - . - . - . - "Current generation Time constant (Tg). It is type dependent parameter."^^ . - . - . - "two"@en . - . - . - . - "Time constant for crowbar washout filter (Two). It is case dependent parameter."^^ . - . - . - "mwtcwp"@en . - . - . - . - "Crowbar control mode (MWTcwp).
    \t
  • true = 1 in the model
  • \t
  • false = 0 in the model.
The parameter is case dependent parameter."^^ . - . - . - "xs"@en . - . - . - . - "Electromagnetic transient reactance (xS). It is type dependent parameter."^^ . - . - "WindGenTurbineType3IEC"@en . - . - "Generator model for wind turbines of IEC type 3A and 3B."^^ . - "abstract" . - . - . - . - "dipmax"@en . - . - . - . - "Maximum active current ramp rate (dipmax). It is project dependent parameter."^^ . - . - . - "diqmax"@en . - . - . - . - "Maximum reactive current ramp rate (diqmax). It is project dependent parameter."^^ . - . - "WindGenTurbineType3IEC"@en . - "Wind turbine Type 3 model with which this wind mechanical model is associated."^^ . - . - . - . - . - "No" . - . - "WindMechIEC"@en . - "Wind mechanical model associated with this wind turbine Type 3 model."^^ . - . - . - . - . - "Yes" . - . - "WindGenType4IEC"@en . - . - "IEC Type 4 generator set model.Reference: IEC Standard 61400-27-1 Section 6.6.3.4."^^ . - "abstract" . - . - . - . - "dipmax"@en . - . - . - . - "Maximum active current ramp rate (dipmax). It is project dependent parameter."^^ . - . - . - "diqmin"@en . - . - . - . - "Minimum reactive current ramp rate (diqmin). It is case dependent parameter."^^ . - . - . - "diqmax"@en . - . - . - . - "Maximum reactive current ramp rate (diqmax). It is project dependent parameter."^^ . - . - . - "tg"@en . - . - . - . - "Time constant (Tg). It is type dependent parameter."^^ . - . - "WindMechIEC"@en . - . - "Two mass model.Reference: IEC Standard 61400-27-1 Section 6.6.2.1."^^ . - . - . - . - . - "cdrt"@en . - . - . - . - "Drive train damping (cdrt). It is type dependent parameter."^^ . - . - . - "hgen"@en . - . - . - . - "Inertia constant of generator (Hgen). It is type dependent parameter."^^ . - . - . - "hwtr"@en . - . - . - . - "Inertia constant of wind turbine rotor (HWTR). It is type dependent parameter."^^ . - . - . - "kdrt"@en . - . - . - . - "Drive train stiffness (kdrt). It is type dependent parameter."^^ . - . - "WindTurbineType4bIEC"@en . - "Wind turbine type 4B model with which this wind mechanical model is associated."^^ . - . - . - . - . - "No" . - . - "WindMechIEC"@en . - "Wind mechanical model associated with this wind turbine Type 4B model."^^ . - . - . - . - . - "Yes" . - . - "WindTurbineType1or2IEC"@en . - "Wind generator type 1 or 2 model with which this wind mechanical model is associated."^^ . - . - . - . - . - "No" . - . - "WindMechIEC"@en . - "Wind mechanical model associated with this wind generator type 1 or 2 model."^^ . - . - . - . - . - "Yes" . - . - "WindPitchContEmulIEC"@en . - . - "Pitch control emulator model.Reference: IEC Standard 61400-27-1 Section 6.6.5.1."^^ . - . - . - . - . - "kdroop"@en . - . - . - . - "Power error gain (Kdroop). It is case dependent parameter."^^ . - . - . - "kipce"@en . - . - . - . - "Pitch control emulator integral constant (KI,pce). It is type dependent parameter."^^ . - . - . - "komegaaero"@en . - . - . - . - "Aerodynamic power change vs. omegaWTR change (Komegaaero). It is case dependent parameter."^^ . - . - . - "kppce"@en . - . - . - . - "Pitch control emulator proportional constant (KP,pce). It is type dependent parameter."^^ . - . - . - "omegaref"@en . - . - . - . - "Rotor speed in initial steady state (omegaref). It is case dependent parameter."^^ . - . - . - "pimax"@en . - . - . - . - "Maximum steady state power (pimax). It is case dependent parameter."^^ . - . - . - "pimin"@en . - . - . - . - "Minimum steady state power (pimin). It is case dependent parameter."^^ . - . - . - "t1"@en . - . - . - . - "First time constant in pitch control lag (T1). It is type dependent parameter."^^ . - . - . - "t2"@en . - . - . - . - "Second time constant in pitch control lag (T2). It is type dependent parameter."^^ . - . - . - "tpe"@en . - . - . - . - "Time constant in generator air gap power lag (Tpe). It is type dependent parameter."^^ . - . - "WindPlantDynamics"@en . - . - "Parent class supporting relationships to wind turbines Type 3 and 4 and wind plant IEC and user defined wind plants including their control models."^^ . - "abstract" . - . - . - "WindTurbineType3or4Dynamics"@en . - "The wind turbine type 3 or 4 associated with this wind plant."^^ . - . - . - . - . - "No" . - . - "WindPlantDynamics"@en . - "The wind plant with which the wind turbines type 3 or 4 are associated."^^ . - . - . - . - . - "Yes" . - . - "WindPlantFreqPcontrolIEC"@en . - . - "Frequency and active power controller model.Reference: IEC Standard 61400-27-1 Annex E."^^ . - . - . - . - . - "dprefmax"@en . - . - . - . - "Maximum ramp rate of pWTref request from the plant controller to the wind turbines (dprefmax). It is project dependent parameter."^^ . - . - . - "dprefmin"@en . - . - . - . - "Minimum (negative) ramp rate of pWTref request from the plant controller to the wind turbines (dprefmin). It is project dependent parameter."^^ . - . - . - "kiwpp"@en . - . - . - . - "Plant P controller integral gain (KIWPp). It is type dependent parameter."^^ . - . - . - "kpwpp"@en . - . - . - . - "Plant P controller proportional gain (KPWPp). It is type dependent parameter."^^ . - . - . - "prefmax"@en . - . - . - . - "Maximum pWTref request from the plant controller to the wind turbines (prefmax). It is type dependent parameter."^^ . - . - . - "prefmin"@en . - . - . - . - "Minimum pWTref request from the plant controller to the wind turbines (prefmin). It is type dependent parameter."^^ . - . - . - "tpft"@en . - . - . - . - "Lead time constant in reference value transfer function (Tpft). It is type dependent parameter."^^ . - . - . - "tpfv"@en . - . - . - . - "Lag time constant in reference value transfer function (Tpfv). It is type dependent parameter."^^ . - . - . - "twpffilt"@en . - . - . - . - "Filter time constant for frequency measurement (TWPffilt). It is type dependent parameter."^^ . - . - . - "twppfilt"@en . - . - . - . - "Filter time constant for active power measurement (TWPpfilt). It is type dependent parameter."^^ . - . - "WindPlantIEC"@en . - "Wind plant model with which this wind plant frequency and active power control is associated."^^ . - . - . - . - . - "No" . - . - "WindPlantFreqPcontrolIEC"@en . - "Wind plant frequency and active power control model associated with this wind plant."^^ . - . - . - . - . - "Yes" . - . - "WindPlantIEC"@en . - . - "Simplified IEC type plant level model.Reference: IEC 61400-27-1, AnnexE."^^ . - . - . - . - "WindPlantIEC"@en . - "Wind plant model with which this wind reactive control is associated."^^ . - . - . - . - . - "No" . - . - "WindPlantReactiveControlIEC"@en . - "Wind plant reactive control model associated with this wind plant."^^ . - . - . - . - . - "Yes" . - . - "WindPlantReactiveControlIEC"@en . - . - "Simplified plant voltage and reactive power control model for use with type 3 and type 4 wind turbine models.Reference: IEC Standard 61400-27-1 Annex E."^^ . - . - . - . - . - "kiwpx"@en . - . - . - . - "Plant Q controller integral gain (KIWPx). It is type dependent parameter."^^ . - . - . - "kpwpx"@en . - . - . - . - "Plant Q controller proportional gain (KPWPx). It is type dependent parameter."^^ . - . - . - "kwpqu"@en . - . - . - . - "Plant voltage control droop (KWPqu). It is project dependent parameter."^^ . - . - . - "mwppf"@en . - . - . - . - "Power factor control modes selector (MWPpf). Used only if mwpu is set to false.true = 1: power factor controlfalse = 0: reactive power control.It is project dependent parameter."^^ . - . - . - "mwpu"@en . - . - . - . - "Reactive power control modes selector (MWPu).true = 1: voltage controlfalse = 0: reactive power control.It is project dependent parameter."^^ . - . - . - "twppfilt"@en . - . - . - . - "Filter time constant for active power measurement (TWPpfilt). It is type dependent parameter."^^ . - . - . - "twpqfilt"@en . - . - . - . - "Filter time constant for reactive power measurement (TWPqfilt). It is type dependent parameter."^^ . - . - . - "twpufilt"@en . - . - . - . - "Filter time constant for voltage measurement (TWPufilt). It is type dependent parameter."^^ . - . - . - "txft"@en . - . - . - . - "Lead time constant in reference value transfer function (Txft). It is type dependent parameter."^^ . - . - . - "txfv"@en . - . - . - . - "Lag time constant in reference value transfer function (Txfv). It is type dependent parameter."^^ . - . - . - "uwpqdip"@en . - . - . - . - "Voltage threshold for LVRT detection in q control (uWPqdip). It is type dependent parameter."^^ . - . - . - "xrefmax"@en . - . - . - . - "Maximum xWTref (qWTref or delta uWTref) request from the plant controller (xrefmax). It is project dependent parameter."^^ . - . - . - "xrefmin"@en . - . - . - . - "Minimum xWTref (qWTref or deltauWTref) request from the plant controller (xrefmin). It is project dependent parameter."^^ . - . - "WindProtectionIEC"@en . - . - "The grid protection model includes protection against over and under voltage, and against over and under frequency.Reference: IEC Standard 614000-27-1 Section 6.6.6."^^ . - . - . - . - . - "fover"@en . - . - . - . - "Set of wind turbine over frequency protection levels (fover). It is project dependent parameter. "^^ . - . - . - "funder"@en . - . - . - . - "Set of wind turbine under frequency protection levels (funder). It is project dependent parameter."^^ . - . - . - "tfover"@en . - . - . - . - "Set of corresponding wind turbine over frequency protection disconnection times (Tfover). It is project dependent parameter."^^ . - . - . - "tfunder"@en . - . - . - . - "Set of corresponding wind turbine under frequency protection disconnection times (Tfunder). It is project dependent parameter."^^ . - . - . - "tuover"@en . - . - . - . - "Set of corresponding wind turbine over voltage protection disconnection times (Tuover). It is project dependent parameter."^^ . - . - . - "tuunder"@en . - . - . - . - "Set of corresponding wind turbine under voltage protection disconnection times (Tuunder). It is project dependent parameter."^^ . - . - . - "uover"@en . - . - . - . - "Set of wind turbine over voltage protection levels (uover). It is project dependent parameter."^^ . - . - . - "uunder"@en . - . - . - . - "Set of wind turbine under voltage protection levels (uunder). It is project dependent parameter."^^ . - . - "WindTurbineType3or4IEC"@en . - "Wind generator type 3 or 4 model with which this wind turbine protection model is associated."^^ . - . - . - . - . - "No" . - . - "WindProtectionIEC"@en . - "Wind turbune protection model associated with this wind generator type 3 or 4 model."^^ . - . - . - . - . - "Yes" . - . - "WindTurbineType1or2IEC"@en . - "Wind generator type 1 or 2 model with which this wind turbine protection model is associated."^^ . - . - . - . - . - "No" . - . - "WindProtectionIEC"@en . - "Wind turbune protection model associated with this wind generator type 1 or 2 model."^^ . - . - . - . - . - "Yes" . - . - "WindTurbineType1or2Dynamics"@en . - . - "Parent class supporting relationships to wind turbines Type 1 and 2 and their control models."^^ . - "abstract" . - . - . - "WindTurbineType1or2IEC"@en . - . - "Generator model for wind turbine of IEC Type 1 or Type 2 is a standard asynchronous generator model.Reference: IEC Standard 614000-27-1 Section 6.6.3.1."^^ . - "abstract" . - . - . - "WindTurbineType3or4Dynamics"@en . - . - "Parent class supporting relationships to wind turbines Type 3 and 4 and wind plant including their control models."^^ . - "abstract" . - . - . - "WindTurbineType3or4IEC"@en . - . - "Parent class supporting relationships to IEC wind turbines Type 3 and 4 and wind plant including their control models."^^ . - "abstract" . - . - . - "WindTurbineType4aIEC"@en . - . - "Wind turbine IEC Type 4A.Reference: IEC Standard 61400-27-1, section 6.5.5.2."^^ . - . - . - . - "WindTurbineType4bIEC"@en . - . - "Wind turbine IEC Type 4A.Reference: IEC Standard 61400-27-1, section 6.5.5.3."^^ . - . - . - . - "LoadDynamics"@en . - . - "Dynamic load models are used to represent the dynamic real and reactive load behaviour of a load from the static power flow model.Dynamic load models can be defined as applying either to a single load (energy consumer) or to a group of energy consumers.Large industrial motors or groups of similar motors may be represented by individual motor models (synchronous or asynchronous) which are usually represented as generators with negative Pgen in the static (power flow) data.In the CIM, such individual modelling is handled by child classes of either the SynchronousMachineDynamics or AsynchronousMachineDynamics classes. "^^ . - "LoadComposite"@en . - . - "This models combines static load and induction motor load effects.The dynamics of the motor are simplified by linearizing the induction machine equations."^^ . - . - . - . - . - "epvs"@en . - . - . - . - "Active load-voltage dependence index (static) (Epvs). Typical Value = 0.7."^^ . - . - . - "epfs"@en . - . - . - . - "Active load-frequency dependence index (static) (Epfs). Typical Value = 1.5."^^ . - . - . - "eqvs"@en . - . - . - . - "Reactive load-voltage dependence index (static) (Eqvs). Typical Value = 2."^^ . - . - . - "eqfs"@en . - . - . - . - "Reactive load-frequency dependence index (static) (Eqfs). Typical Value = 0."^^ . - . - . - "epvd"@en . - . - . - . - "Active load-voltage dependence index (dynamic) (Epvd). Typical Value = 0.7."^^ . - . - . - "epfd"@en . - . - . - . - "Active load-frequency dependence index (dynamic) (Epfd). Typical Value = 1.5."^^ . - . - . - "eqvd"@en . - . - . - . - "Reactive load-voltage dependence index (dynamic) (Eqvd). Typical Value = 2."^^ . - . - . - "eqfd"@en . - . - . - . - "Reactive load-frequency dependence index (dynamic) (Eqfd). Typical Value = 0."^^ . - . - . - "lfrac"@en . - . - . - . - "Loading factor – ratio of initial P to motor MVA base (Lfrac). Typical Value = 0.8."^^ . - . - . - "h"@en . - . - . - . - "Inertia constant (H). Typical Value = 2.5."^^ . - . - . - "pfrac"@en . - . - . - . - "Fraction of constant-power load to be represented by this motor model (Pfrac) (>=0.0 and <=1.0). Typical Value = 0.5."^^ . - . - "LoadGenericNonLinear"@en . - . - "These load models (known also as generic non-linear dynamic (GNLD) load models) can be used in mid-term and long-term voltage stability simulations (i.e., to study voltage collapse), as they can replace a more detailed representation of aggregate load, including induction motors, thermostatically controlled and static loads."^^ . - . - . - . - . - "genericNonLinearLoadModelType"@en . - . - . - . - "Type of generic non-linear load model."^^ . - . - "GenericNonLinearLoadModelKind"@en . - "Type of generic non-linear load model."^^ . - . - . - . - "exponentialRecovery"@en . - "Exponential recovery model."^^ . - . - "loadAdaptive"@en . - "Load adaptive model."^^ . - . - . - "pt"@en . - . - . - . - "Dynamic portion of active load (PT)."^^ . - . - . - "qt"@en . - . - . - . - "Dynamic portion of reactive load (QT)."^^ . - . - . - "tp"@en . - . - . - . - "Time constant of lag function of active power (TP)."^^ . - . - . - "tq"@en . - . - . - . - "Time constant of lag function of reactive power (TQ)."^^ . - . - . - "ls"@en . - . - . - . - "Steady state voltage index for active power (LS)."^^ . - . - . - "lt"@en . - . - . - . - "Transient voltage index for active power (LT)."^^ . - . - . - "bs"@en . - . - . - . - "Steady state voltage index for reactive power (BS)."^^ . - . - . - "bt"@en . - . - . - . - "Transient voltage index for reactive power (BT)."^^ . - . - "LoadDynamics"@en . - . - "Load whose behaviour is described by reference to a standard model or by definition of a user-defined model.A standard feature of dynamic load behaviour modelling is the ability to associate the same behaviour to multiple energy consumers by means of a single aggregate load definition. Aggregate loads are used to represent all or part of the real and reactive load from one or more loads in the static (power flow) data. This load is usually the aggregation of many individual load devices and the load model is approximate representation of the aggregate response of the load devices to system disturbances. The load model is always applied to individual bus loads (energy consumers) but a single set of load model parameters can used for all loads in the grouping."^^ . - "abstract" . - . - . - "LoadAggregate"@en . - . - "Standard aggregate load model comprised of static and/or dynamic components. A static load model represents the sensitivity of the real and reactive power consumed by the load to the amplitude and frequency of the bus voltage. A dynamic load model can used to represent the aggregate response of the motor components of the load."^^ . - . - . - . - "LoadAggregate"@en . - "Aggregate load to which this aggregate static load belongs."^^ . - . - . - . - . - "Yes" . - . - "LoadStatic"@en . - "Aggregate static load associated with this aggregate load."^^ . - . - . - . - . - "No" . - . - "LoadAggregate"@en . - "Aggregate load to which this aggregate motor (dynamic) load belongs."^^ . - . - . - . - . - "Yes" . - . - "LoadMotor"@en . - "Aggregate motor (dynamic) load associated with this aggregate load."^^ . - . - . - . - . - "No" . - . - "LoadStatic"@en . - . - "General static load model representing the sensitivity of the real and reactive power consumed by the load to the amplitude and frequency of the bus voltage."^^ . - . - . - . - . - "staticLoadModelType"@en . - . - . - . - "Type of static load model. Typical Value = constantZ."^^ . - . - "StaticLoadModelKind"@en . - "Type of static load model."^^ . - . - . - . - "exponential"@en . - "Exponential P and Q equations are used and the following attributes are required:kp1, kp2, kp3, kpf, ep1, ep2, ep3kq1, kq2, kq3, kqf, eq1, eq2, eq3."^^ . - . - "zIP1"@en . - "ZIP1 P and Q equations are used and the following attributes are required:kp1, kp2, kp3, kpfkq1, kq2, kq3, kqf."^^ . - . - "zIP2"@en . - "This model separates the frequency-dependent load (primarily motors) from other load. ZIP2 P and Q equations are used and the following attributes are required:kp1, kp2, kp3, kq4, kpfkq1, kq2, kq3, kq4, kqf."^^ . - . - "constantZ"@en . - "The load is represented as a constant impedance. ConstantZ P and Q equations are used and no attributes are required."^^ . - . - . - "kp1"@en . - . - . - . - "First term voltage coefficient for active power (Kp1). Not used when .staticLoadModelType = constantZ."^^ . - . - . - "kp2"@en . - . - . - . - "Second term voltage coefficient for active power (Kp2). Not used when .staticLoadModelType = constantZ."^^ . - . - . - "kp3"@en . - . - . - . - "Third term voltage coefficient for active power (Kp3). Not used when .staticLoadModelType = constantZ."^^ . - . - . - "kp4"@en . - . - . - . - "Frequency coefficient for active power (Kp4). Must be non-zero when .staticLoadModelType = ZIP2. Not used for all other values of .staticLoadModelType."^^ . - . - . - "ep1"@en . - . - . - . - "First term voltage exponent for active power (Ep1). Used only when .staticLoadModelType = exponential."^^ . - . - . - "ep2"@en . - . - . - . - "Second term voltage exponent for active power (Ep2). Used only when .staticLoadModelType = exponential."^^ . - . - . - "ep3"@en . - . - . - . - "Third term voltage exponent for active power (Ep3). Used only when .staticLoadModelType = exponential."^^ . - . - . - "kpf"@en . - . - . - . - "Frequency deviation coefficient for active power (Kpf). Not used when .staticLoadModelType = constantZ."^^ . - . - . - "kq1"@en . - . - . - . - "First term voltage coefficient for reactive power (Kq1). Not used when .staticLoadModelType = constantZ."^^ . - . - . - "kq2"@en . - . - . - . - "Second term voltage coefficient for reactive power (Kq2). Not used when .staticLoadModelType = constantZ."^^ . - . - . - "kq3"@en . - . - . - . - "Third term voltage coefficient for reactive power (Kq3). Not used when .staticLoadModelType = constantZ."^^ . - . - . - "kq4"@en . - . - . - . - "Frequency coefficient for reactive power (Kq4). Must be non-zero when .staticLoadModelType = ZIP2. Not used for all other values of .staticLoadModelType."^^ . - . - . - "eq1"@en . - . - . - . - "First term voltage exponent for reactive power (Eq1). Used only when .staticLoadModelType = exponential."^^ . - . - . - "eq2"@en . - . - . - . - "Second term voltage exponent for reactive power (Eq2). Used only when .staticLoadModelType = exponential."^^ . - . - . - "eq3"@en . - . - . - . - "Third term voltage exponent for reactive power (Eq3). Used only when .staticLoadModelType = exponential."^^ . - . - . - "kqf"@en . - . - . - . - "Frequency deviation coefficient for reactive power (Kqf). Not used when .staticLoadModelType = constantZ."^^ . - . - "LoadMotor"@en . - . - "Aggregate induction motor load. This model is used to represent a fraction of an ordinary load as \"induction motor load\". It allows load that is treated as ordinary constant power in power flow analysis to be represented by an induction motor in dynamic simulation. If Lpp = 0. or Lpp = Lp, or Tppo = 0., only one cage is represented. Magnetic saturation is not modelled. Either a \"one-cage\" or \"two-cage\" model of the induction machine can be modelled. Magnetic saturation is not modelled.This model is intended for representation of aggregations of many motors dispersed through a load represented at a high voltage bus but where there is no information on the characteristics of individual motors.This model treats a fraction of the constant power part of a load as a motor. During initialisation, the initial power drawn by the motor is set equal to Pfrac times the constant P part of the static load. The remainder of the load is left as static load.The reactive power demand of the motor is calculated during initialisation as a function of voltage at the load bus. This reactive power demand may be less than or greater than the constant Q component of the load. If the motor's reactive demand is greater than the constant Q component of the load, the model inserts a shunt capacitor at the terminal of the motor to bring its reactive demand down to equal the constant Q reactive load.If a motor model and a static load model are both present for a load, the motor Pfrac is assumed to be subtracted from the power flow constant P load before the static load model is applied. The remainder of the load, if any, is then represented by the static load model."^^ . - . - . - . - . - "pfrac"@en . - . - . - . - "Fraction of constant-power load to be represented by this motor model (Pfrac) (>=0.0 and <=1.0). Typical Value = 0.3."^^ . - . - . - "lfac"@en . - . - . - . - "Loading factor – ratio of initial P to motor MVA base (Lfac). Typical Value = 0.8."^^ . - . - . - "ls"@en . - . - . - . - "Synchronous reactance (Ls). Typical Value = 3.2."^^ . - . - . - "lp"@en . - . - . - . - "Transient reactance (Lp). Typical Value = 0.15."^^ . - . - . - "lpp"@en . - . - . - . - "Subtransient reactance (Lpp). Typical Value = 0.15."^^ . - . - . - "ra"@en . - . - . - . - "Stator resistance (Ra). Typical Value = 0."^^ . - . - . - "tpo"@en . - . - . - . - "Transient rotor time constant (Tpo) (not=0). Typical Value = 1."^^ . - . - . - "tppo"@en . - . - . - . - "Subtransient rotor time constant (Tppo). Typical Value = 0.02."^^ . - . - . - "h"@en . - . - . - . - "Inertia constant (H) (not=0). Typical Value = 0.4."^^ . - . - . - "d"@en . - . - . - . - "Damping factor (D). Unit = delta P/delta speed. Typical Value = 2."^^ . - . - . - "vt"@en . - . - . - . - "Voltage threshold for tripping (Vt). Typical Value = 0.7."^^ . - . - . - "tv"@en . - . - . - . - "Voltage trip pickup time (Tv). Typical Value = 0.1."^^ . - . - . - "tbkr"@en . - . - . - . - "Circuit breaker operating time (Tbkr). Typical Value = 0.08."^^ . - . - _:node1gda76hcix46 . -_:node1gda76hcix46 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - _:node1gda76hcix47 . -_:node1gda76hcix47 "http://iec.ch/TC57/2013/61970-457/Dynamics/3" . - _:node1gda76hcix48 . -_:node1gda76hcix48 "2014-08-07" . - _:node1gda76hcix49 . -_:node1gda76hcix49 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - _:node1gda76hcix50 . -_:node1gda76hcix50 "entsoe_v2.4.15" . - _:node1gda76hcix51 . -_:node1gda76hcix51 "http://entsoe.eu/CIM/Dynamics/3/1" . - _:node1gda76hcix52 . -_:node1gda76hcix52 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - _:node1gda76hcix53 . -_:node1gda76hcix53 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - _:node1gda76hcix54 . -_:node1gda76hcix54 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - _:node1gda76hcix55 . -_:node1gda76hcix55 "DY" . - _:node1gda76hcix56 . -_:node1gda76hcix56 "s" . - _:node1gda76hcix57 . -_:node1gda76hcix57 "none" . - _:node1gda76hcix58 . -_:node1gda76hcix58 "none" . - _:node1gda76hcix59 . -_:node1gda76hcix59 "none" . - _:node1gda76hcix60 . -_:node1gda76hcix60 "A" . - _:node1gda76hcix61 . -_:node1gda76hcix61 "none" . - _:node1gda76hcix62 . -_:node1gda76hcix62 "W" . - _:node1gda76hcix63 . -_:node1gda76hcix63 "M" . - _:node1gda76hcix64 . -_:node1gda76hcix64 "Hz" . - _:node1gda76hcix65 . -_:node1gda76hcix65 "none" . - _:node1gda76hcix66 . -_:node1gda76hcix66 "none" . - _:node1gda76hcix67 . -_:node1gda76hcix67 "degC" . - _:node1gda76hcix68 . -_:node1gda76hcix68 "m2" . - _:node1gda76hcix69 . -_:node1gda76hcix69 "m" . - _:node1gda76hcix70 . -_:node1gda76hcix70 "k" . - _:node1gda76hcix71 . -_:node1gda76hcix71 "none" . - _:node1gda76hcix72 . -_:node1gda76hcix72 "s" . - _:node1gda76hcix73 . -_:node1gda76hcix73 "none" . - _:node1gda76hcix74 . -_:node1gda76hcix74 "m3" . - _:node1gda76hcix75 . -_:node1gda76hcix75 "deg" . - _:node1gda76hcix76 . -_:node1gda76hcix76 "none" . - _:node1gda76hcix77 . -_:node1gda76hcix77 "VA" . - _:node1gda76hcix78 . -_:node1gda76hcix78 "M" . - "EquipmentBoundaryProfile"@en . - . - "This profile has been built on the basis of the IEC 61970-452 document and adjusted to fit the purpose of the ENTSO-E boundary profile."^^ . - "EquipmentBoundaryVersion"@en . - "Profile version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix79 . -_:node1gda76hcix79 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix80 . -_:node1gda76hcix80 "http://iec.ch/TC57/2013/61970-452/EquipmentBoundary/3" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix81 . -_:node1gda76hcix81 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix82 . -_:node1gda76hcix82 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix83 . -_:node1gda76hcix83 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURIcore"@en . - . - . - . - _:node1gda76hcix84 . -_:node1gda76hcix84 "http://entsoe.eu/CIM/EquipmentBoundary/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/EquipmentBoundary/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "entsoeURIoperation"@en . - . - . - . - _:node1gda76hcix85 . -_:node1gda76hcix85 "http://entsoe.eu/CIM/EquipmentBoundaryOperation/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/EquipmentBoundaryOperation/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix86 . -_:node1gda76hcix86 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix87 . -_:node1gda76hcix87 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix88 . -_:node1gda76hcix88 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix89 . -_:node1gda76hcix89 "EQ_BD" . - "The short name of the profile used in profile documentation."^^ . - . - "ConnectivityNode"@en . - . - "Connectivity nodes are points where terminals of AC conducting equipment are connected together with zero impedance."^^ . - "Operation" . - . - . - . - . - "boundaryPoint"@en . - . - . - . - "Entsoe" . - "Identifies if a node is a BoundaryPoint. If boundaryPoint=true the ConnectivityNode or the TopologicalNode represents a BoundaryPoint. "^^ . - . - . - "fromEndIsoCode"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the ISO code of the region to which the “From” side of the Boundary point belongs to or it is connected to.The ISO code is two characters country code as defined by ISO 3166 (http://www.iso.org/iso/country_codes). The length of the string is 2 characters maximum.The attribute is a required for the Boundary Model Authority Set where this attribute is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "fromEndName"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of a human readable name with length of the string 32 characters maximum. The attribute covers two cases:
    \t
  • if the Boundary point is placed on a tie-line the attribute is used for exchange of the geographical name of the substation to which the “From” side of the tie-line is connected to.
  • \t
  • if the Boundary point is placed in a substation the attribute is used for exchange of the name of the element (e.g. PowerTransformer, ACLineSegment, Switch, etc) to which the “From” side of the Boundary point is connected to.
The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "fromEndNameTso"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the name of the TSO to which the “From” side of the Boundary point belongs to or it is connected to. The length of the string is 32 characters maximum.The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile. "^^ . - . - . - "toEndIsoCode"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the ISO code of the region to which the “To” side of the Boundary point belongs to or it is connected to.The ISO code is two characters country code as defined by ISO 3166 (http://www.iso.org/iso/country_codes). The length of the string is 2 characters maximum.The attribute is a required for the Boundary Model Authority Set where this attribute is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "toEndName"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of a human readable name with length of the string 32 characters maximum. The attribute covers two cases:
    \t
  • if the Boundary point is placed on a tie-line the attribute is used for exchange of the geographical name of the substation to which the “To” side of the tie-line is connected to.
  • \t
  • if the Boundary point is placed in a substation the attribute is used for exchange of the name of the element (e.g. PowerTransformer, ACLineSegment, Switch, etc) to which the “To” side of the Boundary point is connected to.
The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "toEndNameTso"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the name of the TSO to which the “To” side of the Boundary point belongs to or it is connected to. The length of the string is 32 characters maximum.The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile. "^^ . - . - "ConnectivityNodeContainer"@en . - "Container of this connectivity node."^^ . - . - . - . - . - "Yes" . - . - "ConnectivityNodes"@en . - "Connectivity nodes which belong to this connectivity node container."^^ . - . - . - . - . - "No" . - . - "ConnectivityNodeContainer"@en . - . - "A base class for all objects that may contain connectivity nodes or topological nodes."^^ . - . - . - "EquipmentContainer"@en . - "Container of this equipment."^^ . - . - . - . - . - "Yes" . - . - "Equipments"@en . - "Contained equipment."^^ . - . - . - . - . - "No" . - . - "EquipmentContainer"@en . - . - "A modeling construct to provide a root class for containing equipment. "^^ . - . - . - . - "BaseVoltage"@en . - . - "Defines a system base voltage which is referenced. "^^ . - . - . - . - . - "nominalVoltage"@en . - . - . - . - "The power system resource's base voltage."^^ . - . - "Voltage"@en . - "Electrical voltage, can be both AC and DC."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix90 . -_:node1gda76hcix90 "V" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix91 . -_:node1gda76hcix91 "k" . - . - "GeographicalRegion"@en . - . - "A geographical region of a power system network model."^^ . - . - . - . - "Regions"@en . - "All sub-geograhpical regions within this geographical region."^^ . - . - . - . - . - "No" . - . - "Region"@en . - "The geographical region to which this sub-geographical region is within."^^ . - . - . - . - . - "Yes" . - . - . - . - "energyIdentCodeEic"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the EIC code (Energy identification Code). The length of the string is 16 characters as defined by the EIC code.References:"^^ . - . - . - "shortName"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of a human readable short name with length of the string 12 characters maximum."^^ . - . - "SubGeographicalRegion"@en . - . - "A subset of a geographical region of a power system network model."^^ . - . - . - . - "Region"@en . - "The lines within the sub-geographical region."^^ . - . - . - . - . - "Yes" . - . - "Lines"@en . - "The sub-geographical region of the line."^^ . - . - . - . - . - . - "No" . - . - "Connector"@en . - . - "A conductor, or group of conductors, with negligible impedance, that serve to connect other conducting equipment within a single substation and are modelled with a single logical terminal."^^ . - . - . - "EnergySchedulingType"@en . - . - "Used to define the type of generation for scheduling purposes."^^ . - "Entsoe" . - . - . - . - "EnergySource"@en . - "Energy Source of a particular Energy Scheduling Type"^^ . - . - . - . - . - "No" . - . - "EnergySchedulingType"@en . - "Energy Scheduling Type of an Energy Source"^^ . - . - . - . - . - "Yes" . - . - "Junction"@en . - . - "A point where one or more conducting equipments are connected with zero resistance."^^ . - . - . - . - "Line"@en . - . - "Contains equipment beyond a substation belonging to a power transmission line. "^^ . - . - . - . - "EquipmentProfile"@en . - . - "This profile has been built on the basis of the IEC 61970-452 document and adjusted to fit the purpose of the ENTSO-E CGMES."^^ . - "EquipmentVersion"@en . - "Version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix92 . -_:node1gda76hcix92 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURIcore"@en . - . - . - . - _:node1gda76hcix93 . -_:node1gda76hcix93 "http://iec.ch/TC57/2013/61970-452/EquipmentCore/4" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "baseURIoperation"@en . - . - . - . - _:node1gda76hcix94 . -_:node1gda76hcix94 "http://iec.ch/TC57/2013/61970-452/EquipmentOperation/4" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "baseURIshortCircuit"@en . - . - . - . - _:node1gda76hcix95 . -_:node1gda76hcix95 "http://iec.ch/TC57/2013/61970-452/EquipmentShortCircuit/4" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix96 . -_:node1gda76hcix96 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix97 . -_:node1gda76hcix97 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix98 . -_:node1gda76hcix98 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURIcore"@en . - . - . - . - _:node1gda76hcix99 . -_:node1gda76hcix99 "http://entsoe.eu/CIM/EquipmentCore/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/EquipmentCore/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "entsoeURIoperation"@en . - . - . - . - _:node1gda76hcix100 . -_:node1gda76hcix100 "http://entsoe.eu/CIM/EquipmentOperation/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/EquipmentOperation/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "entsoeURIshortCircuit"@en . - . - . - . - _:node1gda76hcix101 . -_:node1gda76hcix101 "http://entsoe.eu/CIM/EquipmentShortCircuit/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/EquipmentShortCircuit/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix102 . -_:node1gda76hcix102 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix103 . -_:node1gda76hcix103 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix104 . -_:node1gda76hcix104 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix105 . -_:node1gda76hcix105 "EQ" . - "The short name of the profile used in profile documentation."^^ . - . - "DC"@en . - . - "ACDCConverter"@en . - . - "A unit with valves for three phases, together with unit control equipment, essential protective and switching devices, DC storage capacitors, phase reactors and auxiliaries, if any, used for conversion."^^ . - . - . - . - "baseS"@en . - . - . - . - "Base apparent power of the converter pole."^^ . - . - _:node1gda76hcix106 . -_:node1gda76hcix106 "VA" . - _:node1gda76hcix107 . -_:node1gda76hcix107 "M" . - . - "idleLoss"@en . - . - . - . - "Active power loss in pole at no power transfer. Converter configuration data used in power flow."^^ . - . - _:node1gda76hcix108 . -_:node1gda76hcix108 "W" . - _:node1gda76hcix109 . -_:node1gda76hcix109 "M" . - . - "maxUdc"@en . - . - . - . - "The maximum voltage on the DC side at which the converter should operate. Converter configuration data used in power flow."^^ . - . - _:node1gda76hcix110 . -_:node1gda76hcix110 "V" . - _:node1gda76hcix111 . -_:node1gda76hcix111 "k" . - . - "minUdc"@en . - . - . - . - "Min allowed converter DC voltage. Converter configuration data used in power flow."^^ . - . - . - "numberOfValves"@en . - . - . - . - "Number of valves in the converter. Used in loss calculations."^^ . - . - . - "ratedUdc"@en . - . - . - . - "Rated converter DC voltage, also called UdN. Converter configuration data used in power flow."^^ . - . - . - "resistiveLoss"@en . - . - . - . - "Converter configuration data used in power flow. Refer to poleLossP."^^ . - . - "Resistance"@en . - "Resistance (real part of impedance)."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix112 . -_:node1gda76hcix112 "ohm" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix113 . -_:node1gda76hcix113 "none" . - . - . - "switchingLoss"@en . - . - . - . - "Switching losses, relative to the base apparent power 'baseS'.Refer to poleLossP."^^ . - . - "ActivePowerPerCurrentFlow"@en . - "CIMDatatype" . - . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix114 . -_:node1gda76hcix114 "none" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix115 . -_:node1gda76hcix115 "A" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix116 . -_:node1gda76hcix116 "M" . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix117 . -_:node1gda76hcix117 "W" . - . - . - "value"@en . - . - . - . - . - . - "valveU0"@en . - . - . - . - "Valve threshold voltage. Forward voltage drop when the valve is conducting. Used in loss calculations, i.e. the switchLoss depend on numberOfValves * valveU0."^^ . - . - "ACDCConverterDCTerminal"@en . - . - "A DC electrical connection point at the AC/DC converter. The AC/DC converter is electrically connected also to the AC side. The AC connection is inherited from the AC conducting equipment in the same way as any other AC equipment. The AC/DC converter DC terminal is separate from generic DC terminal to restrict the connection with the AC side to AC/DC converter and so that no other DC conducting equipment can be connected to the AC side."^^ . - . - . - . - . - "polarity"@en . - . - . - . - "Represents the normal network polarity condition."^^ . - . - "DCPolarityKind"@en . - "Polarity for DC circuits."^^ . - . - . - . - "positive"@en . - "Positive pole."^^ . - . - "middle"@en . - "Middle pole, potentially grounded."^^ . - . - "negative"@en . - "Negative pole."^^ . - . - "CsConverter"@en . - . - "DC side of the current source converter (CSC)."^^ . - . - . - . - . - "maxAlpha"@en . - . - . - . - "Maximum firing angle. CSC configuration data used in power flow."^^ . - . - _:node1gda76hcix118 . -_:node1gda76hcix118 "deg" . - _:node1gda76hcix119 . -_:node1gda76hcix119 "none" . - . - "maxGamma"@en . - . - . - . - "Maximum extinction angle. CSC configuration data used in power flow."^^ . - . - . - "maxIdc"@en . - . - . - . - "The maximum direct current (Id) on the DC side at which the converter should operate. Converter configuration data use in power flow."^^ . - . - _:node1gda76hcix120 . -_:node1gda76hcix120 "A" . - _:node1gda76hcix121 . -_:node1gda76hcix121 "none" . - . - "minAlpha"@en . - . - . - . - "Minimum firing angle. CSC configuration data used in power flow."^^ . - . - . - "minGamma"@en . - . - . - . - "Minimum extinction angle. CSC configuration data used in power flow."^^ . - . - . - "minIdc"@en . - . - . - . - "The minimum direct current (Id) on the DC side at which the converter should operate. CSC configuration data used in power flow."^^ . - . - . - "ratedIdc"@en . - . - . - . - "Rated converter DC current, also called IdN. Converter configuration data used in power flow."^^ . - . - "DCBaseTerminal"@en . - . - "An electrical connection point at a piece of DC conducting equipment. DC terminals are connected at one physical DC node that may have multiple DC terminals connected. A DC node is similar to an AC connectivity node. The model enforces that DC connections are distinct from AC connections. "^^ . - . - . - "DCBreaker"@en . - . - "A breaker within a DC system. "^^ . - . - . - . - "DCBusbar"@en . - . - "A busbar within a DC system."^^ . - . - . - . - "DCChopper"@en . - . - "Low resistance equipment used in the internal DC circuit to balance voltages. It has typically positive and negative pole terminals and a ground."^^ . - . - . - . - "DCConductingEquipment"@en . - . - "The parts of the DC power system that are designed to carry current or that are conductively connected through DC terminals."^^ . - . - . - "DCConverterOperatingModeKind"@en . - "The operating mode of an HVDC bipole."^^ . - . - . - . - "bipolar"@en . - "Bipolar operation."^^ . - . - "monopolarMetallicReturn"@en . - "Monopolar operation with metallic return"^^ . - . - "monopolarGroundReturn"@en . - "Monopolar operation with ground return"^^ . - . - "DCConverterUnit"@en . - . - "Indivisible operative unit comprising all equipment between the point of common coupling on the AC side and the point of common coupling – DC side, essentially one or more converters, together with one or more converter transformers, converter control equipment, essential protective and switching devices and auxiliaries, if any, used for conversion."^^ . - . - . - . - . - "operationMode"@en . - . - . - . - . - "DCDisconnector"@en . - . - "A disconnector within a DC system."^^ . - . - . - . - "DCEquipmentContainer"@en . - . - "A modeling construct to provide a root class for containment of DC as well as AC equipment. The class differ from the EquipmentContaner for AC in that it may also contain DCNodes. Hence it can contain both AC and DC equipment."^^ . - . - . - . - "DCGround"@en . - . - "A ground within a DC system."^^ . - . - . - . - . - "inductance"@en . - . - . - . - "Inductance to ground."^^ . - . - "Inductance"@en . - "Inductive part of reactance (imaginary part of impedance), at rated frequency."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix122 . -_:node1gda76hcix122 "H" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix123 . -_:node1gda76hcix123 "none" . - . - . - "r"@en . - . - . - . - "Resistance to ground."^^ . - . - "DCLine"@en . - . - "Overhead lines and/or cables connecting two or more HVDC substations."^^ . - . - . - . - "DCLineSegment"@en . - . - "A wire or combination of wires not insulated from one another, with consistent electrical characteristics, used to carry direct current between points in the DC region of the power system."^^ . - . - . - . - . - "capacitance"@en . - . - . - . - "Capacitance of the DC line segment. Significant for cables only."^^ . - . - "Capacitance"@en . - "Capacitive part of reactance (imaginary part of impedance), at rated frequency."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix124 . -_:node1gda76hcix124 "F" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix125 . -_:node1gda76hcix125 "none" . - . - . - "inductance"@en . - . - . - . - "Inductance of the DC line segment. Neglectable compared with DCSeriesDevice used for smoothing."^^ . - . - . - "resistance"@en . - . - . - . - "Resistance of the DC line segment."^^ . - . - . - "length"@en . - . - . - . - "Segment length for calculating line section capabilities."^^ . - . - _:node1gda76hcix126 . -_:node1gda76hcix126 "m" . - _:node1gda76hcix127 . -_:node1gda76hcix127 "k" . - "DCNode"@en . - . - "DC nodes are points where terminals of DC conducting equipment are connected together with zero impedance."^^ . - . - . - . - "DCSeriesDevice"@en . - . - "A series device within the DC system, typically a reactor used for filtering or smoothing. Needed for transient and short circuit studies."^^ . - . - . - . - . - "inductance"@en . - . - . - . - "Inductance of the device."^^ . - . - . - "resistance"@en . - . - . - . - "Resistance of the DC device."^^ . - . - . - "ratedUdc"@en . - . - . - . - "Rated DC device voltage. Converter configuration data used in power flow."^^ . - . - "DCShunt"@en . - . - "A shunt device within the DC system, typically used for filtering. Needed for transient and short circuit studies."^^ . - . - . - . - . - "capacitance"@en . - . - . - . - "Capacitance of the DC shunt."^^ . - . - . - "resistance"@en . - . - . - . - "Resistance of the DC device."^^ . - . - . - "ratedUdc"@en . - . - . - . - "Rated DC device voltage. Converter configuration data used in power flow."^^ . - . - "DCSwitch"@en . - . - "A switch within the DC system."^^ . - . - . - . - "DCTerminal"@en . - . - "An electrical connection point to generic DC conducting equipment."^^ . - . - . - . - "PerLengthDCLineParameter"@en . - . - . - . - . - "capacitance"@en . - . - . - . - "Capacitance per unit of length of the DC line segment; significant for cables only."^^ . - . - "CapacitancePerLength"@en . - "Capacitance per unit of length."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix128 . -_:node1gda76hcix128 "F" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix129 . -_:node1gda76hcix129 "none" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix130 . -_:node1gda76hcix130 "m" . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix131 . -_:node1gda76hcix131 "none" . - . - . - "inductance"@en . - . - . - . - "Inductance per unit of length of the DC line segment."^^ . - . - "InductancePerLength"@en . - "Inductance per unit of length."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix132 . -_:node1gda76hcix132 "H" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix133 . -_:node1gda76hcix133 "none" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix134 . -_:node1gda76hcix134 "m" . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix135 . -_:node1gda76hcix135 "none" . - . - . - "resistance"@en . - . - . - . - "Resistance per length of the DC line segment."^^ . - . - "ResistancePerLength"@en . - "Resistance (real part of impedance) per unit of length."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix136 . -_:node1gda76hcix136 "ohm" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix137 . -_:node1gda76hcix137 "none" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix138 . -_:node1gda76hcix138 "m" . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix139 . -_:node1gda76hcix139 "none" . - . - "VsCapabilityCurve"@en . - . - "The P-Q capability curve for a voltage source converter, with P on x-axis and Qmin and Qmax on y1-axis and y2-axis."^^ . - . - . - . - "VsConverter"@en . - . - "DC side of the voltage source converter (VSC)."^^ . - . - . - . - . - "maxModulationIndex"@en . - . - . - . - "The max quotient between the AC converter voltage (Uc) and DC voltage (Ud). A factor typically less than 1. VSC configuration data used in power flow."^^ . - . - . - "maxValveCurrent"@en . - . - . - . - "The maximum current through a valve. This current limit is the basis for calculating the capability diagram. VSC configuration data."^^ . - . - "Topology"@en . - . - "BusNameMarker"@en . - . - "Used to apply user standard names to topology buses. Typically used for \"bus/branch\" case generation. Associated with one or more terminals that are normally connected with the bus name. The associated terminals are normally connected by non-retained switches. For a ring bus station configuration, all busbar terminals in the ring are typically associated. For a breaker and a half scheme, both busbars would normally be associated. For a ring bus, all busbars would normally be associated. For a \"straight\" busbar configuration, normally only the main terminal at the busbar would be associated. "^^ . - . - . - . - . - "priority"@en . - . - . - . - "Priority of bus name marker for use as topology bus name. Use 0 for don t care. Use 1 for highest priority. Use 2 as priority is less than 1 and so on."^^ . - . - "Meas"@en . - . - "Accumulator"@en . - . - "Accumulator represents an accumulated (counted) Measurement, e.g. an energy value."^^ . - "Operation" . - . - . - . - "Measurements"@en . - "A measurement may have zero or more limit ranges defined for it."^^ . - . - . - . - . - "Yes" . - . - "LimitSets"@en . - "The Measurements using the LimitSet."^^ . - . - . - . - . - "No" . - . - "Accumulator"@en . - "The values connected to this measurement."^^ . - . - . - . - . - "Yes" . - . - "AccumulatorValues"@en . - "Measurement to which this value is connected."^^ . - . - . - . - . - "No" . - . - "AccumulatorLimit"@en . - . - "Limit values for Accumulator measurements."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The value to supervise against. The value is positive."^^ . - . - "LimitSet"@en . - "The limit values used for supervision of Measurements."^^ . - . - . - . - . - "Yes" . - . - "Limits"@en . - "The set of limits."^^ . - . - . - . - . - "No" . - . - "AccumulatorLimitSet"@en . - . - "An AccumulatorLimitSet specifies a set of Limits that are associated with an Accumulator measurement."^^ . - "Operation" . - . - . - . - "AccumulatorReset"@en . - . - "This command reset the counter value to zero."^^ . - "Operation" . - . - . - . - "AccumulatorValue"@en . - "The accumulator value that is reset by the command."^^ . - . - . - . - . - "Yes" . - . - "AccumulatorReset"@en . - "The command that reset the accumulator value."^^ . - . - . - . - . - "No" . - . - "AccumulatorValue"@en . - . - "AccumulatorValue represents an accumulated (counted) MeasurementValue."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The value to supervise. The value is positive."^^ . - . - "Analog"@en . - . - "Analog represents an analog Measurement."^^ . - "Operation" . - . - . - . - . - "positiveFlowIn"@en . - . - . - . - "If true then this measurement is an active power, reactive power or current with the convention that a positive value measured at the Terminal means power is flowing into the related PowerSystemResource."^^ . - . - "Analog"@en . - "The values connected to this measurement."^^ . - . - . - . - . - "Yes" . - . - "AnalogValues"@en . - "Measurement to which this value is connected."^^ . - . - . - . - . - "No" . - . - "Measurements"@en . - "A measurement may have zero or more limit ranges defined for it."^^ . - . - . - . - . - "Yes" . - . - "LimitSets"@en . - "The Measurements using the LimitSet."^^ . - . - . - . - . - "No" . - . - "AnalogControl"@en . - . - "An analog control used for supervisory control."^^ . - "Operation" . - . - . - . - "maxValue"@en . - . - . - . - "Normal value range maximum for any of the Control.value. Used for scaling, e.g. in bar graphs."^^ . - . - . - "minValue"@en . - . - . - . - "Normal value range minimum for any of the Control.value. Used for scaling, e.g. in bar graphs."^^ . - . - "AnalogValue"@en . - "The Control variable associated with the MeasurementValue."^^ . - . - . - . - . - "Yes" . - . - "AnalogControl"@en . - "The MeasurementValue that is controlled."^^ . - . - . - . - . - "No" . - . - "AnalogLimit"@en . - . - "Limit values for Analog measurements."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The value to supervise against."^^ . - . - "LimitSet"@en . - "The limit values used for supervision of Measurements."^^ . - . - . - . - . - "Yes" . - . - "Limits"@en . - "The set of limits."^^ . - . - . - . - . - "No" . - . - "AnalogLimitSet"@en . - . - "An AnalogLimitSet specifies a set of Limits that are associated with an Analog measurement."^^ . - "Operation" . - . - . - . - "AnalogValue"@en . - . - "AnalogValue represents an analog MeasurementValue."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The value to supervise."^^ . - . - "Command"@en . - . - "A Command is a discrete control used for supervisory control."^^ . - "Operation" . - . - . - . - . - "normalValue"@en . - . - . - . - "Normal value for Control.value e.g. used for percentage scaling."^^ . - . - . - "value"@en . - . - . - . - "The value representing the actuator output."^^ . - . - "DiscreteValue"@en . - "The Control variable associated with the MeasurementValue."^^ . - . - . - . - . - "Yes" . - . - "Command"@en . - "The MeasurementValue that is controlled."^^ . - . - . - . - . - "No" . - . - "ValueAliasSet"@en . - "The ValueAliasSet used for translation of a Control value to a name."^^ . - . - . - . - . - "Yes" . - . - "Commands"@en . - "The Commands using the set for translation."^^ . - . - . - . - . - "No" . - . - "Control"@en . - . - "Control is used for supervisory/device control. It represents control outputs that are used to change the state in a process, e.g. close or open breaker, a set point value or a raise lower command."^^ . - "Operation" . - . - . - . - "controlType"@en . - . - . - . - "Specifies the type of Control, e.g. BreakerOn/Off, GeneratorVoltageSetPoint, TieLineFlow etc. The ControlType.name shall be unique among all specified types and describe the type."^^ . - . - . - "operationInProgress"@en . - . - . - . - "Indicates that a client is currently sending control commands that has not completed."^^ . - . - . - "timeStamp"@en . - . - . - . - "The last time a control output was sent."^^ . - . - "DateTime"@en . - "Date and time as \"yyyy-mm-ddThh:mm:ss.sss\", which conforms with ISO 8601. UTC time zone is specified as \"yyyy-mm-ddThh:mm:ss.sssZ\". A local timezone relative UTC is specified as \"yyyy-mm-ddThh:mm:ss.sss-hh:mm\". The second component (shown here as \"ss.sss\") could have any number of digits in its fractional part to allow any kind of precision beyond seconds."^^ . - "Primitive" . - . - . - . - "unitMultiplier"@en . - . - . - . - "The unit multiplier of the controlled quantity."^^ . - . - . - "unitSymbol"@en . - . - . - . - "The unit of measure of the controlled quantity."^^ . - . - "PowerSystemResource"@en . - "The controller outputs used to actually govern a regulating device, e.g. the magnetization of a synchronous machine or capacitor bank breaker actuator."^^ . - . - . - . - . - "Yes" . - . - "Controls"@en . - "Regulating device governed by this control output."^^ . - . - . - . - . - "No" . - . - "Discrete"@en . - . - "Discrete represents a discrete Measurement, i.e. a Measurement representing discrete values, e.g. a Breaker position."^^ . - "Operation" . - . - . - . - "Discrete"@en . - "The values connected to this measurement."^^ . - . - . - . - . - "Yes" . - . - "DiscreteValues"@en . - "Measurement to which this value is connected."^^ . - . - . - . - . - "No" . - . - "Discretes"@en . - "The Measurements using the set for translation."^^ . - . - . - . - . - "No" . - . - "ValueAliasSet"@en . - "The ValueAliasSet used for translation of a MeasurementValue.value to a name."^^ . - . - . - . - . - "Yes" . - . - "DiscreteValue"@en . - . - "DiscreteValue represents a discrete MeasurementValue."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The value to supervise."^^ . - . - "Limit"@en . - . - "Specifies one limit value for a Measurement. A Measurement typically has several limits that are kept together by the LimitSet class. The actual meaning and use of a Limit instance (i.e., if it is an alarm or warning limit or if it is a high or low limit) is not captured in the Limit class. However the name of a Limit instance may indicate both meaning and use."^^ . - "Operation" . - . - . - "LimitSet"@en . - . - "Specifies a set of Limits that are associated with a Measurement. A Measurement may have several LimitSets corresponding to seasonal or other changing conditions. The condition is captured in the name and description attributes. The same LimitSet may be used for several Measurements. In particular percentage limits are used this way."^^ . - "Operation" . - . - . - . - "isPercentageLimits"@en . - . - . - . - "Tells if the limit values are in percentage of normalValue or the specified Unit for Measurements and Controls."^^ . - . - "Measurement"@en . - . - "A Measurement represents any measured, calculated or non-measured non-calculated quantity. Any piece of equipment may contain Measurements, e.g. a substation may have temperature measurements and door open indications, a transformer may have oil temperature and tank pressure measurements, a bay may contain a number of power flow measurements and a Breaker may contain a switch status measurement.The PSR - Measurement association is intended to capture this use of Measurement and is included in the naming hierarchy based on EquipmentContainer. The naming hierarchy typically has Measurements as leafs, e.g. Substation-VoltageLevel-Bay-Switch-Measurement.Some Measurements represent quantities related to a particular sensor location in the network, e.g. a voltage transformer (PT) at a busbar or a current transformer (CT) at the bar between a breaker and an isolator. The sensing position is not captured in the PSR - Measurement association. Instead it is captured by the Measurement - Terminal association that is used to define the sensing location in the network topology. The location is defined by the connection of the Terminal to ConductingEquipment.If both a Terminal and PSR are associated, and the PSR is of type ConductingEquipment, the associated Terminal should belong to that ConductingEquipment instance.When the sensor location is needed both Measurement-PSR and Measurement-Terminal are used. The Measurement-Terminal association is never used alone."^^ . - "Operation" . - . - . - . - "measurementType"@en . - . - . - . - "Specifies the type of measurement. For example, this specifies if the measurement represents an indoor temperature, outdoor temperature, bus voltage, line flow, etc."^^ . - . - . - "phases"@en . - . - . - . - "Indicates to which phases the measurement applies and avoids the need to use 'measurementType' to also encode phase information (which would explode the types). The phase information in Measurement, along with 'measurementType' and 'phases' uniquely defines a Measurement for a device, based on normal network phase. Their meaning will not change when the computed energizing phasing is changed due to jumpers or other reasons.If the attribute is missing three phases (ABC) shall be assumed."^^ . - . - "PhaseCode"@en . - "Enumeration of phase identifiers. Allows designation of phases for both transmission and distribution equipment, circuits and loads.Residential and small commercial loads are often served from single-phase, or split-phase, secondary circuits. For example of s12N, phases 1 and 2 refer to hot wires that are 180 degrees out of phase, while N refers to the neutral wire. Through single-phase transformer connections, these secondary circuits may be served from one or two of the primary phases A, B, and C. For three-phase loads, use the A, B, C phase codes instead of s12N."^^ . - . - . - . - "ABCN"@en . - "Phases A, B, C, and N."^^ . - . - "ABC"@en . - "Phases A, B, and C."^^ . - . - "ABN"@en . - "Phases A, B, and neutral."^^ . - . - "ACN"@en . - "Phases A, C and neutral."^^ . - . - "BCN"@en . - "Phases B, C, and neutral."^^ . - . - "AB"@en . - "Phases A and B."^^ . - . - "AC"@en . - "Phases A and C."^^ . - . - "BC"@en . - "Phases B and C."^^ . - . - "AN"@en . - "Phases A and neutral."^^ . - . - "BN"@en . - "Phases B and neutral."^^ . - . - "CN"@en . - "Phases C and neutral."^^ . - . - "A"@en . - "Phase A."^^ . - . - "B"@en . - "Phase B."^^ . - . - "C"@en . - "Phase C."^^ . - . - "N"@en . - "Neutral phase."^^ . - . - "s1N"@en . - "Secondary phase 1 and neutral."^^ . - . - "s2N"@en . - "Secondary phase 2 and neutral."^^ . - . - "s12N"@en . - "Secondary phases 1, 2, and neutral."^^ . - . - "s1"@en . - "Secondary phase 1."^^ . - . - "s2"@en . - "Secondary phase 2."^^ . - . - "s12"@en . - "Secondary phase 1 and 2."^^ . - . - . - "unitSymbol"@en . - . - . - . - "The unit of measure of the measured quantity."^^ . - . - . - "unitMultiplier"@en . - . - . - . - "The unit multiplier of the measured quantity."^^ . - . - "Terminal"@en . - "One or more measurements may be associated with a terminal in the network."^^ . - . - . - . - . - "Yes" . - . - "Measurements"@en . - "Measurements associated with this terminal defining where the measurement is placed in the network topology. It may be used, for instance, to capture the sensor position, such as a voltage transformer (PT) at a busbar or a current transformer (CT) at the bar between a breaker and an isolator."^^ . - . - . - . - . - "No" . - . - "PowerSystemResource"@en . - "The measurements associated with this power system resource."^^ . - . - . - . - . - "Yes" . - . - "Measurements"@en . - "The power system resource that contains the measurement."^^ . - . - . - . - . - "No" . - . - "MeasurementValue"@en . - . - "The current state for a measurement. A state value is an instance of a measurement from a specific source. Measurements can be associated with many state values, each representing a different source for the measurement."^^ . - "Operation" . - . - . - . - "timeStamp"@en . - . - . - . - "The time when the value was last updated"^^ . - . - . - "sensorAccuracy"@en . - . - . - . - "The limit, expressed as a percentage of the sensor maximum, that errors will not exceed when the sensor is used under reference conditions."^^ . - . - "PerCent"@en . - "Percentage on a defined base. For example, specify as 100 to indicate at the defined base."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - "Normally 0 - 100 on a defined base"^^ . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix140 . -_:node1gda76hcix140 "none" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix141 . -_:node1gda76hcix141 "none" . - . - "MeasurementValue"@en . - "A MeasurementValue has a MeasurementValueQuality associated with it."^^ . - . - . - . - . - "Yes" . - . - "MeasurementValueQuality"@en . - "A MeasurementValue has a MeasurementValueQuality associated with it."^^ . - . - . - . - . - "No" . - . - "MeasurementValueSource"@en . - "The MeasurementValues updated by the source."^^ . - . - . - . - . - "Yes" . - . - "MeasurementValues"@en . - "A reference to the type of source that updates the MeasurementValue, e.g. SCADA, CCLink, manual, etc. User conventions for the names of sources are contained in the introduction to IEC 61970-301."^^ . - . - . - . - . - "No" . - . - "MeasurementValueQuality"@en . - . - "Measurement quality flags. Bits 0-10 are defined for substation automation in draft IEC 61850 part 7-3. Bits 11-15 are reserved for future expansion by that document. Bits 16-31 are reserved for EMS applications."^^ . - "Operation" . - . - . - . - "MeasurementValueSource"@en . - . - "MeasurementValueSource describes the alternative sources updating a MeasurementValue. User conventions for how to use the MeasurementValueSource attributes are described in the introduction to IEC 61970-301."^^ . - "Operation" . - . - . - . - "Quality61850"@en . - "Quality flags in this class are as defined in IEC 61850, except for estimatorReplaced, which has been included in this class for convenience."^^ . - "Operation" . - . - . - . - "badReference"@en . - . - . - . - "Measurement value may be incorrect due to a reference being out of calibration."^^ . - . - . - "estimatorReplaced"@en . - . - . - . - "Value has been replaced by State Estimator. estimatorReplaced is not an IEC61850 quality bit but has been put in this class for convenience."^^ . - . - . - "failure"@en . - . - . - . - "This identifier indicates that a supervision function has detected an internal or external failure, e.g. communication failure."^^ . - . - . - "oldData"@en . - . - . - . - "Measurement value is old and possibly invalid, as it has not been successfully updated during a specified time interval."^^ . - . - . - "operatorBlocked"@en . - . - . - . - "Measurement value is blocked and hence unavailable for transmission. "^^ . - . - . - "oscillatory"@en . - . - . - . - "To prevent some overload of the communication it is sensible to detect and suppress oscillating (fast changing) binary inputs. If a signal changes in a defined time (tosc) twice in the same direction (from 0 to 1 or from 1 to 0) then oscillation is detected and the detail quality identifier \"oscillatory\" is set. If it is detected a configured numbers of transient changes could be passed by. In this time the validity status \"questionable\" is set. If after this defined numbers of changes the signal is still in the oscillating state the value shall be set either to the opposite state of the previous stable value or to a defined default value. In this case the validity status \"questionable\" is reset and \"invalid\" is set as long as the signal is oscillating. If it is configured such that no transient changes should be passed by then the validity status \"invalid\" is set immediately in addition to the detail quality identifier \"oscillatory\" (used for status information only)."^^ . - . - . - "outOfRange"@en . - . - . - . - "Measurement value is beyond a predefined range of value."^^ . - . - . - "overFlow"@en . - . - . - . - "Measurement value is beyond the capability of being represented properly. For example, a counter value overflows from maximum count back to a value of zero. "^^ . - . - . - "source"@en . - . - . - . - "Source gives information related to the origin of a value. The value may be acquired from the process, defaulted or substituted."^^ . - . - "Source"@en . - "Source gives information related to the origin of a value."^^ . - . - . - . - "PROCESS"@en . - "The value is provided by input from the process I/O or being calculated from some function."^^ . - . - "DEFAULTED"@en . - "The value contains a default value."^^ . - . - "SUBSTITUTED"@en . - "The value is provided by input of an operator or by an automatic source."^^ . - . - . - "suspect"@en . - . - . - . - "A correlation function has detected that the value is not consitent with other values. Typically set by a network State Estimator."^^ . - . - . - "test"@en . - . - . - . - "Measurement value is transmitted for test purposes."^^ . - . - . - "validity"@en . - . - . - . - "Validity of the measurement value."^^ . - . - "Validity"@en . - "Validity for MeasurementValue."^^ . - . - . - . - "GOOD"@en . - "The value is marked good if no abnormal condition of the acquisition function or the information source is detected."^^ . - . - "QUESTIONABLE"@en . - "The value is marked questionable if a supervision function detects an abnormal behaviour, however the value could still be valid. The client is responsible for determining whether or not values marked \"questionable\" should be used."^^ . - . - "INVALID"@en . - "The value is marked invalid when a supervision function recognises abnormal conditions of the acquisition function or the information source (missing or non-operating updating devices). The value is not defined under this condition. The mark invalid is used to indicate to the client that the value may be incorrect and shall not be used."^^ . - . - "RaiseLowerCommand"@en . - . - "An analog control that increase or decrease a set point value with pulses."^^ . - "Operation" . - . - . - . - "ValueAliasSet"@en . - "The ValueAliasSet used for translation of a Control value to a name."^^ . - . - . - . - . - "Yes" . - . - "RaiseLowerCommands"@en . - "The Commands using the set for translation."^^ . - . - . - . - . - "No" . - . - "SetPoint"@en . - . - "An analog control that issue a set point value."^^ . - "Operation" . - . - . - . - . - "normalValue"@en . - . - . - . - "Normal value for Control.value e.g. used for percentage scaling."^^ . - . - . - "value"@en . - . - . - . - "The value representing the actuator output."^^ . - . - "StringMeasurement"@en . - . - "StringMeasurement represents a measurement with values of type string."^^ . - "Operation" . - . - . - . - "StringMeasurement"@en . - "Measurement to which this value is connected."^^ . - . - . - . - . - "Yes" . - . - "StringMeasurementValues"@en . - "The values connected to this measurement."^^ . - . - . - . - . - "No" . - . - "StringMeasurementValue"@en . - . - "StringMeasurementValue represents a measurement value of type string."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The value to supervise."^^ . - . - "ValueAliasSet"@en . - . - "Describes the translation of a set of values into a name and is intendend to facilitate cusom translations. Each ValueAliasSet has a name, description etc. A specific Measurement may represent a discrete state like Open, Closed, Intermediate etc. This requires a translation from the MeasurementValue.value number to a string, e.g. 0->\"Invalid\", 1->\"Open\", 2->\"Closed\", 3->\"Intermediate\". Each ValueToAlias member in ValueAliasSet.Value describe a mapping for one particular value to a name."^^ . - "Operation" . - . - . - . - "ValueAliasSet"@en . - "The ValueToAlias mappings included in the set."^^ . - . - . - . - . - "Yes" . - . - "Values"@en . - "The ValueAliasSet having the ValueToAlias mappings."^^ . - . - . - . - . - "No" . - . - "ValueToAlias"@en . - . - "Describes the translation of one particular value into a name, e.g. 1 as \"Open\"."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The value that is mapped."^^ . - . - "Production"@en . - . - "The production package is responsible for classes which describe various kinds of generators. These classes also provide production costing information which is used to economically allocate demand among committed units and calculate reserve quantities."^^ . - "EnergySchedulingType"@en . - . - "Used to define the type of generation for scheduling purposes."^^ . - "Entsoe" . - . - . - . - . - . - . - "nominalVoltage"@en . - . - . - . - "Phase-to-phase nominal voltage."^^ . - . - . - "r"@en . - . - . - . - "Positive sequence Thevenin resistance."^^ . - . - . - "r0"@en . - . - . - . - "Zero sequence Thevenin resistance."^^ . - . - . - "rn"@en . - . - . - . - "Negative sequence Thevenin resistance."^^ . - . - . - "voltageAngle"@en . - . - . - . - "Phase angle of a-phase open circuit."^^ . - . - "AngleRadians"@en . - "Phase angle in radians."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix142 . -_:node1gda76hcix142 "rad" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix143 . -_:node1gda76hcix143 "none" . - . - . - "voltageMagnitude"@en . - . - . - . - "Phase-to-phase open circuit voltage magnitude."^^ . - . - . - "x"@en . - . - . - . - "Positive sequence Thevenin reactance."^^ . - . - "Reactance"@en . - "Reactance (imaginary part of impedance), at rated frequency."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix144 . -_:node1gda76hcix144 "ohm" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix145 . -_:node1gda76hcix145 "none" . - . - . - "x0"@en . - . - . - . - "Zero sequence Thevenin reactance."^^ . - . - . - "xn"@en . - . - . - . - "Negative sequence Thevenin reactance."^^ . - . - "FossilFuel"@en . - . - "The fossil fuel consumed by the non-nuclear thermal generating unit. For example, coal, oil, gas, etc. This a the specific fuels that the generating unit can consume."^^ . - . - . - . - . - "fossilFuelType"@en . - . - . - . - "The type of fossil fuel, such as coal, oil, or gas."^^ . - . - "FuelType"@en . - "Type of fuel."^^ . - . - . - . - "coal"@en . - "Generic coal, not including lignite type."^^ . - . - "oil"@en . - "Oil."^^ . - . - "gas"@en . - "Natural gas."^^ . - . - "lignite"@en . - "The fuel is lignite coal. Note that this is a special type of coal, so the other enum of coal is reserved for hard coal types or if the exact type of coal is not known."^^ . - . - "hardCoal"@en . - "Hard coal"^^ . - . - "oilShale"@en . - "Oil Shale"^^ . - . - "GeneratingUnit"@en . - . - "A single or set of synchronous machines for converting mechanical power into alternating-current power. For example, individual machines within a set may be defined for scheduling purposes while a single control signal is derived for the set. In this case there would be a GeneratingUnit for each member of the set and an additional GeneratingUnit corresponding to the set."^^ . - . - . - . - . - "genControlSource"@en . - . - . - . - "The source of controls for a generating unit."^^ . - . - "GeneratorControlSource"@en . - "The source of controls for a generating unit."^^ . - . - . - . - "unavailable"@en . - "Not available."^^ . - . - "offAGC"@en . - "Off of automatic generation control (AGC)."^^ . - . - "onAGC"@en . - "On automatic generation control (AGC)."^^ . - . - "plantControl"@en . - "Plant is controlling."^^ . - . - . - "governorSCD"@en . - . - . - . - "Governor Speed Changer Droop. This is the change in generator power output divided by the change in frequency normalized by the nominal power of the generator and the nominal frequency and expressed in percent and negated. A positive value of speed change droop provides additional generator output upon a drop in frequency."^^ . - . - . - "initialP"@en . - . - . - . - "Default initial active power which is used to store a powerflow result for the initial active power for this unit in this network configuration."^^ . - . - . - "longPF"@en . - . - . - . - "Generating unit long term economic participation factor."^^ . - . - . - "maximumAllowableSpinningReserve"@en . - . - . - . - "Maximum allowable spinning reserve. Spinning reserve will never be considered greater than this value regardless of the current operating point."^^ . - . - . - "maxOperatingP"@en . - . - . - . - "This is the maximum operating active power limit the dispatcher can enter for this unit."^^ . - . - . - "minOperatingP"@en . - . - . - . - "This is the minimum operating active power limit the dispatcher can enter for this unit."^^ . - . - . - "nominalP"@en . - . - . - . - "The nominal power of the generating unit. Used to give precise meaning to percentage based attributes such as the governor speed change droop (governorSCD attribute).The attribute shall be a positive value equal or less than RotatingMachine.ratedS."^^ . - . - . - "ratedGrossMaxP"@en . - . - . - . - "The unit's gross rated maximum capacity (book value)."^^ . - . - . - "ratedGrossMinP"@en . - . - . - . - "The gross rated minimum generation level which the unit can safely operate at while delivering power to the transmission grid."^^ . - . - . - "ratedNetMaxP"@en . - . - . - . - "The net rated maximum capacity determined by subtracting the auxiliary power used to operate the internal plant machinery from the rated gross maximum capacity."^^ . - . - . - "shortPF"@en . - . - . - . - "Generating unit short term economic participation factor."^^ . - . - . - "startupCost"@en . - . - . - . - "The initial startup cost incurred for each start of the GeneratingUnit."^^ . - . - "Money"@en . - "Amount of money."^^ . - "CIMDatatype" . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix146 . -_:node1gda76hcix146 "EUR" . - . - "Currency"@en . - "Monetary currencies. Apologies for this list not being exhaustive."^^ . - . - . - . - "USD"@en . - "US dollar"^^ . - . - "EUR"@en . - "European euro"^^ . - . - "AUD"@en . - "Australian dollar"^^ . - . - "CAD"@en . - "Canadian dollar"^^ . - . - "CHF"@en . - "Swiss francs"^^ . - . - "CNY"@en . - "Chinese yuan renminbi"^^ . - . - "DKK"@en . - "Danish crown"^^ . - . - "GBP"@en . - "British pound"^^ . - . - "JPY"@en . - "Japanese yen"^^ . - . - "NOK"@en . - "Norwegian crown"^^ . - . - "RUR"@en . - "Russian ruble"^^ . - . - "SEK"@en . - "Swedish crown"^^ . - . - "INR"@en . - "India rupees"^^ . - . - "other"@en . - "Another type of currency."^^ . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix147 . -_:node1gda76hcix147 "none" . - . - . - "value"@en . - . - . - . - . - "Decimal"@en . - "Decimal is the base-10 notational system for representing real numbers."^^ . - "Primitive" . - . - . - . - "variableCost"@en . - . - . - . - "The variable cost component of production per unit of ActivePower."^^ . - . - . - "totalEfficiency"@en . - . - . - . - "The efficiency of the unit in converting the fuel into electrical energy."^^ . - . - "GeneratingUnit"@en . - "A generating unit may have a gross active power to net active power curve, describing the losses and auxiliary power requirements of the unit."^^ . - . - . - . - . - "Yes" . - . - "GrossToNetActivePowerCurves"@en . - "A generating unit may have a gross active power to net active power curve, describing the losses and auxiliary power requirements of the unit."^^ . - . - . - . - . - . - "No" . - . - "GrossToNetActivePowerCurve"@en . - . - "Relationship between the generating unit's gross active power output on the X-axis (measured at the terminals of the machine(s)) and the generating unit's net active power output on the Y-axis (based on utility-defined measurements at the power station). Station service loads, when modeled, should be treated as non-conforming bus loads. There may be more than one curve, depending on the auxiliary equipment that is in service."^^ . - "Operation" . - . - . - . - "HydroEnergyConversionKind"@en . - "Specifies the capability of the hydro generating unit to convert energy as a generator or pump."^^ . - . - . - . - "generator"@en . - "Able to generate power, but not able to pump water for energy storage."^^ . - . - "pumpAndGenerator"@en . - "Able to both generate power and pump water for energy storage."^^ . - . - "HydroGeneratingUnit"@en . - . - "A generating unit whose prime mover is a hydraulic turbine (e.g., Francis, Pelton, Kaplan)."^^ . - . - . - . - . - "energyConversionCapability"@en . - . - . - . - "Energy conversion capability for generating."^^ . - . - "HydroPlantStorageKind"@en . - "The type of hydro power plant."^^ . - . - . - . - "runOfRiver"@en . - "Run of river."^^ . - . - "pumpedStorage"@en . - "Pumped storage."^^ . - . - "storage"@en . - "Storage."^^ . - . - "HydroPowerPlant"@en . - . - "A hydro power station which can generate or pump. When generating, the generator turbines receive water from an upper reservoir. When pumping, the pumps receive their water from a lower reservoir."^^ . - . - . - . - . - "hydroPlantStorageType"@en . - . - . - . - "The type of hydro power plant water storage."^^ . - . - "HydroPump"@en . - . - "A synchronous motor-driven pump, typically associated with a pumped storage plant."^^ . - . - . - . - "NuclearGeneratingUnit"@en . - . - "A nuclear generating unit."^^ . - . - . - . - "SolarGeneratingUnit"@en . - . - "A solar thermal generating unit."^^ . - . - . - . - "ThermalGeneratingUnit"@en . - . - "A generating unit whose prime mover could be a steam turbine, combustion turbine, or diesel engine."^^ . - . - . - . - "WindGeneratingUnit"@en . - . - "A wind driven generating unit. May be used to represent a single turbine or an aggregation. "^^ . - . - . - . - . - "windGenUnitType"@en . - . - . - . - "The kind of wind generating unit"^^ . - . - "WindGenUnitKind"@en . - "Kind of wind generating unit."^^ . - . - . - . - "offshore"@en . - "The wind generating unit is located offshore."^^ . - . - "onshore"@en . - "The wind generating unit is located onshore."^^ . - . - "Contains the core PowerSystemResource and ConductingEquipment entities shared by all applications plus common collections of those entities. Not all applications require all the Core entities. This package does not depend on any other package except the Domain package, but most of the other packages have associations and generalizations that depend on it."^^ . - . - "sequenceNumber"@en . - . - . - . - "The orientation of the terminal connections for a multiple terminal conducting equipment. The sequence numbering starts with 1 and additional terminals should follow in increasing order. The first terminal is the \"starting point\" for a two terminal branch."^^ . - . - "BasicIntervalSchedule"@en . - . - "Schedule of values at points in time."^^ . - . - . - . - "startTime"@en . - . - . - . - "The time for the first time point."^^ . - . - . - "value1Unit"@en . - . - . - . - "Value1 units of measure."^^ . - . - . - "value2Unit"@en . - . - . - . - "Value2 units of measure."^^ . - . - "Bay"@en . - . - "A collection of power system resources (within a given substation) including conducting equipment, protection relays, measurements, and telemetry. A bay typically represents a physical grouping related to modularization of equipment."^^ . - "Operation" . - . - . - . - "Bays"@en . - "The bays within this voltage level."^^ . - . - . - . - . - "No" . - . - "VoltageLevel"@en . - "The voltage level containing this bay."^^ . - . - . - . - . - "Yes" . - . - "Terminals"@en . - "The connectivity node to which this terminal connects with zero impedance."^^ . - . - . - . - . - "No" . - . - "ConnectivityNode"@en . - "Terminals interconnected with zero impedance at a this connectivity node. "^^ . - . - . - . - . - "Yes" . - . - "Curve"@en . - . - "A multi-purpose curve or functional relationship between an independent variable (X-axis) and dependent (Y-axis) variables. "^^ . - . - . - . - "curveStyle"@en . - . - . - . - "The style or shape of the curve."^^ . - . - "CurveStyle"@en . - "Style or shape of curve."^^ . - . - . - . - "constantYValue"@en . - "The Y-axis values are assumed constant until the next curve point and prior to the first curve point."^^ . - . - "straightLineYValues"@en . - "The Y-axis values are assumed to be a straight line between values. Also known as linear interpolation."^^ . - . - . - "xUnit"@en . - . - . - . - "The X-axis units of measure."^^ . - . - . - "y1Unit"@en . - . - . - . - "The Y1-axis units of measure."^^ . - . - . - "y2Unit"@en . - . - . - . - "The Y2-axis units of measure."^^ . - . - "CurveData"@en . - "Multi-purpose data points for defining a curve. The use of this generic class is discouraged if a more specific class can be used to specify the x and y axis values along with their specific data types."^^ . - . - . - . - . - "xvalue"@en . - . - . - . - "The data value of the X-axis variable, depending on the X-axis units."^^ . - . - . - "y1value"@en . - . - . - . - "The data value of the first Y-axis variable, depending on the Y-axis units."^^ . - . - . - "y2value"@en . - . - . - . - "The data value of the second Y-axis variable (if present), depending on the Y-axis units."^^ . - . - . - "aggregate"@en . - . - . - . - "The single instance of equipment represents multiple pieces of equipment that have been modeled together as an aggregate. Examples would be power transformers or synchronous machines operating in parallel modeled as a single aggregate power transformer or aggregate synchronous machine. This is not to be used to indicate equipment that is part of a group of interdependent equipment produced by a network production program. "^^ . - . - . - "energyIdentCodeEic"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the EIC code (Energy identification Code). The length of the string is 16 characters as defined by the EIC code.References:"^^ . - . - . - "shortName"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of a human readable short name with length of the string 12 characters maximum."^^ . - . - "RegularIntervalSchedule"@en . - . - "The schedule has time points where the time between them is constant."^^ . - . - . - . - "timeStep"@en . - . - . - . - "The time between each pair of subsequent regular time points in sequence order."^^ . - . - _:node1gda76hcix148 . -_:node1gda76hcix148 "s" . - _:node1gda76hcix149 . -_:node1gda76hcix149 "none" . - . - "endTime"@en . - . - . - . - "The time for the last time point."^^ . - . - "TimePoints"@en . - "The regular interval time point data values that define this schedule."^^ . - . - . - . - . - "No" . - . - "IntervalSchedule"@en . - "Regular interval schedule containing this time point."^^ . - . - . - . - . - "Yes" . - . - "RegularTimePoint"@en . - "Time point for a schedule where the time between the consecutive points is constant."^^ . - "Operation" . - . - . - . - . - "sequenceNumber"@en . - . - . - . - "The position of the regular time point in the sequence. Note that time points don't have to be sequential, i.e. time points may be omitted. The actual time for a RegularTimePoint is computed by multiplying the associated regular interval schedule's time step with the regular time point sequence number and adding the associated schedules start time."^^ . - . - . - "value1"@en . - . - . - . - "The first value at the time. The meaning of the value is defined by the derived type of the associated schedule."^^ . - . - . - "value2"@en . - . - . - . - "The second value at the time. The meaning of the value is defined by the derived type of the associated schedule."^^ . - . - "ReportingGroup"@en . - . - "A reporting group is used for various ad-hoc groupings used for reporting."^^ . - . - . - . - "Substation"@en . - . - "A collection of equipment for purposes other than generation or utilization, through which electric energy in bulk is passed for the purposes of switching or modifying its characteristics. "^^ . - . - . - . - . - "phases"@en . - . - . - . - "Represents the normal network phasing condition.If the attribute is missing three phases (ABC or ABCN) shall be assumed."^^ . - . - "VoltageLevel"@en . - . - "A collection of equipment at one common system voltage forming a switchgear. The equipment typically consist of breakers, busbars, instrumentation, control, regulation and protection devices as well as assemblies of all these."^^ . - . - . - . - . - "highVoltageLimit"@en . - . - . - . - "The bus bar's high voltage limit"^^ . - . - . - "lowVoltageLimit"@en . - . - . - . - "The bus bar's low voltage limit"^^ . - . - "OperationalLimits"@en . - . - "The OperationalLimits package models a specification of limits associated with equipment and other operational entities."^^ . - "ActivePowerLimit"@en . - . - "Limit on active power flow."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "Value of active power limit."^^ . - . - "ApparentPowerLimit"@en . - . - "Apparent power limit."^^ . - "Operation" . - . - . - . - . - "value"@en . - . - . - . - "The apparent power limit."^^ . - . - "CurrentLimit"@en . - . - "Operational limit on current. "^^ . - . - . - . - . - "value"@en . - . - . - . - "Limit on current flow."^^ . - . - "LimitTypeKind"@en . - "The enumeration defines the kinds of the limit types."^^ . - . - . - "Entsoe" . - . - "patl"@en . - "The Permanent Admissible Transmission Loading (PATL) is the loading in Amps, MVA or MW that can be accepted by a network branch for an unlimited duration without any risk for the material.The duration attribute is not used and shall be excluded for the PATL limit type. Hence only one limit value exists for the PATL type."^^ . - . - "patlt"@en . - "Permanent Admissible Transmission Loading Threshold (PATLT) is a value in engineering units defined for PATL and calculated using percentage less than 100 of the PATL type intended to alert operators of an arising condition. The percentage should be given in the name of the OperationalLimitSet. The aceptableDuration is another way to express the severity of the limit."^^ . - . - "tatl"@en . - "Temporarily Admissible Transmission Loading (TATL) which is the loading in Amps, MVA or MW that can be accepted by a branch for a certain limited duration.The TATL can be defined in different ways:
    \t
  • as a fixed percentage of the PATL for a given time (for example, 115% of the PATL that can be accepted during 15 minutes),
    \t
  • pairs of TATL type and Duration calculated for each line taking into account its particular configuration and conditions of functioning (for example, it can define a TATL acceptable during 20 minutes and another one acceptable during 10 minutes).
Such a definition of TATL can depend on the initial operating conditions of the network element (sag situation of a line).The duration attribute can be used define several TATL limit types. Hence multiple TATL limit values may exist having different durations."^^ . - . - "tc"@en . - "Tripping Current (TC) is the ultimate intensity without any delay. It is defined as the threshold the line will trip without any possible remedial actions.The tripping of the network element is ordered by protections against short circuits or by overload protections, but in any case, the activation delay of these protections is not compatible with the reaction delay of an operator (less than one minute).The duration is always zero and the duration attribute may be left out. Hence only one limit value exists for the TC type."^^ . - . - "tct"@en . - "Tripping Current Threshold (TCT) is a value in engineering units defined for TC and calculated using percentage less than 100 of the TC type intended to alert operators of an arising condition. The percentage should be given in the name of the OperationalLimitSet. The aceptableDuration is another way to express the severity of the limit."^^ . - . - "highVoltage"@en . - "Referring to the rating of the equipments, a voltage too high can lead to accelerated ageing or the destruction of the equipment.This limit type may or may not have duration."^^ . - . - "lowVoltage"@en . - "A too low voltage can disturb the normal operation of some protections and transformer equipped with on-load tap changers, electronic power devices or can affect the behaviour of the auxiliaries of generation units.This limit type may or may not have duration."^^ . - . - "OperationalLimit"@en . - . - "A value associated with a specific kind of limit.The sub class value attribute shall be positive.The sub class value attribute is inversely proportional to OperationalLimitType.acceptableDuration (acceptableDuration for short). A pair of value_x and acceptableDuration_x are related to each other as follows:if value_1 > value_2 > value_3 >... thenacceptableDuration_1 < acceptableDuration_2 < acceptableDuration_3 < ...A value_x with direction=\"high\" shall be greater than a value_y with direction=\"low\"."^^ . - . - . - "OperationalLimitDirectionKind"@en . - "The direction attribute describes the side of a limit that is a violation."^^ . - . - . - . - "high"@en . - "High means that a monitored value above the limit value is a violation. If applied to a terminal flow, the positive direction is into the terminal."^^ . - . - "low"@en . - "Low means a monitored value below the limit is a violation. If applied to a terminal flow, the positive direction is into the terminal."^^ . - . - "absoluteValue"@en . - "An absoluteValue limit means that a monitored absolute value above the limit value is a violation."^^ . - . - "OperationalLimitSet"@en . - . - "A set of limits associated with equipment. Sets of limits might apply to a specific temperature, or season for example. A set of limits may contain different severities of limit levels that would apply to the same equipment. The set may contain limits of different types such as apparent power and current limits or high and low voltage limits that are logically applied together as a set."^^ . - . - . - . - "OperationalLimitType"@en . - . - "The operational meaning of a category of limits."^^ . - . - . - . - . - "acceptableDuration"@en . - . - . - . - "The nominal acceptable duration of the limit. Limits are commonly expressed in terms of the a time limit for which the limit is normally acceptable. The actual acceptable duration of a specific limit may depend on other local factors such as temperature or wind speed."^^ . - . - . - "limitType"@en . - . - . - . - "Entsoe" . - "Types of limits defined in the ENTSO-E Operational Handbook Policy 3."^^ . - . - . - "direction"@en . - . - . - . - "The direction of the limit."^^ . - . - "VoltageLimit"@en . - . - "Operational limit applied to voltage."^^ . - . - . - . - . - "value"@en . - . - . - . - "Limit on voltage. High or low limit nature of the limit depends upon the properties of the operational limit type."^^ . - . - "An extension to the Core and Topology package that models information on the electrical characteristics of Transmission and Distribution networks. This package is used by network applications such as State Estimation, Load Flow and Optimal Power Flow. "^^ . - "ACLineSegment"@en . - . - "A wire or combination of wires, with consistent electrical characteristics, building a single electrical system, used to carry alternating current between points in the power system.For symmetrical, transposed 3ph lines, it is sufficient to use attributes of the line segment, which describe impedances and admittances for the entire length of the segment. Additionally impedances can be computed by using length and associated per length impedances.The BaseVoltage at the two ends of ACLineSegments in a Line shall have the same BaseVoltage.nominalVoltage. However, boundary lines may have slightly different BaseVoltage.nominalVoltages and variation is allowed. Larger voltage difference in general requires use of an equivalent branch."^^ . - . - . - . - "Susceptance"@en . - "Imaginary part of admittance."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix150 . -_:node1gda76hcix150 "S" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix151 . -_:node1gda76hcix151 "none" . - . - . - "bch"@en . - . - . - . - "Positive sequence shunt (charging) susceptance, uniformly distributed, of the entire line section. This value represents the full charging over the full length of the line."^^ . - . - "Conductance"@en . - "Factor by which voltage must be multiplied to give corresponding power lost from a circuit. Real part of admittance."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix152 . -_:node1gda76hcix152 "S" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix153 . -_:node1gda76hcix153 "none" . - . - . - "gch"@en . - . - . - . - "Positive sequence shunt (charging) conductance, uniformly distributed, of the entire line section."^^ . - . - . - "r"@en . - . - . - . - "Positive sequence series resistance of the entire line section."^^ . - . - _:node1gda76hcix154 . -_:node1gda76hcix154 "none" . - _:node1gda76hcix155 . -_:node1gda76hcix155 "degC" . - . - "x"@en . - . - . - . - "Positive sequence series reactance of the entire line section."^^ . - . - . - . - "nominalFrequency"@en . - . - . - . - "Nameplate data indicates if the machine is 50 or 60 Hz."^^ . - . - _:node1gda76hcix156 . -_:node1gda76hcix156 "Hz" . - _:node1gda76hcix157 . -_:node1gda76hcix157 "none" . - . - "nominalSpeed"@en . - . - . - . - "Nameplate data. Depends on the slip and number of pole pairs."^^ . - . - "RotationSpeed"@en . - "Number of revolutions per second."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix158 . -_:node1gda76hcix158 "none" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix159 . -_:node1gda76hcix159 "none" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix160 . -_:node1gda76hcix160 "s" . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix161 . -_:node1gda76hcix161 "none" . - . - "Breaker"@en . - . - "A mechanical switching device capable of making, carrying, and breaking currents under normal circuit conditions and also making, carrying for a specified time, and breaking currents under specified abnormal circuit conditions e.g. those of short circuit."^^ . - . - . - . - "BusbarSection"@en . - . - "A conductor, or group of conductors, with negligible impedance, that serve to connect other conducting equipment within a single substation.Voltage measurements are typically obtained from VoltageTransformers that are connected to busbar sections. A bus bar section may have many physical terminals but for analysis is modelled with exactly one logical terminal."^^ . - . - . - . - "Conductor"@en . - . - "Combination of conducting material with consistent electrical characteristics, building a single electrical system, used to carry current between points in the power system. "^^ . - . - . - . - "length"@en . - . - . - . - "Segment length for calculating line section capabilities"^^ . - . - "Disconnector"@en . - . - "A manually operated or motor operated mechanical switching device used for changing the connections in a circuit, or for isolating a circuit or equipment from a source of power. It is required to open or close circuits when negligible current is broken or made. "^^ . - . - . - . - . - . - "pfixed"@en . - . - . - . - "Operation" . - "Active power of the load that is a fixed quantity. Load sign convention is used, i.e. positive sign means flow out from a node."^^ . - . - . - "pfixedPct"@en . - . - . - . - "Operation" . - "Fixed active power as per cent of load group fixed active power. Load sign convention is used, i.e. positive sign means flow out from a node."^^ . - . - . - "qfixed"@en . - . - . - . - "Operation" . - "Reactive power of the load that is a fixed quantity. Load sign convention is used, i.e. positive sign means flow out from a node."^^ . - . - "ReactivePower"@en . - "Product of RMS value of the voltage and the RMS value of the quadrature component of the current."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix162 . -_:node1gda76hcix162 "VAr" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix163 . -_:node1gda76hcix163 "M" . - . - . - "qfixedPct"@en . - . - . - . - "Operation" . - "Fixed reactive power as per cent of load group fixed reactive power. Load sign convention is used, i.e. positive sign means flow out from a node."^^ . - . - "ExternalNetworkInjection"@en . - . - "This class represents external network and it is used for IEC 60909 calculations."^^ . - . - . - . - . - "governorSCD"@en . - . - . - . - "Power Frequency Bias. This is the change in power injection divided by the change in frequency and negated. A positive value of the power frequency bias provides additional power injection upon a drop in frequency."^^ . - . - "ActivePowerPerFrequency"@en . - "Active power variation with frequency."^^ . - "CIMDatatype" . - . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix164 . -_:node1gda76hcix164 "none" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix165 . -_:node1gda76hcix165 "Hz" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix166 . -_:node1gda76hcix166 "M" . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix167 . -_:node1gda76hcix167 "W" . - . - . - "value"@en . - . - . - . - . - . - "maxP"@en . - . - . - . - "Maximum active power of the injection."^^ . - . - . - "maxQ"@en . - . - . - . - "Not for short circuit modelling; It is used for modelling of infeed for load flow exchange. If maxQ and minQ are not used ReactiveCapabilityCurve can be used "^^ . - . - . - "minP"@en . - . - . - . - "Minimum active power of the injection."^^ . - . - . - "minQ"@en . - . - . - . - "Not for short circuit modelling; It is used for modelling of infeed for load flow exchange. If maxQ and minQ are not used ReactiveCapabilityCurve can be used"^^ . - . - _:node1gda76hcix168 . -_:node1gda76hcix168 "none" . - _:node1gda76hcix169 . -_:node1gda76hcix169 "none" . - "Ground"@en . - . - "A point where the system is grounded used for connecting conducting equipment to ground. The power system model can have any number of grounds."^^ . - "ShortCircuit" . - "Operation" . - . - . - . - "GroundDisconnector"@en . - . - "A manually operated or motor operated mechanical switching device used for isolating a circuit or equipment from ground."^^ . - "ShortCircuit" . - "Operation" . - . - . - . - "LinearShuntCompensator"@en . - . - "A linear shunt compensator has banks or sections with equal admittance values."^^ . - . - . - . - . - "bPerSection"@en . - . - . - . - "Positive sequence shunt (charging) susceptance per section"^^ . - . - . - "gPerSection"@en . - . - . - . - "Positive sequence shunt (charging) conductance per section"^^ . - . - "LoadBreakSwitch"@en . - . - "A mechanical switching device capable of making, carrying, and breaking currents under normal operating conditions."^^ . - . - . - . - "NonlinearShuntCompensator"@en . - . - "A non linear shunt compensator has bank or section admittance values that differs."^^ . - . - . - . - "NonlinearShuntCompensatorPoint"@en . - "A non linear shunt compensator bank or section admittance value."^^ . - . - . - . - . - "b"@en . - . - . - . - "Positive sequence shunt (charging) susceptance per section"^^ . - . - . - "g"@en . - . - . - . - "Positive sequence shunt (charging) conductance per section"^^ . - . - . - "sectionNumber"@en . - . - . - . - "The number of the section."^^ . - . - "PetersenCoilModeKind"@en . - "The mode of operation for a Petersen coil."^^ . - . - . - . - "fixed"@en . - "Fixed position."^^ . - . - "manual"@en . - "Manual positioning."^^ . - . - "automaticPositioning"@en . - "Automatic positioning."^^ . - . - "PhaseTapChanger"@en . - . - "A transformer phase shifting tap model that controls the phase angle difference across the power transformer and potentially the active power flow through the power transformer. This phase tap model may also impact the voltage magnitude."^^ . - . - . - "PhaseTapChangerAsymmetrical"@en . - . - "Describes the tap model for an asymmetrical phase shifting transformer in which the difference voltage vector adds to the primary side voltage. The angle between the primary side voltage and the difference voltage is named the winding connection angle. The phase shift depends on both the difference voltage magnitude and the winding connection angle."^^ . - . - . - . - . - "windingConnectionAngle"@en . - . - . - . - "The phase angle between the in-phase winding and the out-of -phase winding used for creating phase shift. The out-of-phase winding produces what is known as the difference voltage. Setting this angle to 90 degrees is not the same as a symmemtrical transformer."^^ . - . - "PhaseTapChangerLinear"@en . - . - "Describes a tap changer with a linear relation between the tap step and the phase angle difference across the transformer. This is a mathematical model that is an approximation of a real phase tap changer.The phase angle is computed as stepPhaseShitfIncrement times the tap position.The secondary side voltage magnitude is the same as at the primary side."^^ . - . - . - . - . - "stepPhaseShiftIncrement"@en . - . - . - . - "Phase shift per step position. A positive value indicates a positive phase shift from the winding where the tap is located to the other winding (for a two-winding transformer).The actual phase shift increment might be more accurately computed from the symmetrical or asymmetrical models or a tap step table lookup if those are available."^^ . - . - . - "xMax"@en . - . - . - . - "The reactance depend on the tap position according to a \"u\" shaped curve. The maximum reactance (xMax) appear at the low and high tap positions."^^ . - . - . - "xMin"@en . - . - . - . - "The reactance depend on the tap position according to a \"u\" shaped curve. The minimum reactance (xMin) appear at the mid tap position."^^ . - . - "PhaseTapChangerNonLinear"@en . - . - "The non-linear phase tap changer describes the non-linear behavior of a phase tap changer. This is a base class for the symmetrical and asymmetrical phase tap changer models. The details of these models can be found in the IEC 61970-301 document."^^ . - . - . - . - "voltageStepIncrement"@en . - . - . - . - "The voltage step increment on the out of phase winding specified in percent of nominal voltage of the transformer end."^^ . - . - . - "xMax"@en . - . - . - . - "The reactance depend on the tap position according to a \"u\" shaped curve. The maximum reactance (xMax) appear at the low and high tap positions."^^ . - . - . - "xMin"@en . - . - . - . - "The reactance depend on the tap position according to a \"u\" shaped curve. The minimum reactance (xMin) appear at the mid tap position."^^ . - . - "PhaseTapChangerSymmetrical"@en . - . - "Describes a symmetrical phase shifting transformer tap model in which the secondary side voltage magnitude is the same as at the primary side. The difference voltage magnitude is the base in an equal-sided triangle where the sides corresponds to the primary and secondary voltages. The phase angle difference corresponds to the top angle and can be expressed as twice the arctangent of half the total difference voltage."^^ . - . - . - . - "PhaseTapChangerTable"@en . - . - "Describes a tabular curve for how the phase angle difference and impedance varies with the tap step."^^ . - . - . - . - "PhaseTapChangerTablePoint"@en . - . - "Describes each tap step in the phase tap changer tabular curve."^^ . - . - . - . - . - "angle"@en . - . - . - . - "The angle difference in degrees."^^ . - . - "PhaseTapChangerTabular"@en . - . - . - . - . - "PowerTransformer"@en . - . - "An electrical device consisting of two or more coupled windings, with or without a magnetic core, for introducing mutual coupling between electric circuits. Transformers can be used to control voltage and phase shift (active power flow).A power transformer may be composed of separate transformer tanks that need not be identical.A power transformer can be modeled with or without tanks and is intended for use in both balanced and unbalanced representations. A power transformer typically has two terminals, but may have one (grounding), three or more terminals.The inherited association ConductingEquipment.BaseVoltage should not be used. The association from TransformerEnd to BaseVoltage should be used instead."^^ . - . - . - . - "PowerTransformerEnd"@en . - . - "A PowerTransformerEnd is associated with each Terminal of a PowerTransformer.The impedance values r, r0, x, and x0 of a PowerTransformerEnd represents a star equivalent as follows1) for a two Terminal PowerTransformer the high voltage PowerTransformerEnd has non zero values on r, r0, x, and x0 while the low voltage PowerTransformerEnd has zero values for r, r0, x, and x0.2) for a three Terminal PowerTransformer the three PowerTransformerEnds represents a star equivalent with each leg in the star represented by r, r0, x, and x0 values.3) for a PowerTransformer with more than three Terminals the PowerTransformerEnd impedance values cannot be used. Instead use the TransformerMeshImpedance or split the transformer into multiple PowerTransformers."^^ . - . - . - . - . - "b"@en . - . - . - . - "Magnetizing branch susceptance (B mag). The value can be positive or negative."^^ . - . - . - "connectionKind"@en . - . - . - . - "Kind of connection."^^ . - . - "WindingConnection"@en . - "Winding connection type."^^ . - . - . - . - "D"@en . - "Delta"^^ . - . - "Y"@en . - "Wye"^^ . - . - "Z"@en . - "ZigZag"^^ . - . - "Yn"@en . - "Wye, with neutral brought out for grounding."^^ . - . - "Zn"@en . - "ZigZag, with neutral brought out for grounding."^^ . - . - "A"@en . - "Autotransformer common winding"^^ . - . - "I"@en . - "Independent winding, for single-phase connections"^^ . - . - . - "ratedS"@en . - . - . - . - "Normal apparent power rating.The attribute shall be a positive value. For a two-winding transformer the values for the high and low voltage sides shall be identical. "^^ . - . - . - "g"@en . - . - . - . - "Magnetizing branch conductance."^^ . - . - . - "ratedU"@en . - . - . - . - "Rated voltage: phase-phase for three-phase windings, and either phase-phase or phase-neutral for single-phase windings.A high voltage side, as given by TransformerEnd.endNumber, shall have a ratedU that is greater or equal than ratedU for the lower voltage sides."^^ . - . - . - "r"@en . - . - . - . - "Resistance (star-model) of the transformer end.The attribute shall be equal or greater than zero for non-equivalent transformers."^^ . - . - . - "x"@en . - . - . - . - "Positive sequence series reactance (star-model) of the transformer end."^^ . - . - "ProtectedSwitch"@en . - . - "A ProtectedSwitch is a switching device that can be operated by ProtectionEquipment."^^ . - . - . - "RatioTapChanger"@en . - . - "A tap changer that changes the voltage ratio impacting the voltage magnitude but not the phase angle across the transformer."^^ . - . - . - . - . - "tculControlMode"@en . - . - . - . - "Specifies the regulation control mode (voltage or reactive) of the RatioTapChanger."^^ . - . - "TransformerControlMode"@en . - "Control modes for a transformer."^^ . - . - . - . - "volt"@en . - "Voltage control"^^ . - . - "reactive"@en . - "Reactive power flow control"^^ . - . - . - "stepVoltageIncrement"@en . - . - . - . - "Tap step increment, in per cent of nominal voltage, per step position."^^ . - . - "RatioTapChangerTable"@en . - . - "Describes a curve for how the voltage magnitude and impedance varies with the tap step. "^^ . - . - . - . - "RatioTapChangerTablePoint"@en . - . - "Describes each tap step in the ratio tap changer tabular curve."^^ . - . - . - . - "ReactiveCapabilityCurve"@en . - . - "Reactive power rating envelope versus the synchronous machine's active power, in both the generating and motoring modes. For each active power value there is a corresponding high and low reactive power limit value. Typically there will be a separate curve for each coolant condition, such as hydrogen pressure. The Y1 axis values represent reactive minimum and the Y2 axis values represent reactive maximum."^^ . - . - . - . - "RegulatingControl"@en . - . - "Specifies a set of equipment that works together to control a power system quantity such as voltage or flow.Remote bus voltage control is possible by specifying the controlled terminal located at some place remote from the controlling equipment.In case multiple equipment, possibly of different types, control same terminal there must be only one RegulatingControl at that terminal. The most specific subtype of RegulatingControl shall be used in case such equipment participate in the control, e.g. TapChangerControl for tap changers.For flow control load sign convention is used, i.e. positive sign means flow out from a TopologicalNode (bus) into the conducting equipment."^^ . - . - . - . - . - "mode"@en . - . - . - . - "The regulating control mode presently available. This specification allows for determining the kind of regulation without need for obtaining the units from a schedule."^^ . - . - "RegulatingControlModeKind"@en . - "The kind of regulation model. For example regulating voltage, reactive power, active power, etc."^^ . - . - . - . - "voltage"@en . - "Voltage is specified."^^ . - . - "activePower"@en . - "Active power is specified."^^ . - . - "reactivePower"@en . - "Reactive power is specified."^^ . - . - "currentFlow"@en . - "Current flow is specified."^^ . - . - "admittance"@en . - "Admittance is specified."^^ . - . - "timeScheduled"@en . - "Control switches on/off by time of day. The times may change on the weekend, or in different seasons."^^ . - . - "temperature"@en . - "Control switches on/off based on the local temperature (i.e., a thermostat)."^^ . - . - "powerFactor"@en . - "Power factor is specified."^^ . - . - "RegulatingControl"@en . - "Regulating controls that have this Schedule."^^ . - . - . - . - . - "Yes" . - . - "RegulationSchedule"@en . - "Schedule for this Regulating regulating control."^^ . - . - . - . - . - "No" . - . - "RegulationSchedule"@en . - . - "A pre-established pattern over time for a controlled variable, e.g., busbar voltage."^^ . - "Operation" . - . - . - . - . - "ratedPowerFactor"@en . - . - . - . - "Power factor (nameplate data). It is primarily used for short circuit data exchange according to IEC 60909."^^ . - . - . - "ratedS"@en . - . - . - . - "Nameplate apparent power rating for the unit.The attribute shall have a positive value."^^ . - . - . - "ratedU"@en . - . - . - . - "Rated voltage (nameplate data, Ur in IEC 60909-0). It is primarily used for short circuit data exchange according to IEC 60909."^^ . - . - "SeriesCompensator"@en . - . - "A Series Compensator is a series capacitor or reactor or an AC transmission line without charging susceptance. It is a two terminal device."^^ . - . - . - . - . - "r"@en . - . - . - . - "Positive sequence resistance."^^ . - . - . - "x"@en . - . - . - . - "Positive sequence reactance."^^ . - . - . - "varistorPresent"@en . - . - . - . - "Describe if a metal oxide varistor (mov) for over voltage protection is configured at the series compensator."^^ . - . - . - "varistorRatedCurrent"@en . - . - . - . - "The maximum current the varistor is designed to handle at specified duration."^^ . - . - . - "varistorVoltageThreshold"@en . - . - . - . - "The dc voltage at which the varistor start conducting."^^ . - . - "ShortCircuitRotorKind"@en . - "Type of rotor, used by short circuit applications."^^ . - . - . - . - "salientPole1"@en . - "Salient pole 1 in the IEC 60909"^^ . - . - "salientPole2"@en . - "Salient pole 2 in IEC 60909"^^ . - . - "turboSeries1"@en . - "Turbo Series 1 in the IEC 60909"^^ . - . - "turboSeries2"@en . - "Turbo series 2 in IEC 60909"^^ . - . - "ShuntCompensator"@en . - . - "A shunt capacitor or reactor or switchable bank of shunt capacitors or reactors. A section of a shunt compensator is an individual capacitor or reactor. A negative value for reactivePerSection indicates that the compensator is a reactor. ShuntCompensator is a single terminal device. Ground is implied."^^ . - . - . - . - "aVRDelay"@en . - . - . - . - "Time delay required for the device to be connected or disconnected by automatic voltage regulation (AVR)."^^ . - . - . - "grounded"@en . - . - . - . - "Used for Yn and Zn connections. True if the neutral is solidly grounded."^^ . - . - . - "maximumSections"@en . - . - . - . - "The maximum number of sections that may be switched in. "^^ . - . - . - "nomU"@en . - . - . - . - "The voltage at which the nominal reactive power may be calculated. This should normally be within 10% of the voltage at which the capacitor is connected to the network."^^ . - . - . - "normalSections"@en . - . - . - . - "The normal number of sections switched in."^^ . - . - . - "switchOnCount"@en . - . - . - . - "The switch on count since the capacitor count was last reset or initialized."^^ . - . - . - "switchOnDate"@en . - . - . - . - "The date and time when the capacitor bank was last switched on."^^ . - . - . - "voltageSensitivity"@en . - . - . - . - "Voltage sensitivity required for the device to regulate the bus voltage, in voltage/reactive power."^^ . - . - "VoltagePerReactivePower"@en . - "Voltage variation with reactive power."^^ . - "CIMDatatype" . - . - . - . - "value"@en . - . - . - . - . - . - "unit"@en . - . - . - . - _:node1gda76hcix170 . -_:node1gda76hcix170 "V" . - . - . - "denominatorMultiplier"@en . - . - . - . - _:node1gda76hcix171 . -_:node1gda76hcix171 "M" . - . - . - "multiplier"@en . - . - . - . - _:node1gda76hcix172 . -_:node1gda76hcix172 "k" . - . - . - "denominatorUnit"@en . - . - . - . - _:node1gda76hcix173 . -_:node1gda76hcix173 "VAr" . - . - "StaticVarCompensator"@en . - . - "A facility for providing variable and controllable shunt reactive power. The SVC typically consists of a stepdown transformer, filter, thyristor-controlled reactor, and thyristor-switched capacitor arms.The SVC may operate in fixed MVar output mode or in voltage control mode. When in voltage control mode, the output of the SVC will be proportional to the deviation of voltage at the controlled bus from the voltage setpoint. The SVC characteristic slope defines the proportion. If the voltage at the controlled bus is equal to the voltage setpoint, the SVC MVar output is zero."^^ . - . - . - . - . - "capacitiveRating"@en . - . - . - . - "Maximum available capacitive reactance."^^ . - . - . - "inductiveRating"@en . - . - . - . - "Maximum available inductive reactance."^^ . - . - . - "slope"@en . - . - . - . - "The characteristics slope of an SVC defines how the reactive power output changes in proportion to the difference between the regulated bus voltage and the voltage setpoint."^^ . - . - . - "sVCControlMode"@en . - . - . - . - "SVC control mode."^^ . - . - "SVCControlMode"@en . - "Static VAr Compensator control mode."^^ . - . - . - . - "reactivePower"@en . - . - "voltage"@en . - . - . - "voltageSetPoint"@en . - . - . - . - "The reactive power output of the SVC is proportional to the difference between the voltage at the regulated bus and the voltage setpoint. When the regulated bus voltage is equal to the voltage setpoint, the reactive power output is zero."^^ . - . - "Switch"@en . - . - "A generic device designed to close, or open, or both, one or more electric circuits. All switches are two terminal devices including grounding switches."^^ . - . - . - . - . - "normalOpen"@en . - . - . - . - "The attribute is used in cases when no Measurement for the status value is present. If the Switch has a status measurement the Discrete.normalValue is expected to match with the Switch.normalOpen."^^ . - . - . - "ratedCurrent"@en . - . - . - . - "The maximum continuous current carrying capacity in amps governed by the device material and construction."^^ . - . - . - "retained"@en . - . - . - . - "Branch is retained in a bus branch model. The flow through retained switches will normally be calculated in power flow."^^ . - . - "Switch"@en . - "A Switch can be associated with SwitchSchedules."^^ . - . - . - . - . - "Yes" . - . - "SwitchSchedules"@en . - "A SwitchSchedule is associated with a Switch."^^ . - . - . - . - . - "No" . - . - "SwitchSchedule"@en . - . - "A schedule of switch positions. If RegularTimePoint.value1 is 0, the switch is open. If 1, the switch is closed. "^^ . - "Operation" . - . - . - . - . - . - "maxQ"@en . - . - . - . - "Maximum reactive power limit. This is the maximum (nameplate) limit for the unit."^^ . - . - . - "minQ"@en . - . - . - . - "Minimum reactive power limit for the unit."^^ . - . - . - "qPercent"@en . - . - . - . - "Percent of the coordinated reactive control that comes from this machine."^^ . - . - . - "type"@en . - . - . - . - "Modes that this synchronous machine can operate in."^^ . - . - "SynchronousMachineKind"@en . - "Synchronous machine type."^^ . - . - . - . - "generator"@en . - . - "condenser"@en . - . - "generatorOrCondenser"@en . - . - "motor"@en . - . - "generatorOrMotor"@en . - . - "motorOrCondenser"@en . - . - "generatorOrCondenserOrMotor"@en . - . - "TapChanger"@en . - . - "Mechanism for changing transformer winding tap positions."^^ . - . - . - . - "highStep"@en . - . - . - . - "Highest possible tap step position, advance from neutral.The attribute shall be greater than lowStep."^^ . - . - . - "lowStep"@en . - . - . - . - "Lowest possible tap step position, retard from neutral"^^ . - . - . - "ltcFlag"@en . - . - . - . - "Specifies whether or not a TapChanger has load tap changing capabilities."^^ . - . - . - "neutralStep"@en . - . - . - . - "The neutral tap step position for this winding.The attribute shall be equal or greater than lowStep and equal or less than highStep."^^ . - . - . - "neutralU"@en . - . - . - . - "Voltage at which the winding operates at the neutral tap setting."^^ . - . - . - "normalStep"@en . - . - . - . - "The tap step position used in \"normal\" network operation for this winding. For a \"Fixed\" tap changer indicates the current physical tap setting.The attribute shall be equal or greater than lowStep and equal or less than highStep."^^ . - . - "TapSchedules"@en . - "A TapSchedule is associated with a TapChanger."^^ . - . - . - . - . - "No" . - . - "TapChanger"@en . - "A TapChanger can have TapSchedules."^^ . - . - . - . - . - "Yes" . - . - "TapChangerControl"@en . - . - "Describes behavior specific to tap changers, e.g. how the voltage at the end of a line varies with the load level and compensation of the voltage drop by tap adjustment."^^ . - . - . - . - "TapChangerTablePoint"@en . - . - . - . - . - "b"@en . - . - . - . - "The magnetizing branch susceptance deviation in percent of nominal value. The actual susceptance is calculated as follows:calculated magnetizing susceptance = b(nominal) * (1 + b(from this class)/100). The b(nominal) is defined as the static magnetizing susceptance on the associated power transformer end or ends. This model assumes the star impedance (pi model) form."^^ . - . - . - "g"@en . - . - . - . - "The magnetizing branch conductance deviation in percent of nominal value. The actual conductance is calculated as follows:calculated magnetizing conductance = g(nominal) * (1 + g(from this class)/100). The g(nominal) is defined as the static magnetizing conductance on the associated power transformer end or ends. This model assumes the star impedance (pi model) form."^^ . - . - . - "r"@en . - . - . - . - "The resistance deviation in percent of nominal value. The actual reactance is calculated as follows:calculated resistance = r(nominal) * (1 + r(from this class)/100). The r(nominal) is defined as the static resistance on the associated power transformer end or ends. This model assumes the star impedance (pi model) form."^^ . - . - . - "ratio"@en . - . - . - . - "The voltage ratio in per unit. Hence this is a value close to one."^^ . - . - . - "step"@en . - . - . - . - "The tap step."^^ . - . - . - "x"@en . - . - . - . - "The series reactance deviation in percent of nominal value. The actual reactance is calculated as follows:calculated reactance = x(nominal) * (1 + x(from this class)/100). The x(nominal) is defined as the static series reactance on the associated power transformer end or ends. This model assumes the star impedance (pi model) form."^^ . - . - "TapSchedule"@en . - . - "A pre-established pattern over time for a tap step."^^ . - "Operation" . - . - . - . - "TransformerEnd"@en . - . - "A conducting connection point of a power transformer. It corresponds to a physical transformer winding terminal. In earlier CIM versions, the TransformerWinding class served a similar purpose, but this class is more flexible because it associates to terminal but is not a specialization of ConductingEquipment."^^ . - . - . - . - "endNumber"@en . - . - . - . - "Number for this transformer end, corresponding to the end's order in the power transformer vector group or phase angle clock number. Highest voltage winding should be 1. Each end within a power transformer should have a unique subsequent end number. Note the transformer end number need not match the terminal sequence number."^^ . - . - "LoadModel"@en . - . - "This package is responsible for modeling the energy consumers and the system load as curves and associated curve data. Special circumstances that may affect the load, such as seasons and daytypes, are also included here.This information is used by Load Forecasting and Load Management."^^ . - "ConformLoad"@en . - . - "ConformLoad represent loads that follow a daily load change pattern where the pattern can be used to scale the load with a system load."^^ . - . - . - . - "ConformLoadGroup"@en . - . - "A group of loads conforming to an allocation pattern. "^^ . - . - . - . - "ConformLoadSchedule"@en . - . - "A curve of load versus time (X-axis) showing the active power values (Y1-axis) and reactive power (Y2-axis) for each unit of the period covered. This curve represents a typical pattern of load over the time period for a given day type and season."^^ . - . - . - . - "DayType"@en . - . - "Group of similar days. For example it could be used to represent weekdays, weekend, or holidays."^^ . - "Operation" . - . - . - . - "DayType"@en . - "Schedules that use this DayType."^^ . - . - . - . - . - "Yes" . - . - "SeasonDayTypeSchedules"@en . - "DayType for the Schedule."^^ . - . - . - . - . - "No" . - . - "EnergyArea"@en . - . - "Describes an area having energy production or consumption. Specializations are intended to support the load allocation function as typically required in energy management systems or planning studies to allocate hypothesized load levels to individual load points for power flow analysis. Often the energy area can be linked to both measured and forecast load levels."^^ . - "Operation" . - . - . - "EnergyArea"@en . - "The energy area that is forecast from this control area specification."^^ . - . - . - . - . - "Yes" . - . - "Operation" . - "ControlArea"@en . - "The control area specification that is used for the load forecast."^^ . - . - . - . - . - "No" . - . - "Operation" . - "LoadArea"@en . - . - "The class is the root or first level in a hierarchical structure for grouping of loads for the purpose of load flow load scaling."^^ . - "Operation" . - . - . - . - "SubLoadAreas"@en . - "The SubLoadAreas in the LoadArea."^^ . - . - . - . - . - "No" . - . - "LoadArea"@en . - "The LoadArea where the SubLoadArea belongs."^^ . - . - . - . - . - "Yes" . - . - "LoadGroup"@en . - . - "The class is the third level in a hierarchical structure for grouping of loads for the purpose of load flow load scaling."^^ . - . - . - "LoadGroups"@en . - "The Loadgroups in the SubLoadArea."^^ . - . - . - . - . - "No" . - . - "SubLoadArea"@en . - "The SubLoadArea where the Loadgroup belongs."^^ . - . - . - . - . - "Yes" . - . - "LoadResponseCharacteristic"@en . - . - "Models the characteristic response of the load demand due to changes in system conditions such as voltage and frequency. This is not related to demand response.If LoadResponseCharacteristic.exponentModel is True, the voltage exponents are specified and used as to calculate:Active power component = Pnominal * (Voltage/cim:BaseVoltage.nominalVoltage) ** cim:LoadResponseCharacteristic.pVoltageExponentReactive power component = Qnominal * (Voltage/cim:BaseVoltage.nominalVoltage)** cim:LoadResponseCharacteristic.qVoltageExponentWhere * means \"multiply\" and ** is \"raised to power of\"."^^ . - . - . - . - . - "exponentModel"@en . - . - . - . - "Indicates the exponential voltage dependency model is to be used. If false, the coefficient model is to be used.The exponential voltage dependency model consist of the attributes- pVoltageExponent- qVoltageExponent.The coefficient model consist of the attributes- pConstantImpedance- pConstantCurrent- pConstantPower- qConstantImpedance- qConstantCurrent- qConstantPower.The sum of pConstantImpedance, pConstantCurrent and pConstantPower shall equal 1.The sum of qConstantImpedance, qConstantCurrent and qConstantPower shall equal 1."^^ . - . - . - "pConstantCurrent"@en . - . - . - . - "Portion of active power load modeled as constant current."^^ . - . - . - "pConstantImpedance"@en . - . - . - . - "Portion of active power load modeled as constant impedance."^^ . - . - . - "pConstantPower"@en . - . - . - . - "Portion of active power load modeled as constant power."^^ . - . - . - "pFrequencyExponent"@en . - . - . - . - "Exponent of per unit frequency effecting active power."^^ . - . - . - "pVoltageExponent"@en . - . - . - . - "Exponent of per unit voltage effecting real power."^^ . - . - . - "qConstantCurrent"@en . - . - . - . - "Portion of reactive power load modeled as constant current."^^ . - . - . - "qConstantImpedance"@en . - . - . - . - "Portion of reactive power load modeled as constant impedance."^^ . - . - . - "qConstantPower"@en . - . - . - . - "Portion of reactive power load modeled as constant power."^^ . - . - . - "qFrequencyExponent"@en . - . - . - . - "Exponent of per unit frequency effecting reactive power."^^ . - . - . - "qVoltageExponent"@en . - . - . - . - "Exponent of per unit voltage effecting reactive power."^^ . - . - "NonConformLoad"@en . - . - "NonConformLoad represent loads that do not follow a daily load change pattern and changes are not correlated with the daily load change pattern."^^ . - . - . - . - "NonConformLoadGroup"@en . - . - "Loads that do not follow a daily and seasonal load variation pattern."^^ . - . - . - . - "NonConformLoadSchedule"@en . - . - "An active power (Y1-axis) and reactive power (Y2-axis) schedule (curves) versus time (X-axis) for non-conforming loads, e.g., large industrial load or power station service (where modeled)."^^ . - . - . - . - "Season"@en . - . - "A specified time period of the year."^^ . - "Operation" . - . - . - . - . - "endDate"@en . - . - . - . - "Date season ends."^^ . - . - "MonthDay"@en . - "MonthDay format as \"--mm-dd\", which conforms with XSD data type gMonthDay."^^ . - "Primitive" . - . - . - . - "startDate"@en . - . - . - . - "Date season starts."^^ . - . - "Season"@en . - "Schedules that use this Season."^^ . - . - . - . - . - "Yes" . - . - "SeasonDayTypeSchedules"@en . - "Season for the Schedule."^^ . - . - . - . - . - "No" . - . - "SeasonDayTypeSchedule"@en . - . - "A time schedule covering a 24 hour period, with curve data for a specific type of season and day."^^ . - "Operation" . - . - . - "StationSupply"@en . - . - "Station supply with load derived from the station output."^^ . - "Operation" . - . - . - . - "SubLoadArea"@en . - . - "The class is the second level in a hierarchical structure for grouping of loads for the purpose of load flow load scaling."^^ . - "Operation" . - . - . - . - "Equivalents"@en . - . - "The equivalents package models equivalent networks."^^ . - "EquivalentBranch"@en . - . - "The class represents equivalent branches."^^ . - . - . - . - . - "r"@en . - . - . - . - "Positive sequence series resistance of the reduced branch."^^ . - . - . - "r21"@en . - . - . - . - "Resistance from terminal sequence 2 to terminal sequence 1 .Used for steady state power flow. This attribute is optional and represent unbalanced network such as off-nominal phase shifter. If only EquivalentBranch.r is given, then EquivalentBranch.r21 is assumed equal to EquivalentBranch.r.Usage rule : EquivalentBranch is a result of network reduction prior to the data exchange."^^ . - . - . - "x"@en . - . - . - . - "Positive sequence series reactance of the reduced branch."^^ . - . - . - "x21"@en . - . - . - . - "Reactance from terminal sequence 2 to terminal sequence 1 .Used for steady state power flow. This attribute is optional and represent unbalanced network such as off-nominal phase shifter. If only EquivalentBranch.x is given, then EquivalentBranch.x21 is assumed equal to EquivalentBranch.x.Usage rule : EquivalentBranch is a result of network reduction prior to the data exchange."^^ . - . - "EquivalentEquipment"@en . - . - "The class represents equivalent objects that are the result of a network reduction. The class is the base for equivalent objects of different types."^^ . - . - . - "EquivalentInjection"@en . - . - "This class represents equivalent injections (generation or load). Voltage regulation is allowed only at the point of connection."^^ . - . - . - . - . - "maxP"@en . - . - . - . - "Maximum active power of the injection."^^ . - . - . - "maxQ"@en . - . - . - . - "Used for modeling of infeed for load flow exchange. Not used for short circuit modeling. If maxQ and minQ are not used ReactiveCapabilityCurve can be used. "^^ . - . - . - "minP"@en . - . - . - . - "Minimum active power of the injection."^^ . - . - . - "minQ"@en . - . - . - . - "Used for modeling of infeed for load flow exchange. Not used for short circuit modeling. If maxQ and minQ are not used ReactiveCapabilityCurve can be used."^^ . - . - . - "regulationCapability"@en . - . - . - . - "Specifies whether or not the EquivalentInjection has the capability to regulate the local voltage."^^ . - . - "EquivalentNetwork"@en . - . - "A class that represents an external meshed network that has been reduced to an electrically equivalent model. The ConnectivityNodes contained in the equivalent are intended to reflect internal nodes of the equivalent. The boundary Connectivity nodes where the equivalent connects outside itself are NOT contained by the equivalent."^^ . - . - . - . - "EquivalentShunt"@en . - . - "The class represents equivalent shunts."^^ . - . - . - . - . - "b"@en . - . - . - . - "Positive sequence shunt susceptance."^^ . - . - . - "g"@en . - . - . - . - "Positive sequence shunt conductance."^^ . - . - "ControlArea"@en . - . - "The ControlArea package models area specifications which can be used for a variety of purposes. The package as a whole models potentially overlapping control area specifications for the purpose of actual generation control, load forecast area load capture, or powerflow based analysis."^^ . - "ControlArea"@en . - . - "A control area is a grouping of generating units and/or loads and a cutset of tie lines (as terminals) which may be used for a variety of purposes including automatic generation control, powerflow solution area interchange control specification, and input to load forecasting. Note that any number of overlapping control area specifications can be superimposed on the physical model."^^ . - . - . - . - . - "type"@en . - . - . - . - "The primary type of control area definition used to determine if this is used for automatic generation control, for planning interchange control, or other purposes. A control area specified with primary type of automatic generation control could still be forecast and used as an interchange area in power flow analysis."^^ . - . - "ControlAreaTypeKind"@en . - "The type of control area."^^ . - . - . - . - "AGC"@en . - "Used for automatic generation control."^^ . - . - "Forecast"@en . - "Used for load forecast."^^ . - . - "Interchange"@en . - "Used for interchange specification or control."^^ . - . - "ControlAreaGeneratingUnit"@en . - . - "A control area generating unit. This class is needed so that alternate control area definitions may include the same generating unit. Note only one instance within a control area should reference a specific generating unit."^^ . - . - . - . - "TieFlow"@en . - "A flow specification in terms of location and direction for a control area."^^ . - . - . - . - . - "positiveFlowIn"@en . - . - . - . - "True if the flow into the terminal (load convention) is also flow into the control area. For example, this attribute should be true if using the tie line terminal further away from the control area. For example to represent a tie to a shunt component (like a load or generator) in another area, this is the near end of a branch and this attribute would be specified as false."^^ . - . - _:node1gda76hcix174 . -_:node1gda76hcix174 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - _:node1gda76hcix175 . -_:node1gda76hcix175 "http://iec.ch/TC57/2013/61970-452/EquipmentCore/4" . - _:node1gda76hcix176 . -_:node1gda76hcix176 "http://iec.ch/TC57/2013/61970-452/EquipmentOperation/4" . - _:node1gda76hcix177 . -_:node1gda76hcix177 "http://iec.ch/TC57/2013/61970-452/EquipmentShortCircuit/4" . - _:node1gda76hcix178 . -_:node1gda76hcix178 "2014-08-07" . - _:node1gda76hcix179 . -_:node1gda76hcix179 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - _:node1gda76hcix180 . -_:node1gda76hcix180 "entsoe_v2.4.15" . - _:node1gda76hcix181 . -_:node1gda76hcix181 "http://entsoe.eu/CIM/EquipmentCore/3/1" . - _:node1gda76hcix182 . -_:node1gda76hcix182 "http://entsoe.eu/CIM/EquipmentOperation/3/1" . - _:node1gda76hcix183 . -_:node1gda76hcix183 "http://entsoe.eu/CIM/EquipmentShortCircuit/3/1" . - _:node1gda76hcix184 . -_:node1gda76hcix184 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - _:node1gda76hcix185 . -_:node1gda76hcix185 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - _:node1gda76hcix186 . -_:node1gda76hcix186 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - _:node1gda76hcix187 . -_:node1gda76hcix187 "EQ" . - _:node1gda76hcix188 . -_:node1gda76hcix188 "VA" . - _:node1gda76hcix189 . -_:node1gda76hcix189 "M" . - _:node1gda76hcix190 . -_:node1gda76hcix190 "W" . - _:node1gda76hcix191 . -_:node1gda76hcix191 "M" . - _:node1gda76hcix192 . -_:node1gda76hcix192 "V" . - _:node1gda76hcix193 . -_:node1gda76hcix193 "k" . - _:node1gda76hcix194 . -_:node1gda76hcix194 "ohm" . - _:node1gda76hcix195 . -_:node1gda76hcix195 "none" . - _:node1gda76hcix196 . -_:node1gda76hcix196 "none" . - _:node1gda76hcix197 . -_:node1gda76hcix197 "A" . - _:node1gda76hcix198 . -_:node1gda76hcix198 "M" . - _:node1gda76hcix199 . -_:node1gda76hcix199 "W" . - "DCConductingEquipment"@en . - . - . - . - . - "Yes" . - . - "DCTerminals"@en . - . - . - . - . - "No" . - . - "ConverterDCSides"@en . - "Point of common coupling terminal for this converter DC side. It is typically the terminal on the power transformer (or switch) closest to the AC network. The power flow measurement must be the sum of all flows into the transformer."^^ . - . - . - . - . - "No" . - . - "PccTerminal"@en . - "All converters' DC sides linked to this point of common coupling terminal."^^ . - . - . - . - . - "Yes" . - . - _:node1gda76hcix200 . -_:node1gda76hcix200 "deg" . - _:node1gda76hcix201 . -_:node1gda76hcix201 "none" . - _:node1gda76hcix202 . -_:node1gda76hcix202 "A" . - _:node1gda76hcix203 . -_:node1gda76hcix203 "none" . - "DCTerminals"@en . - . - . - . - . - "No" . - . - "DCNode"@en . - . - . - . - . - "Yes" . - . - "DCTerminals"@en . - . - . - . - . - "No" . - . - "DCConductingEquipment"@en . - . - . - . - . - "Yes" . - . - "Substation"@en . - . - . - . - . - "Yes" . - . - "DCConverterUnit"@en . - . - . - . - . - "No" . - . - "DCEquipmentContainer"@en . - . - . - . - . - "Yes" . - . - "DCNodes"@en . - . - . - . - . - "No" . - . - _:node1gda76hcix204 . -_:node1gda76hcix204 "H" . - _:node1gda76hcix205 . -_:node1gda76hcix205 "none" . - "Region"@en . - . - . - . - . - "Yes" . - . - "DCLines"@en . - . - . - . - . - "No" . - . - _:node1gda76hcix206 . -_:node1gda76hcix206 "F" . - _:node1gda76hcix207 . -_:node1gda76hcix207 "none" . - _:node1gda76hcix208 . -_:node1gda76hcix208 "m" . - _:node1gda76hcix209 . -_:node1gda76hcix209 "k" . - "DCLineSegments"@en . - "All line segments described by this set of per-length parameters."^^ . - . - . - . - . - "No" . - . - "PerLengthParameter"@en . - "Set of per-length parameters for this line segment."^^ . - . - . - . - . - "Yes" . - . - _:node1gda76hcix210 . -_:node1gda76hcix210 "F" . - _:node1gda76hcix211 . -_:node1gda76hcix211 "none" . - _:node1gda76hcix212 . -_:node1gda76hcix212 "m" . - _:node1gda76hcix213 . -_:node1gda76hcix213 "none" . - _:node1gda76hcix214 . -_:node1gda76hcix214 "H" . - _:node1gda76hcix215 . -_:node1gda76hcix215 "none" . - _:node1gda76hcix216 . -_:node1gda76hcix216 "m" . - _:node1gda76hcix217 . -_:node1gda76hcix217 "none" . - _:node1gda76hcix218 . -_:node1gda76hcix218 "ohm" . - _:node1gda76hcix219 . -_:node1gda76hcix219 "none" . - _:node1gda76hcix220 . -_:node1gda76hcix220 "m" . - _:node1gda76hcix221 . -_:node1gda76hcix221 "none" . - "VsConverterDCSides"@en . - "Capability curve of this converter."^^ . - . - . - . - . - "No" . - . - "CapabilityCurve"@en . - "All converters with this capability curve."^^ . - . - . - . - . - "Yes" . - . - "BusNameMarker"@en . - "The reporting group to which this bus name marker belongs."^^ . - . - . - . - . - "No" . - . - "ReportingGroup"@en . - "The bus name markers that belong to this reporting group."^^ . - . - . - . - . - "Yes" . - . - "Terminal"@en . - "The terminals associated with this bus name marker."^^ . - . - . - . - . - "No" . - . - "BusNameMarker"@en . - "The bus name marker used to name the bus (topological node)."^^ . - . - . - . - . - "Yes" . - . - _:node1gda76hcix222 . -_:node1gda76hcix222 "none" . - _:node1gda76hcix223 . -_:node1gda76hcix223 "none" . - "EnergySource"@en . - "Energy Scheduling Type of an Energy Source"^^ . - . - . - . - . - "No" . - . - "EnergySchedulingType"@en . - "Energy Source of a particular Energy Scheduling Type"^^ . - . - . - . - . - "Yes" . - . - _:node1gda76hcix224 . -_:node1gda76hcix224 "rad" . - _:node1gda76hcix225 . -_:node1gda76hcix225 "none" . - _:node1gda76hcix226 . -_:node1gda76hcix226 "ohm" . - _:node1gda76hcix227 . -_:node1gda76hcix227 "none" . - "FossilFuels"@en . - "A thermal generating unit may have one or more fossil fuels."^^ . - . - . - . - . - "No" . - . - "ThermalGeneratingUnit"@en . - "A thermal generating unit may have one or more fossil fuels."^^ . - . - . - . - . - "Yes" . - . - _:node1gda76hcix228 . -_:node1gda76hcix228 "EUR" . - _:node1gda76hcix229 . -_:node1gda76hcix229 "none" . - "GeneratingUnit"@en . - "The generating unit specified for this control area. Note that a control area should include a GeneratingUnit only once."^^ . - . - . - . - . - "Yes" . - . - "ControlAreaGeneratingUnit"@en . - "ControlArea specifications for this generating unit."^^ . - . - . - . - . - "No" . - . - "GeneratingUnit"@en . - "A synchronous machine may operate as a generator and as such becomes a member of a generating unit."^^ . - . - . - . - . - "Yes" . - . - "RotatingMachine"@en . - "A synchronous machine may operate as a generator and as such becomes a member of a generating unit."^^ . - . - . - . - . - "No" . - . - "HydroGeneratingUnits"@en . - "The hydro generating unit belongs to a hydro power plant."^^ . - . - . - . - . - "No" . - . - "HydroPowerPlant"@en . - "The hydro generating unit belongs to a hydro power plant."^^ . - . - . - . - . - "Yes" . - . - "HydroPumps"@en . - "The hydro pump may be a member of a pumped storage plant or a pump for distributing water."^^ . - . - . - . - . - "No" . - . - "HydroPowerPlant"@en . - "The hydro pump may be a member of a pumped storage plant or a pump for distributing water."^^ . - . - . - . - . - "Yes" . - . - "RotatingMachine"@en . - "The synchronous machine drives the turbine which moves the water from a low elevation to a higher elevation. The direction of machine rotation for pumping may or may not be the same as for generating."^^ . - . - . - . - . - "Yes" . - . - "HydroPump"@en . - "The synchronous machine drives the turbine which moves the water from a low elevation to a higher elevation. The direction of machine rotation for pumping may or may not be the same as for generating."^^ . - . - . - . - . - "No" . - . - "Terminal"@en . - . - . - . - . - "Yes" . - . - "OperationalLimitSet"@en . - . - . - . - . - "No" . - . - "BaseVoltage"@en . - "All conducting equipment with this base voltage. Use only when there is no voltage level container used and only one base voltage applies. For example, not used for transformers."^^ . - . - . - . - . - "Yes" . - . - "ConductingEquipment"@en . - "Base voltage of this conducting equipment. Use only when there is no voltage level container used and only one base voltage applies. For example, not used for transformers."^^ . - . - . - . - . - "No" . - . - "BaseVoltage"@en . - "The base voltage used for all equipment within the voltage level."^^ . - . - . - . - . - "Yes" . - . - "VoltageLevel"@en . - "The voltage levels having this base voltage."^^ . - . - . - . - . - "No" . - . - "BaseVoltage"@en . - "Base voltage of the transformer end. This is essential for PU calculation."^^ . - . - . - . - . - "Yes" . - . - "TransformerEnds"@en . - "Transformer ends at the base voltage. This is essential for PU calculation."^^ . - . - . - . - . - "No" . - . - "CurveDatas"@en . - "The curve of this curve data point."^^ . - . - . - . - . - "No" . - . - "Curve"@en . - "The point data values that define this curve."^^ . - . - . - . - . - "Yes" . - . - "Equipment"@en . - "The equipment to which the limit set applies."^^ . - . - . - . - . - "Yes" . - . - "OperationalLimitSet"@en . - "The operational limit sets associated with this equipment."^^ . - . - . - . - . - "No" . - . - . - _:node1gda76hcix230 . -_:node1gda76hcix230 "s" . - _:node1gda76hcix231 . -_:node1gda76hcix231 "none" . - "The lines within the sub-geographical region."^^ . - "The sub-geographical region of the line."^^ . - "Substations"@en . - "The substations in this sub-geographical region."^^ . - . - . - . - . - "No" . - . - "Region"@en . - "The SubGeographicalRegion containing the substation."^^ . - . - . - . - . - "Yes" . - . - "VoltageLevels"@en . - "The voltage levels within this substation."^^ . - . - . - . - . - "No" . - . - "Substation"@en . - "The substation of the voltage level."^^ . - . - . - . - . - "Yes" . - . - "Terminal"@en . - "The controls regulating this terminal."^^ . - . - . - . - . - "Yes" . - . - "RegulatingControl"@en . - "The terminal associated with this regulating control. The terminal is associated instead of a node, since the terminal could connect into either a topological node (bus in bus-branch model) or a connectivity node (detailed switch model). Sometimes it is useful to model regulation at a terminal of a bus bar object since the bus bar can be present in both a bus-branch model or a model with switch detail."^^ . - . - . - . - . - "No" . - . - "Terminal"@en . - "The terminal to which this tie flow belongs."^^ . - . - . - . - . - "Yes" . - . - "TieFlow"@en . - "The control area tie flows to which this terminal associates."^^ . - . - . - . - . - "No" . - . - "Terminal"@en . - "Terminal of the power transformer to which this transformer end belongs."^^ . - . - . - . - . - "Yes" . - . - "TransformerEnd"@en . - "All transformer ends connected at this terminal."^^ . - . - . - . - . - "No" . - . - "OperationalLimitValue"@en . - "The limit set to which the limit values belong."^^ . - . - . - . - . - "No" . - . - "OperationalLimitSet"@en . - "Values of equipment limits."^^ . - . - . - . - . - "Yes" . - . - "OperationalLimitType"@en . - "The limit type associated with this limit."^^ . - . - . - . - . - "Yes" . - . - "OperationalLimit"@en . - "The operational limits associated with this type of limit."^^ . - . - . - . - . - "No" . - . - _:node1gda76hcix232 . -_:node1gda76hcix232 "S" . - _:node1gda76hcix233 . -_:node1gda76hcix233 "none" . - _:node1gda76hcix234 . -_:node1gda76hcix234 "S" . - _:node1gda76hcix235 . -_:node1gda76hcix235 "none" . - _:node1gda76hcix236 . -_:node1gda76hcix236 "none" . - _:node1gda76hcix237 . -_:node1gda76hcix237 "degC" . - _:node1gda76hcix238 . -_:node1gda76hcix238 "Hz" . - _:node1gda76hcix239 . -_:node1gda76hcix239 "none" . - _:node1gda76hcix240 . -_:node1gda76hcix240 "none" . - _:node1gda76hcix241 . -_:node1gda76hcix241 "none" . - _:node1gda76hcix242 . -_:node1gda76hcix242 "s" . - _:node1gda76hcix243 . -_:node1gda76hcix243 "none" . - _:node1gda76hcix244 . -_:node1gda76hcix244 "VAr" . - _:node1gda76hcix245 . -_:node1gda76hcix245 "M" . - "LoadResponse"@en . - "The load response characteristic of this load. If missing, this load is assumed to be constant power."^^ . - . - . - . - . - "Yes" . - . - "EnergyConsumer"@en . - "The set of loads that have the response characteristics."^^ . - . - . - . - . - "No" . - . - _:node1gda76hcix246 . -_:node1gda76hcix246 "none" . - _:node1gda76hcix247 . -_:node1gda76hcix247 "Hz" . - _:node1gda76hcix248 . -_:node1gda76hcix248 "M" . - _:node1gda76hcix249 . -_:node1gda76hcix249 "W" . - _:node1gda76hcix250 . -_:node1gda76hcix250 "none" . - _:node1gda76hcix251 . -_:node1gda76hcix251 "none" . - "NonlinearShuntCompensator"@en . - "Non-linear shunt compensator owning this point."^^ . - . - . - . - . - "Yes" . - . - "NonlinearShuntCompensatorPoints"@en . - "All points of the non-linear shunt compensator."^^ . - . - . - . - . - "No" . - . - "TransformerEnd"@en . - "Phase tap changer associated with this transformer end."^^ . - . - . - . - . - "Yes" . - . - "PhaseTapChanger"@en . - "Transformer end to which this phase tap changer belongs."^^ . - . - . - . - . - "No" . - . - "PhaseTapChangerTable"@en . - "The table of this point."^^ . - . - . - . - . - "Yes" . - . - "PhaseTapChangerTablePoint"@en . - "The points of this table."^^ . - . - . - . - . - "No" . - . - "PhaseTapChangerTabular"@en . - "The phase tap changers to which this phase tap table applies."^^ . - . - . - . - . - "No" . - . - "PhaseTapChangerTable"@en . - "The phase tap changer table for this phase tap changer."^^ . - . - . - . - . - "Yes" . - . - "PowerTransformer"@en . - "The ends of this power transformer."^^ . - . - . - . - . - "Yes" . - . - "PowerTransformerEnd"@en . - "The power transformer of this power transformer end."^^ . - . - . - . - . - "No" . - . - "RatioTapChanger"@en . - "The tap ratio table for this ratio tap changer."^^ . - . - . - . - . - "No" . - . - "RatioTapChangerTable"@en . - "The ratio tap changer of this tap ratio table."^^ . - . - . - . - . - "Yes" . - . - "TransformerEnd"@en . - "Ratio tap changer associated with this transformer end."^^ . - . - . - . - . - "Yes" . - . - "RatioTapChanger"@en . - "Transformer end to which this ratio tap changer belongs."^^ . - . - . - . - . - "No" . - . - "RatioTapChangerTablePoint"@en . - "Table of this point."^^ . - . - . - . - . - "No" . - . - "RatioTapChangerTable"@en . - "Points of this table."^^ . - . - . - . - . - "Yes" . - . - "ReactiveCapabilityCurve"@en . - "The equivalent injection using this reactive capability curve."^^ . - . - . - . - . - "Yes" . - . - "EquivalentInjection"@en . - "The reactive capability curve used by this equivalent injection."^^ . - . - . - . - . - "No" . - . - "InitialReactiveCapabilityCurve"@en . - "Synchronous machines using this curve as default."^^ . - . - . - . - . - "Yes" . - . - "InitiallyUsedBySynchronousMachines"@en . - "The default reactive capability curve for use by a synchronous machine."^^ . - . - . - . - . - "No" . - . - "RegulatingControl"@en . - "The regulating control scheme in which this equipment participates."^^ . - . - . - . - . - "Yes" . - . - "RegulatingCondEq"@en . - "The equipment that participates in this regulating control scheme."^^ . - . - . - . - . - "No" . - . - _:node1gda76hcix252 . -_:node1gda76hcix252 "V" . - _:node1gda76hcix253 . -_:node1gda76hcix253 "M" . - _:node1gda76hcix254 . -_:node1gda76hcix254 "k" . - _:node1gda76hcix255 . -_:node1gda76hcix255 "VAr" . - "TapChanger"@en . - "The regulating control scheme in which this tap changer participates."^^ . - . - . - . - . - "No" . - . - "TapChangerControl"@en . - "The tap changers that participates in this regulating tap control scheme."^^ . - . - . - . - . - "Yes" . - . - "EnergyConsumers"@en . - "Conform loads assigned to this ConformLoadGroup."^^ . - . - . - . - . - "No" . - . - "LoadGroup"@en . - "Group of this ConformLoad."^^ . - . - . - . - . - "Yes" . - . - "ConformLoadSchedules"@en . - "The ConformLoadSchedules in the ConformLoadGroup."^^ . - . - . - . - . - "No" . - . - "ConformLoadGroup"@en . - "The ConformLoadGroup where the ConformLoadSchedule belongs."^^ . - . - . - . - . - "Yes" . - . - "LoadGroup"@en . - "Conform loads assigned to this ConformLoadGroup."^^ . - . - . - . - . - "Yes" . - . - "EnergyConsumers"@en . - "Group of this ConformLoad."^^ . - . - . - . - . - "No" . - . - "NonConformLoadSchedules"@en . - "The NonConformLoadSchedules in the NonConformLoadGroup."^^ . - . - . - . - . - "No" . - . - "NonConformLoadGroup"@en . - "The NonConformLoadGroup where the NonConformLoadSchedule belongs."^^ . - . - . - . - . - "Yes" . - . - "EquivalentEquipments"@en . - "The equivalent where the reduced model belongs."^^ . - . - . - . - . - "No" . - . - "EquivalentNetwork"@en . - "The associated reduced equivalents."^^ . - . - . - . - . - "Yes" . - . - "ControlArea"@en . - "The control area of the tie flows."^^ . - . - . - . - . - "Yes" . - . - "TieFlow"@en . - "The tie flows associated with the control area."^^ . - . - . - . - . - "No" . - . - "ControlArea"@en . - "The parent control area for the generating unit specifications."^^ . - . - . - . - . - "Yes" . - . - "ControlAreaGeneratingUnit"@en . - "The generating unit specificaitons for the control area."^^ . - . - . - . - . - "No" . - . - _:node1gda76hcix256 . -_:node1gda76hcix256 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - _:node1gda76hcix257 . -_:node1gda76hcix257 "http://iec.ch/TC57/2013/61970-452/EquipmentCore/4" . - _:node1gda76hcix258 . -_:node1gda76hcix258 "http://iec.ch/TC57/2013/61970-452/EquipmentOperation/4" . - _:node1gda76hcix259 . -_:node1gda76hcix259 "http://iec.ch/TC57/2013/61970-452/EquipmentShortCircuit/4" . - _:node1gda76hcix260 . -_:node1gda76hcix260 "2014-08-07" . - _:node1gda76hcix261 . -_:node1gda76hcix261 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - _:node1gda76hcix262 . -_:node1gda76hcix262 "entsoe_v2.4.15" . - _:node1gda76hcix263 . -_:node1gda76hcix263 "http://entsoe.eu/CIM/EquipmentCore/3/1" . - _:node1gda76hcix264 . -_:node1gda76hcix264 "http://entsoe.eu/CIM/EquipmentOperation/3/1" . - _:node1gda76hcix265 . -_:node1gda76hcix265 "http://entsoe.eu/CIM/EquipmentShortCircuit/3/1" . - _:node1gda76hcix266 . -_:node1gda76hcix266 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - _:node1gda76hcix267 . -_:node1gda76hcix267 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - _:node1gda76hcix268 . -_:node1gda76hcix268 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - _:node1gda76hcix269 . -_:node1gda76hcix269 "EQ" . - _:node1gda76hcix270 . -_:node1gda76hcix270 "VA" . - _:node1gda76hcix271 . -_:node1gda76hcix271 "M" . - _:node1gda76hcix272 . -_:node1gda76hcix272 "W" . - _:node1gda76hcix273 . -_:node1gda76hcix273 "M" . - _:node1gda76hcix274 . -_:node1gda76hcix274 "V" . - _:node1gda76hcix275 . -_:node1gda76hcix275 "k" . - _:node1gda76hcix276 . -_:node1gda76hcix276 "ohm" . - _:node1gda76hcix277 . -_:node1gda76hcix277 "none" . - _:node1gda76hcix278 . -_:node1gda76hcix278 "none" . - _:node1gda76hcix279 . -_:node1gda76hcix279 "A" . - _:node1gda76hcix280 . -_:node1gda76hcix280 "M" . - _:node1gda76hcix281 . -_:node1gda76hcix281 "W" . - _:node1gda76hcix282 . -_:node1gda76hcix282 "deg" . - _:node1gda76hcix283 . -_:node1gda76hcix283 "none" . - _:node1gda76hcix284 . -_:node1gda76hcix284 "A" . - _:node1gda76hcix285 . -_:node1gda76hcix285 "none" . - _:node1gda76hcix286 . -_:node1gda76hcix286 "H" . - _:node1gda76hcix287 . -_:node1gda76hcix287 "none" . - _:node1gda76hcix288 . -_:node1gda76hcix288 "F" . - _:node1gda76hcix289 . -_:node1gda76hcix289 "none" . - _:node1gda76hcix290 . -_:node1gda76hcix290 "m" . - _:node1gda76hcix291 . -_:node1gda76hcix291 "k" . - _:node1gda76hcix292 . -_:node1gda76hcix292 "F" . - _:node1gda76hcix293 . -_:node1gda76hcix293 "none" . - _:node1gda76hcix294 . -_:node1gda76hcix294 "m" . - _:node1gda76hcix295 . -_:node1gda76hcix295 "none" . - _:node1gda76hcix296 . -_:node1gda76hcix296 "H" . - _:node1gda76hcix297 . -_:node1gda76hcix297 "none" . - _:node1gda76hcix298 . -_:node1gda76hcix298 "m" . - _:node1gda76hcix299 . -_:node1gda76hcix299 "none" . - _:node1gda76hcix300 . -_:node1gda76hcix300 "ohm" . - _:node1gda76hcix301 . -_:node1gda76hcix301 "none" . - _:node1gda76hcix302 . -_:node1gda76hcix302 "m" . - _:node1gda76hcix303 . -_:node1gda76hcix303 "none" . - _:node1gda76hcix304 . -_:node1gda76hcix304 "none" . - _:node1gda76hcix305 . -_:node1gda76hcix305 "none" . - _:node1gda76hcix306 . -_:node1gda76hcix306 "rad" . - _:node1gda76hcix307 . -_:node1gda76hcix307 "none" . - _:node1gda76hcix308 . -_:node1gda76hcix308 "ohm" . - _:node1gda76hcix309 . -_:node1gda76hcix309 "none" . - _:node1gda76hcix310 . -_:node1gda76hcix310 "EUR" . - _:node1gda76hcix311 . -_:node1gda76hcix311 "none" . - _:node1gda76hcix312 . -_:node1gda76hcix312 "s" . - _:node1gda76hcix313 . -_:node1gda76hcix313 "none" . - "First_Terminal"@en . - "The starting terminal for the calculation of distances along the first branch of the mutual coupling. Normally MutualCoupling would only be used for terminals of AC line segments. The first and second terminals of a mutual coupling should point to different AC line segments."^^ . - . - . - . - . - "Yes" . - . - "HasFirstMutualCoupling"@en . - "Mutual couplings associated with the branch as the first branch."^^ . - . - . - . - . - "No" . - . - "Second_Terminal"@en . - "The starting terminal for the calculation of distances along the second branch of the mutual coupling."^^ . - . - . - . - . - "Yes" . - . - "HasSecondMutualCoupling"@en . - "Mutual couplings with the branch associated as the first branch."^^ . - . - . - . - . - "No" . - . - . - "b0ch"@en . - . - . - . - "ShortCircuit" . - "Zero sequence shunt (charging) susceptance, uniformly distributed, of the entire line section."^^ . - . - _:node1gda76hcix314 . -_:node1gda76hcix314 "S" . - _:node1gda76hcix315 . -_:node1gda76hcix315 "none" . - . - "g0ch"@en . - . - . - . - "ShortCircuit" . - "Zero sequence shunt (charging) conductance, uniformly distributed, of the entire line section."^^ . - . - _:node1gda76hcix316 . -_:node1gda76hcix316 "S" . - _:node1gda76hcix317 . -_:node1gda76hcix317 "none" . - . - "r0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series resistance of the entire line section."^^ . - . - . - "shortCircuitEndTemperature"@en . - . - . - . - "ShortCircuit" . - "Maximum permitted temperature at the end of SC for the calculation of minimum short-circuit currents. Used for short circuit data exchange according to IEC 60909"^^ . - . - _:node1gda76hcix318 . -_:node1gda76hcix318 "none" . - _:node1gda76hcix319 . -_:node1gda76hcix319 "degC" . - . - "x0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series reactance of the entire line section."^^ . - . - . - "converterFedDrive"@en . - . - . - . - "ShortCircuit" . - "Indicates whether the machine is a converter fed drive. Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "efficiency"@en . - . - . - . - "ShortCircuit" . - "Efficiency of the asynchronous machine at nominal operation in percent. Indicator for converter drive motors. Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "iaIrRatio"@en . - . - . - . - "ShortCircuit" . - "Ratio of locked-rotor current to the rated current of the motor (Ia/Ir). Used for short circuit data exchange according to IEC 60909"^^ . - . - _:node1gda76hcix320 . -_:node1gda76hcix320 "Hz" . - _:node1gda76hcix321 . -_:node1gda76hcix321 "none" . - _:node1gda76hcix322 . -_:node1gda76hcix322 "none" . - _:node1gda76hcix323 . -_:node1gda76hcix323 "none" . - _:node1gda76hcix324 . -_:node1gda76hcix324 "s" . - _:node1gda76hcix325 . -_:node1gda76hcix325 "none" . - . - "polePairNumber"@en . - . - . - . - "ShortCircuit" . - "Number of pole pairs of stator. Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "ratedMechanicalPower"@en . - . - . - . - "ShortCircuit" . - "Rated mechanical power (Pr in the IEC 60909-0). Used for short circuit data exchange according to IEC 60909."^^ . - . - . - "reversible"@en . - . - . - . - "ShortCircuit" . - "Indicates for converter drive motors if the power can be reversible. Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "rxLockedRotorRatio"@en . - . - . - . - "ShortCircuit" . - "Locked rotor ratio (R/X). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "ipMax"@en . - . - . - . - "ShortCircuit" . - "Maximum allowable peak short-circuit current of busbar (Ipmax in the IEC 60909-0).Mechanical limit of the busbar in the substation itself. Used for short circuit data exchange according to IEC 60909"^^ . - . - "EarthFaultCompensator"@en . - . - "A conducting equipment used to represent a connection to ground which is typically used to compensate earth faults.. An earth fault compensator device modeled with a single terminal implies a second terminal solidly connected to ground. If two terminals are modeled, the ground is not assumed and normal connection rules apply."^^ . - "ShortCircuit" . - . - . - . - "r"@en . - . - . - . - "Nominal resistance of device."^^ . - . - _:node1gda76hcix326 . -_:node1gda76hcix326 "VAr" . - _:node1gda76hcix327 . -_:node1gda76hcix327 "M" . - _:node1gda76hcix328 . -_:node1gda76hcix328 "none" . - _:node1gda76hcix329 . -_:node1gda76hcix329 "Hz" . - _:node1gda76hcix330 . -_:node1gda76hcix330 "M" . - _:node1gda76hcix331 . -_:node1gda76hcix331 "W" . - . - "ikSecond"@en . - . - . - . - "ShortCircuit" . - "Indicates whether initial symmetrical short-circuit current and power have been calculated according to IEC (Ik\")."^^ . - . - . - "maxInitialSymShCCurrent"@en . - . - . - . - "ShortCircuit" . - " Maximum initial symmetrical short-circuit currents (Ik\" max) in A (Ik\" = Sk\"/(SQRT(3) Un)). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "maxR0ToX0Ratio"@en . - . - . - . - "ShortCircuit" . - "Maximum ratio of zero sequence resistance of Network Feeder to its zero sequence reactance (R(0)/X(0) max). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "maxR1ToX1Ratio"@en . - . - . - . - "ShortCircuit" . - "Maximum ratio of positive sequence resistance of Network Feeder to its positive sequence reactance (R(1)/X(1) max). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "maxZ0ToZ1Ratio"@en . - . - . - . - "ShortCircuit" . - "Maximum ratio of zero sequence impedance to its positive sequence impedance (Z(0)/Z(1) max). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "minInitialSymShCCurrent"@en . - . - . - . - "ShortCircuit" . - "Minimum initial symmetrical short-circuit currents (Ik\" min) in A (Ik\" = Sk\"/(SQRT(3) Un)). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "minR0ToX0Ratio"@en . - . - . - . - "ShortCircuit" . - "Indicates whether initial symmetrical short-circuit current and power have been calculated according to IEC (Ik\"). Used for short circuit data exchange according to IEC 6090"^^ . - . - . - "minR1ToX1Ratio"@en . - . - . - . - "ShortCircuit" . - "Minimum ratio of positive sequence resistance of Network Feeder to its positive sequence reactance (R(1)/X(1) min). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "minZ0ToZ1Ratio"@en . - . - . - . - "ShortCircuit" . - "Minimum ratio of zero sequence impedance to its positive sequence impedance (Z(0)/Z(1) min). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "voltageFactor"@en . - . - . - . - "ShortCircuit" . - "Voltage factor in pu, which was used to calculate short-circuit current Ik\" and power Sk\"."^^ . - . - _:node1gda76hcix332 . -_:node1gda76hcix332 "none" . - _:node1gda76hcix333 . -_:node1gda76hcix333 "none" . - "GroundingImpedance"@en . - . - "A fixed impedance device used for grounding."^^ . - "ShortCircuit" . - . - . - . - . - "x"@en . - . - . - . - "Reactance of device."^^ . - . - . - "b0PerSection"@en . - . - . - . - "ShortCircuit" . - "Zero sequence shunt (charging) susceptance per section"^^ . - . - . - "g0PerSection"@en . - . - . - . - "ShortCircuit" . - "Zero sequence shunt (charging) conductance per section"^^ . - . - "MutualCoupling"@en . - . - "This class represents the zero sequence line mutual coupling."^^ . - "ShortCircuit" . - . - . - . - . - "b0ch"@en . - . - . - . - "Zero sequence mutual coupling shunt (charging) susceptance, uniformly distributed, of the entire line section."^^ . - . - . - "distance11"@en . - . - . - . - "Distance to the start of the coupled region from the first line's terminal having sequence number equal to 1."^^ . - . - . - "distance12"@en . - . - . - . - "Distance to the end of the coupled region from the first line's terminal with sequence number equal to 1."^^ . - . - . - "distance21"@en . - . - . - . - "Distance to the start of coupled region from the second line's terminal with sequence number equal to 1."^^ . - . - . - "distance22"@en . - . - . - . - "Distance to the end of coupled region from the second line's terminal with sequence number equal to 1."^^ . - . - . - "g0ch"@en . - . - . - . - "Zero sequence mutual coupling shunt (charging) conductance, uniformly distributed, of the entire line section."^^ . - . - . - "r0"@en . - . - . - . - "Zero sequence branch-to-branch mutual impedance coupling, resistance."^^ . - . - . - "x0"@en . - . - . - . - "Zero sequence branch-to-branch mutual impedance coupling, reactance."^^ . - . - . - "b0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence shunt (charging) susceptance per section"^^ . - . - . - "g0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence shunt (charging) conductance per section"^^ . - . - "PetersenCoil"@en . - . - "A tunable impedance device normally used to offset line charging during single line faults in an ungrounded section of network."^^ . - "ShortCircuit" . - . - . - . - . - "mode"@en . - . - . - . - "The mode of operation of the Petersen coil."^^ . - . - . - "nominalU"@en . - . - . - . - "The nominal voltage for which the coil is designed."^^ . - . - . - "offsetCurrent"@en . - . - . - . - "The offset current that the Petersen coil controller is operating from the resonant point. This is normally a fixed amount for which the controller is configured and could be positive or negative. Typically 0 to 60 Amperes depending on voltage and resonance conditions."^^ . - . - . - "positionCurrent"@en . - . - . - . - "The control current used to control the Petersen coil also known as the position current. Typically in the range of 20-200mA."^^ . - . - . - "xGroundMax"@en . - . - . - . - "The maximum reactance. "^^ . - . - . - "xGroundMin"@en . - . - . - . - "The minimum reactance."^^ . - . - . - "xGroundNominal"@en . - . - . - . - "The nominal reactance. This is the operating point (normally over compensation) that is defined based on the resonance point in the healthy network condition. The impedance is calculated based on nominal voltage divided by position current."^^ . - . - . - "beforeShCircuitHighestOperatingCurrent"@en . - . - . - . - "ShortCircuit" . - "The highest operating current (Ib in the IEC 60909-0) before short circuit (depends on network configuration and relevant reliability philosophy). It is used for calculation of the impedance correction factor KT defined in IEC 60909-0."^^ . - . - . - "beforeShCircuitHighestOperatingVoltage"@en . - . - . - . - "ShortCircuit" . - "The highest operating voltage (Ub in the IEC 60909-0) before short circuit. It is used for calculation of the impedance correction factor KT defined in IEC 60909-0. This is worst case voltage on the low side winding (Section 3.7.1 in the standard). Used to define operating conditions."^^ . - . - . - "beforeShortCircuitAnglePf"@en . - . - . - . - "ShortCircuit" . - "The angle of power factor before short circuit (phib in the IEC 60909-0). It is used for calculation of the impedance correction factor KT defined in IEC 60909-0. This is the worst case power factor. Used to define operating conditions."^^ . - . - . - "highSideMinOperatingU"@en . - . - . - . - "ShortCircuit" . - "The minimum operating voltage (uQmin in the IEC 60909-0) at the high voltage side (Q side) of the unit transformer of the power station unit. A value well established from long-term operating experience of the system. It is used for calculation of the impedance correction factor KG defined in IEC 60909-0"^^ . - . - . - "isPartOfGeneratorUnit"@en . - . - . - . - "ShortCircuit" . - "Indicates whether the machine is part of a power station unit. Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "operationalValuesConsidered"@en . - . - . - . - "ShortCircuit" . - "It is used to define if the data (other attributes related to short circuit data exchange) defines long term operational conditions or not. Used for short circuit data exchange according to IEC 60909."^^ . - . - . - "b0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence magnetizing branch susceptance."^^ . - . - . - "phaseAngleClock"@en . - . - . - . - "ShortCircuit" . - "Terminal voltage phase angle displacement where 360 degrees are represented with clock hours. The valid values are 0 to 11. For example, for the secondary side end of a transformer with vector group code of 'Dyn11', specify the connection kind as wye with neutral and specify the phase angle of the clock as 11. The clock value of the transformer end number specified as 1, is assumed to be zero. Note the transformer end number is not assumed to be the same as the terminal sequence number."^^ . - . - . - "g0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence magnetizing branch conductance (star-model)."^^ . - . - . - "r0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series resistance (star-model) of the transformer end."^^ . - . - . - "x0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series reactance of the transformer end."^^ . - . - . - "r0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence resistance."^^ . - . - . - "x0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence reactance."^^ . - . - _:node1gda76hcix334 . -_:node1gda76hcix334 "V" . - _:node1gda76hcix335 . -_:node1gda76hcix335 "M" . - _:node1gda76hcix336 . -_:node1gda76hcix336 "k" . - _:node1gda76hcix337 . -_:node1gda76hcix337 "VAr" . - . - "earthing"@en . - . - . - . - "ShortCircuit" . - "Indicates whether or not the generator is earthed. Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "earthingStarPointR"@en . - . - . - . - "ShortCircuit" . - "Generator star point earthing resistance (Re). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "earthingStarPointX"@en . - . - . - . - "ShortCircuit" . - "Generator star point earthing reactance (Xe). Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "ikk"@en . - . - . - . - "ShortCircuit" . - "Steady-state short-circuit current (in A for the profile) of generator with compound excitation during 3-phase short circuit.- Ikk=0: Generator with no compound excitation.- Ikk?0: Generator with compound excitation.Ikk is used to calculate the minimum steady-state short-circuit current for generators with compound excitation(Section 4.6.1.2 in the IEC 60909-0)Used only for single fed short circuit on a generator. (Section 4.3.4.2. in the IEC 60909-0)"^^ . - . - . - "mu"@en . - . - . - . - "ShortCircuit" . - "Factor to calculate the breaking current (Section 4.5.2.1 in the IEC 60909-0).Used only for single fed short circuit on a generator (Section 4.3.4.2. in the IEC 60909-0)."^^ . - . - . - "r0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence resistance of the synchronous machine."^^ . - . - . - "r2"@en . - . - . - . - "ShortCircuit" . - "Negative sequence resistance."^^ . - . - . - "satDirectSubtransX"@en . - . - . - . - "ShortCircuit" . - "Direct-axis subtransient reactance saturated, also known as Xd\"sat."^^ . - . - . - "satDirectSyncX"@en . - . - . - . - "ShortCircuit" . - "Direct-axes saturated synchronous reactance (xdsat); reciprocal of short-circuit ration. Used for short circuit data exchange, only for single fed short circuit on a generator. (Section 4.3.4.2. in the IEC 60909-0)."^^ . - . - . - "satDirectTransX"@en . - . - . - . - "ShortCircuit" . - "Saturated Direct-axis transient reactance. The attribute is primarily used for short circuit calculations according to ANSI."^^ . - . - . - "shortCircuitRotorType"@en . - . - . - . - "ShortCircuit" . - "Type of rotor, used by short circuit applications, only for single fed short circuit according to IEC 60909."^^ . - . - . - "voltageRegulationRange"@en . - . - . - . - "ShortCircuit" . - "Range of generator voltage regulation (PG in the IEC 60909-0) used for calculation of the impedance correction factor KG defined in IEC 60909-0This attribute is used to describe the operating voltage of the generating unit."^^ . - . - . - "r"@en . - . - . - . - "ShortCircuit" . - "Equivalent resistance (RG) of generator. RG is considered for the calculation of all currents, except for the calculation of the peak current ip. Used for short circuit data exchange according to IEC 60909"^^ . - . - . - "x0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence reactance of the synchronous machine."^^ . - . - . - "x2"@en . - . - . - . - "ShortCircuit" . - "Negative sequence reactance."^^ . - . - . - "rground"@en . - . - . - . - "ShortCircuit" . - "(for Yn and Zn connections) Resistance part of neutral impedance where 'grounded' is true."^^ . - . - . - "grounded"@en . - . - . - . - "ShortCircuit" . - "(for Yn and Zn connections) True if the neutral is solidly grounded."^^ . - . - . - "xground"@en . - . - . - . - "ShortCircuit" . - "(for Yn and Zn connections) Reactive part of neutral impedance where 'grounded' is true."^^ . - . - . - "negativeR12"@en . - . - . - . - "ShortCircuit" . - "Negative sequence series resistance from terminal sequence 1 to terminal sequence 2. Used for short circuit data exchange according to IEC 60909EquivalentBranch is a result of network reduction prior to the data exchange "^^ . - . - . - "negativeR21"@en . - . - . - . - "ShortCircuit" . - "Negative sequence series resistance from terminal sequence 2 to terminal sequence 1. Used for short circuit data exchange according to IEC 60909EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "negativeX12"@en . - . - . - . - "ShortCircuit" . - "Negative sequence series reactance from terminal sequence 1 to terminal sequence 2. Used for short circuit data exchange according to IEC 60909Usage : EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "negativeX21"@en . - . - . - . - "ShortCircuit" . - "Negative sequence series reactance from terminal sequence 2 to terminal sequence 1. Used for short circuit data exchange according to IEC 60909.Usage: EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "positiveR12"@en . - . - . - . - "ShortCircuit" . - "Positive sequence series resistance from terminal sequence 1 to terminal sequence 2 . Used for short circuit data exchange according to IEC 60909.EquivalentBranch is a result of network reduction prior to the data exchange. "^^ . - . - . - "positiveR21"@en . - . - . - . - "ShortCircuit" . - "Positive sequence series resistance from terminal sequence 2 to terminal sequence 1. Used for short circuit data exchange according to IEC 60909EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "positiveX12"@en . - . - . - . - "ShortCircuit" . - "Positive sequence series reactance from terminal sequence 1 to terminal sequence 2. Used for short circuit data exchange according to IEC 60909Usage : EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "positiveX21"@en . - . - . - . - "ShortCircuit" . - "Positive sequence series reactance from terminal sequence 2 to terminal sequence 1. Used for short circuit data exchange according to IEC 60909Usage : EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "zeroR12"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series resistance from terminal sequence 1 to terminal sequence 2. Used for short circuit data exchange according to IEC 60909EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "zeroR21"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series resistance from terminal sequence 2 to terminal sequence 1. Used for short circuit data exchange according to IEC 60909Usage : EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "zeroX12"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series reactance from terminal sequence 1 to terminal sequence 2. Used for short circuit data exchange according to IEC 60909Usage : EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "zeroX21"@en . - . - . - . - "ShortCircuit" . - "Zero sequence series reactance from terminal sequence 2 to terminal sequence 1. Used for short circuit data exchange according to IEC 60909Usage : EquivalentBranch is a result of network reduction prior to the data exchange"^^ . - . - . - "r"@en . - . - . - . - "ShortCircuit" . - "Positive sequence resistance. Used to represent Extended-Ward (IEC 60909).Usage : Extended-Ward is a result of network reduction prior to the data exchange. "^^ . - . - . - "r0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence resistance. Used to represent Extended-Ward (IEC 60909).Usage : Extended-Ward is a result of network reduction prior to the data exchange. "^^ . - . - . - "r2"@en . - . - . - . - "ShortCircuit" . - "Negative sequence resistance. Used to represent Extended-Ward (IEC 60909).Usage : Extended-Ward is a result of network reduction prior to the data exchange. "^^ . - . - . - "x"@en . - . - . - . - "ShortCircuit" . - "Positive sequence reactance. Used to represent Extended-Ward (IEC 60909).Usage : Extended-Ward is a result of network reduction prior to the data exchange. "^^ . - . - . - "x0"@en . - . - . - . - "ShortCircuit" . - "Zero sequence reactance. Used to represent Extended-Ward (IEC 60909).Usage : Extended-Ward is a result of network reduction prior to the data exchange. "^^ . - . - . - "x2"@en . - . - . - . - "ShortCircuit" . - "Negative sequence reactance. Used to represent Extended-Ward (IEC 60909).Usage : Extended-Ward is a result of network reduction prior to the data exchange. "^^ . - . - _:node1gda76hcix338 . -_:node1gda76hcix338 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - _:node1gda76hcix339 . -_:node1gda76hcix339 "http://iec.ch/TC57/2013/61970-452/EquipmentCore/4" . - _:node1gda76hcix340 . -_:node1gda76hcix340 "http://iec.ch/TC57/2013/61970-452/EquipmentOperation/4" . - _:node1gda76hcix341 . -_:node1gda76hcix341 "http://iec.ch/TC57/2013/61970-452/EquipmentShortCircuit/4" . - _:node1gda76hcix342 . -_:node1gda76hcix342 "2014-08-07" . - _:node1gda76hcix343 . -_:node1gda76hcix343 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - _:node1gda76hcix344 . -_:node1gda76hcix344 "entsoe_v2.4.15" . - _:node1gda76hcix345 . -_:node1gda76hcix345 "http://entsoe.eu/CIM/EquipmentCore/3/1" . - _:node1gda76hcix346 . -_:node1gda76hcix346 "http://entsoe.eu/CIM/EquipmentOperation/3/1" . - _:node1gda76hcix347 . -_:node1gda76hcix347 "http://entsoe.eu/CIM/EquipmentShortCircuit/3/1" . - _:node1gda76hcix348 . -_:node1gda76hcix348 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - _:node1gda76hcix349 . -_:node1gda76hcix349 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - _:node1gda76hcix350 . -_:node1gda76hcix350 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - _:node1gda76hcix351 . -_:node1gda76hcix351 "EQ" . - _:node1gda76hcix352 . -_:node1gda76hcix352 "VA" . - _:node1gda76hcix353 . -_:node1gda76hcix353 "M" . - _:node1gda76hcix354 . -_:node1gda76hcix354 "W" . - _:node1gda76hcix355 . -_:node1gda76hcix355 "M" . - _:node1gda76hcix356 . -_:node1gda76hcix356 "V" . - _:node1gda76hcix357 . -_:node1gda76hcix357 "k" . - _:node1gda76hcix358 . -_:node1gda76hcix358 "ohm" . - _:node1gda76hcix359 . -_:node1gda76hcix359 "none" . - _:node1gda76hcix360 . -_:node1gda76hcix360 "none" . - _:node1gda76hcix361 . -_:node1gda76hcix361 "A" . - _:node1gda76hcix362 . -_:node1gda76hcix362 "M" . - _:node1gda76hcix363 . -_:node1gda76hcix363 "W" . - _:node1gda76hcix364 . -_:node1gda76hcix364 "deg" . - _:node1gda76hcix365 . -_:node1gda76hcix365 "none" . - _:node1gda76hcix366 . -_:node1gda76hcix366 "A" . - _:node1gda76hcix367 . -_:node1gda76hcix367 "none" . - _:node1gda76hcix368 . -_:node1gda76hcix368 "H" . - _:node1gda76hcix369 . -_:node1gda76hcix369 "none" . - _:node1gda76hcix370 . -_:node1gda76hcix370 "F" . - _:node1gda76hcix371 . -_:node1gda76hcix371 "none" . - _:node1gda76hcix372 . -_:node1gda76hcix372 "m" . - _:node1gda76hcix373 . -_:node1gda76hcix373 "k" . - _:node1gda76hcix374 . -_:node1gda76hcix374 "F" . - _:node1gda76hcix375 . -_:node1gda76hcix375 "none" . - _:node1gda76hcix376 . -_:node1gda76hcix376 "m" . - _:node1gda76hcix377 . -_:node1gda76hcix377 "none" . - _:node1gda76hcix378 . -_:node1gda76hcix378 "H" . - _:node1gda76hcix379 . -_:node1gda76hcix379 "none" . - _:node1gda76hcix380 . -_:node1gda76hcix380 "m" . - _:node1gda76hcix381 . -_:node1gda76hcix381 "none" . - _:node1gda76hcix382 . -_:node1gda76hcix382 "ohm" . - _:node1gda76hcix383 . -_:node1gda76hcix383 "none" . - _:node1gda76hcix384 . -_:node1gda76hcix384 "m" . - _:node1gda76hcix385 . -_:node1gda76hcix385 "none" . - _:node1gda76hcix386 . -_:node1gda76hcix386 "none" . - _:node1gda76hcix387 . -_:node1gda76hcix387 "none" . - _:node1gda76hcix388 . -_:node1gda76hcix388 "rad" . - _:node1gda76hcix389 . -_:node1gda76hcix389 "none" . - _:node1gda76hcix390 . -_:node1gda76hcix390 "ohm" . - _:node1gda76hcix391 . -_:node1gda76hcix391 "none" . - _:node1gda76hcix392 . -_:node1gda76hcix392 "EUR" . - _:node1gda76hcix393 . -_:node1gda76hcix393 "none" . - _:node1gda76hcix394 . -_:node1gda76hcix394 "s" . - _:node1gda76hcix395 . -_:node1gda76hcix395 "none" . - _:node1gda76hcix396 . -_:node1gda76hcix396 "S" . - _:node1gda76hcix397 . -_:node1gda76hcix397 "none" . - _:node1gda76hcix398 . -_:node1gda76hcix398 "S" . - _:node1gda76hcix399 . -_:node1gda76hcix399 "none" . - _:node1gda76hcix400 . -_:node1gda76hcix400 "none" . - _:node1gda76hcix401 . -_:node1gda76hcix401 "degC" . - _:node1gda76hcix402 . -_:node1gda76hcix402 "Hz" . - _:node1gda76hcix403 . -_:node1gda76hcix403 "none" . - _:node1gda76hcix404 . -_:node1gda76hcix404 "none" . - _:node1gda76hcix405 . -_:node1gda76hcix405 "none" . - _:node1gda76hcix406 . -_:node1gda76hcix406 "s" . - _:node1gda76hcix407 . -_:node1gda76hcix407 "none" . - _:node1gda76hcix408 . -_:node1gda76hcix408 "VAr" . - _:node1gda76hcix409 . -_:node1gda76hcix409 "M" . - _:node1gda76hcix410 . -_:node1gda76hcix410 "none" . - _:node1gda76hcix411 . -_:node1gda76hcix411 "Hz" . - _:node1gda76hcix412 . -_:node1gda76hcix412 "M" . - _:node1gda76hcix413 . -_:node1gda76hcix413 "W" . - _:node1gda76hcix414 . -_:node1gda76hcix414 "none" . - _:node1gda76hcix415 . -_:node1gda76hcix415 "none" . - _:node1gda76hcix416 . -_:node1gda76hcix416 "V" . - _:node1gda76hcix417 . -_:node1gda76hcix417 "M" . - _:node1gda76hcix418 . -_:node1gda76hcix418 "k" . - _:node1gda76hcix419 . -_:node1gda76hcix419 "VAr" . - "GeographicalLocationProfile"@en . - . - "This geographical location profile is built on the basis of the IEC profile. There is small difference in one association which is specific for exchanges between TSOs."^^ . - "GeographicalLocationVersion"@en . - "Version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix420 . -_:node1gda76hcix420 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix421 . -_:node1gda76hcix421 "http://entsoe.eu/Secretariat/2013/Geographical/2" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix422 . -_:node1gda76hcix422 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix423 . -_:node1gda76hcix423 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix424 . -_:node1gda76hcix424 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURI"@en . - . - . - . - _:node1gda76hcix425 . -_:node1gda76hcix425 "http://entsoe.eu/CIM/GeographicalLocation/2/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/GeographicalLocation/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix426 . -_:node1gda76hcix426 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix427 . -_:node1gda76hcix427 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix428 . -_:node1gda76hcix428 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix429 . -_:node1gda76hcix429 "GL" . - "The short name of the profile used in profile documentation."^^ . - . - "Common"@en . - . - "CoordinateSystem"@en . - . - "Coordinate reference system."^^ . - . - . - . - . - "crsUrn"@en . - . - . - . - "A Uniform Resource Name (URN) for the coordinate reference system (crs) used to define 'Location.PositionPoints'.An example would be the European Petroleum Survey Group (EPSG) code for a coordinate reference system, defined in URN under the Open Geospatial Consortium (OGC) namespace as: urn:ogc:def:uom:EPSG::XXXX, where XXXX is an EPSG code (a full list of codes can be found at the EPSG Registry web site http://www.epsg-registry.org/). To define the coordinate system as being WGS84 (latitude, longitude) using an EPSG OGC, this attribute would be urn:ogc:def:uom:EPSG::4236.A profile should limit this code to a set of allowed URNs agreed to by all sending and receiving parties."^^ . - . - "CoordinateSystem"@en . - "Coordinate system used to describe position points of this location."^^ . - . - . - . - . - "Yes" . - . - "Location"@en . - "All locations described with position points in this coordinate system."^^ . - . - . - . - . - "No" . - . - "Location"@en . - . - "The place, scene, or point of something where someone or something has been, is, and/or will be at a given moment in time. It can be defined with one or more postition points (coordinates) in a given coordinate system."^^ . - . - . - . - "PowerSystemResources"@en . - "All power system resources at this location."^^ . - . - . - . - . - "Yes" . - . - "Location"@en . - "Location of this power system resource."^^ . - . - . - . - . - "No" . - . - "PositionPoints"@en . - "Sequence of position points describing this location, expressed in coordinate system 'Location.CoordinateSystem'."^^ . - . - . - . - . - "No" . - . - "Location"@en . - "Location described by this position point."^^ . - . - . - . - . - "Yes" . - . - "PositionPoint"@en . - "Set of spatial coordinates that determine a point, defined in the coordinate system specified in 'Location.CoordinateSystem'. Use a single position point instance to desribe a point-oriented location. Use a sequence of position points to describe a line-oriented object (physical location of non-point oriented objects like cables or lines), or area of an object (like a substation or a geographical zone - in this case, have first and last position point with the same values)."^^ . - . - . - . - . - "sequenceNumber"@en . - . - . - . - "Zero-relative sequence number of this point within a series of points."^^ . - . - . - "xPosition"@en . - . - . - . - "X axis position."^^ . - . - . - "yPosition"@en . - . - . - . - "Y axis position."^^ . - . - . - "zPosition"@en . - . - . - . - "(if applicable) Z axis position."^^ . - . - "StateVariablesProfile"@en . - . - "This profile has been built on the basis of the IEC 61970-456 document and adjusted to fit the purpose of the ENTSO-E CGMES."^^ . - "StateVariablesVersion"@en . - "Version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix430 . -_:node1gda76hcix430 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix431 . -_:node1gda76hcix431 "http://iec.ch/TC57/2013/61970-456/StateVariables/4" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix432 . -_:node1gda76hcix432 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix433 . -_:node1gda76hcix433 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix434 . -_:node1gda76hcix434 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURI"@en . - . - . - . - _:node1gda76hcix435 . -_:node1gda76hcix435 "http://entsoe.eu/CIM/StateVariables/4/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/StateVariables/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix436 . -_:node1gda76hcix436 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix437 . -_:node1gda76hcix437 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix438 . -_:node1gda76hcix438 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix439 . -_:node1gda76hcix439 "SV" . - "The short name of the profile used in profile documentation."^^ . - . - "ConductingEquipment"@en . - "The conducting equipment associated with the status state variable."^^ . - . - . - . - . - "Yes" . - . - "SvStatus"@en . - "The status state variable associated with this conducting equipment."^^ . - . - . - . - . - "No" . - . - "Terminal"@en . - "The terminal associated with the power flow state variable."^^ . - . - . - . - . - "Yes" . - . - "SvPowerFlow"@en . - "The power flow state variable associated with the terminal."^^ . - . - . - . - . - "No" . - . - . - "idc"@en . - . - . - . - "Converter DC current, also called Id. Converter state variable, result from power flow."^^ . - . - _:node1gda76hcix440 . -_:node1gda76hcix440 "A" . - _:node1gda76hcix441 . -_:node1gda76hcix441 "none" . - . - "poleLossP"@en . - . - . - . - "The active power loss at a DC Pole= idleLoss + switchingLoss*|Idc| + resitiveLoss*Idc^2For lossless operation Pdc=PacFor rectifier operation with losses Pdc=Pac-lossPFor inverter operation with losses Pdc=Pac+lossPConverter state variable used in power flow."^^ . - . - _:node1gda76hcix442 . -_:node1gda76hcix442 "W" . - _:node1gda76hcix443 . -_:node1gda76hcix443 "M" . - . - "uc"@en . - . - . - . - "Converter voltage, the voltage at the AC side of the bridge. Converter state variable, result from power flow."^^ . - . - _:node1gda76hcix444 . -_:node1gda76hcix444 "V" . - _:node1gda76hcix445 . -_:node1gda76hcix445 "k" . - . - "udc"@en . - . - . - . - "Converter voltage at the DC side, also called Ud. Converter state variable, result from power flow."^^ . - . - "Description" . - . - "alpha"@en . - . - . - . - "Firing angle, typical value between 10 and 18 degrees for a rectifier. CSC state variable, result from power flow."^^ . - . - _:node1gda76hcix446 . -_:node1gda76hcix446 "deg" . - _:node1gda76hcix447 . -_:node1gda76hcix447 "none" . - . - "gamma"@en . - . - . - . - "Extinction angle. CSC state variable, result from power flow."^^ . - . - "DCTopologicalIsland"@en . - . - "An electrically connected subset of the network. DC topological islands can change as the current network state changes: e.g. due to- disconnect switches or breakers change state in a SCADA/EMS- manual creation, change or deletion of topological nodes in a planning tool."^^ . - . - . - . - "DCTopologicalIsland"@en . - . - . - . - . - "No" . - . - "DCTopologicalNodes"@en . - . - . - . - . - "Yes" . - . - "Description" . - . - "delta"@en . - . - . - . - "Angle between uf and uc. Converter state variable used in power flow."^^ . - . - . - "uf"@en . - . - . - . - "Filter bus voltage. Converter state variable, result from power flow."^^ . - . - "StateVariables"@en . - . - "SvStatus"@en . - "State variable for status."^^ . - "Operation" . - . - . - . - . - "inService"@en . - . - . - . - "The in service status as a result of topology processing."^^ . - . - "SvInjection"@en . - "The SvInjection is reporting the calculated bus injection minus the sum of the terminal flows. The terminal flow is positive out from the bus (load sign convention) and bus injection has positive flow into the bus. SvInjection may have the remainder after state estimation or slack after power flow calculation."^^ . - . - . - . - . - "pInjection"@en . - . - . - . - "The active power injected into the bus in addition to injections from equipment terminals. Positive sign means injection into the TopologicalNode (bus)."^^ . - . - . - "qInjection"@en . - . - . - . - "The reactive power injected into the bus in addition to injections from equipment terminals. Positive sign means injection into the TopologicalNode (bus)."^^ . - . - _:node1gda76hcix448 . -_:node1gda76hcix448 "VAr" . - _:node1gda76hcix449 . -_:node1gda76hcix449 "M" . - "SvInjection"@en . - "The topological node associated with the flow injection state variable."^^ . - . - . - . - . - "No" . - . - "TopologicalNode"@en . - "The injection flows state variables associated with the topological node."^^ . - . - . - . - . - "Yes" . - . - "SvPowerFlow"@en . - "State variable for power flow. Load convention is used for flow direction. This means flow out from the TopologicalNode into the equipment is positive."^^ . - . - . - . - . - "p"@en . - . - . - . - "The active power flow. Load sign convention is used, i.e. positive sign means flow out from a TopologicalNode (bus) into the conducting equipment."^^ . - . - . - "q"@en . - . - . - . - "The reactive power flow. Load sign convention is used, i.e. positive sign means flow out from a TopologicalNode (bus) into the conducting equipment."^^ . - . - "SvShuntCompensatorSections"@en . - "State variable for the number of sections in service for a shunt compensator."^^ . - . - . - . - . - "sections"@en . - . - . - . - "The number of sections in service as a continous variable. To get integer value scale with ShuntCompensator.bPerSection."^^ . - . - "ShuntCompensator"@en . - "The shunt compensator for which the state applies."^^ . - . - . - . - . - "Yes" . - . - "SvShuntCompensatorSections"@en . - "The state for the number of shunt compensator sections in service."^^ . - . - . - . - . - "No" . - . - "SvTapStep"@en . - "State variable for transformer tap step. This class is to be used for taps of LTC (load tap changing) transformers, not fixed tap transformers."^^ . - . - . - . - . - "position"@en . - . - . - . - "The floating point tap position. This is not the tap ratio, but rather the tap step position as defined by the related tap changer model and normally is constrained to be within the range of minimum and maximum tap positions."^^ . - . - "TapChanger"@en . - "The tap changer associated with the tap step state."^^ . - . - . - . - . - "Yes" . - . - "SvTapStep"@en . - "The tap step state associated with the tap changer."^^ . - . - . - . - . - "No" . - . - "SvVoltage"@en . - "State variable for voltage."^^ . - . - . - . - . - "angle"@en . - . - . - . - "The voltage angle of the topological node complex voltage with respect to system reference."^^ . - . - . - "v"@en . - . - . - . - "The voltage magnitude of the topological node."^^ . - . - "SvVoltage"@en . - "The topological node associated with the voltage state."^^ . - . - . - . - . - "No" . - . - "TopologicalNode"@en . - "The state voltage associated with the topological node."^^ . - . - . - . - . - "Yes" . - . - "DCTopologicalNode"@en . - . - "DC bus."^^ . - . - . - "TopologicalNode"@en . - "For a detailed substation model a topological node is a set of connectivity nodes that, in the current network state, are connected together through any type of closed switches, including jumpers. Topological nodes change as the current network state changes (i.e., switches, breakers, etc. change state).For a planning model, switch statuses are not used to form topological nodes. Instead they are manually created or deleted in a model builder tool. Topological nodes maintained this way are also called \"busses\"."^^ . - . - . - "AngleRefTopologicalNode"@en . - "The angle reference for the island. Normally there is one TopologicalNode that is selected as the angle reference for each island. Other reference schemes exist, so the association is typically optional."^^ . - . - . - . - . - "Yes" . - . - "AngleRefTopologicalIsland"@en . - "The island for which the node is an angle reference. Normally there is one angle reference node for each island."^^ . - . - . - . - . - "No" . - . - "TopologicalNodes"@en . - "A topological node belongs to a topological island."^^ . - . - . - . - . - "Yes" . - . - "TopologicalIsland"@en . - "A topological node belongs to a topological island."^^ . - . - . - . - . - "No" . - . - "TopologicalIsland"@en . - . - "An electrically connected subset of the network. Topological islands can change as the current network state changes: e.g. due to- disconnect switches or breakers change state in a SCADA/EMS- manual creation, change or deletion of topological nodes in a planning tool."^^ . - . - . - . - "SteadyStateHypothesisProfile"@en . - . - "This profile has been built on the basis of the IEC 61970-456 document and adjusted to fit the purpose of the ENTSO-E CGMES."^^ . - "SteadyStateHypothesisVersion"@en . - "Version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix450 . -_:node1gda76hcix450 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix451 . -_:node1gda76hcix451 " http://iec.ch/TC57/2013/61970-456/SteadyStateHypothesis/1" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix452 . -_:node1gda76hcix452 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix453 . -_:node1gda76hcix453 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix454 . -_:node1gda76hcix454 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURI"@en . - . - . - . - _:node1gda76hcix455 . -_:node1gda76hcix455 "http://entsoe.eu/CIM/SteadyStateHypothesis/1/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/SteadyStateHypothesis/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix456 . -_:node1gda76hcix456 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix457 . -_:node1gda76hcix457 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix458 . -_:node1gda76hcix458 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix459 . -_:node1gda76hcix459 "SSH" . - "The short name of the profile used in profile documentation."^^ . - . - . - "connected"@en . - . - . - . - "The connected status is related to a bus-branch model and the topological node to terminal relation. True implies the terminal is connected to the related topological node and false implies it is not.In a bus-branch model, the connected status is used to tell if equipment is disconnected without having to change the connectivity described by the topological node to terminal relation. A valid case is that conducting equipment can be connected in one end and open in the other. In particular for an AC line segment, where the reactive line charging can be significant, this is a relevant case."^^ . - . - "Description" . - "Description" . - . - "netInterchange"@en . - . - . - . - "The specified positive net interchange into the control area, i.e. positive sign means flow in to the area."^^ . - . - _:node1gda76hcix460 . -_:node1gda76hcix460 "W" . - _:node1gda76hcix461 . -_:node1gda76hcix461 "M" . - . - "pTolerance"@en . - . - . - . - "Active power net interchange tolerance"^^ . - . - . - "p"@en . - . - . - . - "Active power at the point of common coupling. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for a steady state solution in the case a simplified power flow model is used."^^ . - . - . - "q"@en . - . - . - . - "Reactive power at the point of common coupling. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for a steady state solution in the case a simplified power flow model is used."^^ . - . - _:node1gda76hcix462 . -_:node1gda76hcix462 "VAr" . - _:node1gda76hcix463 . -_:node1gda76hcix463 "M" . - . - "targetPpcc"@en . - . - . - . - "Real power injection target in AC grid, at point of common coupling."^^ . - . - . - "targetUdc"@en . - . - . - . - "Target value for DC voltage magnitude."^^ . - . - _:node1gda76hcix464 . -_:node1gda76hcix464 "V" . - _:node1gda76hcix465 . -_:node1gda76hcix465 "k" . - "Description" . - . - "operatingMode"@en . - . - . - . - "Indicates whether the DC pole is operating as an inverter or as a rectifier. CSC control variable used in power flow."^^ . - . - "CsOperatingModeKind"@en . - "Operating mode for HVDC line operating as Current Source Converter."^^ . - . - . - . - "inverter"@en . - "Operating as inverter"^^ . - . - "rectifier"@en . - "Operating as rectifier."^^ . - . - . - "pPccControl"@en . - . - . - . - . - "CsPpccControlKind"@en . - "Active power control modes for HVDC line operating as Current Source Converter."^^ . - . - . - . - "activePower"@en . - "Active power control at AC side."^^ . - . - "dcVoltage"@en . - "DC voltage control."^^ . - . - "dcCurrent"@en . - "DC current control"^^ . - . - . - "targetAlpha"@en . - . - . - . - "Target firing angle. CSC control variable used in power flow."^^ . - . - _:node1gda76hcix466 . -_:node1gda76hcix466 "deg" . - _:node1gda76hcix467 . -_:node1gda76hcix467 "none" . - . - "targetGamma"@en . - . - . - . - "Target extinction angle. CSC control variable used in power flow."^^ . - . - . - "targetIdc"@en . - . - . - . - "DC current target value. CSC control variable used in power flow."^^ . - . - _:node1gda76hcix468 . -_:node1gda76hcix468 "A" . - _:node1gda76hcix469 . -_:node1gda76hcix469 "none" . - "Description" . - . - "droop"@en . - . - . - . - "Droop constant; pu value is obtained as D [kV^2 / MW] x Sb / Ubdc^2."^^ . - . - _:node1gda76hcix470 . -_:node1gda76hcix470 "none" . - _:node1gda76hcix471 . -_:node1gda76hcix471 "none" . - . - "droopCompensation"@en . - . - . - . - "Compensation (resistance) constant. Used to compensate for voltage drop when controlling voltage at a distant bus."^^ . - . - _:node1gda76hcix472 . -_:node1gda76hcix472 "ohm" . - _:node1gda76hcix473 . -_:node1gda76hcix473 "none" . - . - "pPccControl"@en . - . - . - . - "Kind of control of real power and/or DC voltage."^^ . - . - "VsPpccControlKind"@en . - "Types applicable to the control of real power and/or DC voltage by voltage source converter."^^ . - . - . - . - "pPcc"@en . - "Control variable (target) is real power at PCC bus."^^ . - . - "udc"@en . - "Control variable (target) is DC voltage and real power at PCC bus is derived."^^ . - . - "pPccAndUdcDroop"@en . - "Control variables (targets) are both active power at point of common coupling and local DC voltage, with the droop."^^ . - . - "pPccAndUdcDroopWithCompensation"@en . - "Control variables (targets) are both active power at point of common coupling and compensated DC voltage, with the droop; compensation factor is the resistance, as an approximation of the DC voltage of a common (real or virtual) node in the DC network."^^ . - . - "pPccAndUdcDroopPilot"@en . - "Control variables (targets) are both active power at point of common coupling and the pilot DC voltage, with the droop."^^ . - . - . - "qPccControl"@en . - . - . - . - . - "VsQpccControlKind"@en . - . - . - . - "reactivePcc"@en . - . - "voltagePcc"@en . - . - "powerFactorPcc"@en . - . - . - "qShare"@en . - . - . - . - "Reactive power sharing factor among parallel converters on Uac control."^^ . - . - _:node1gda76hcix474 . -_:node1gda76hcix474 "none" . - _:node1gda76hcix475 . -_:node1gda76hcix475 "none" . - . - "targetQpcc"@en . - . - . - . - "Reactive power injection target in AC grid, at point of common coupling."^^ . - . - . - "targetUpcc"@en . - . - . - . - "Voltage target in AC grid, at point of common coupling."^^ . - . - "Description" . - . - "regulationStatus"@en . - . - . - . - "Specifies the default regulation status of the EquivalentInjection. True is regulating. False is not regulating."^^ . - . - . - "regulationTarget"@en . - . - . - . - "The target voltage for voltage regulation."^^ . - . - . - "p"@en . - . - . - . - "Equivalent active power injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for steady state solutions."^^ . - . - . - "q"@en . - . - . - . - "Equivalent reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for steady state solutions."^^ . - . - "Generation"@en . - . - "Description" . - . - . - "normalPF"@en . - . - . - . - "Generating unit economic participation factor."^^ . - . - "Description" . - . - "Description" . - . - "Description" . - . - "Description" . - . - "Description" . - . - "Description" . - . - "asynchronousMachineType"@en . - . - . - . - "Indicates the type of Asynchronous Machine (motor or generator)."^^ . - . - "AsynchronousMachineKind"@en . - "Kind of Asynchronous Machine."^^ . - . - . - . - "generator"@en . - "The Asynchronous Machine is a generator."^^ . - . - "motor"@en . - "The Asynchronous Machine is a motor."^^ . - . - "Description" . - "Description" . - . - "p"@en . - . - . - . - "Active power of the load. Load sign convention is used, i.e. positive sign means flow out from a node.For voltage dependent loads the value is at rated voltage.Starting value for a steady state solution."^^ . - . - . - "q"@en . - . - . - . - "Reactive power of the load. Load sign convention is used, i.e. positive sign means flow out from a node.For voltage dependent loads the value is at rated voltage.Starting value for a steady state solution."^^ . - . - "Description" . - . - "activePower"@en . - . - . - . - "High voltage source active injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for steady state solutions."^^ . - . - . - "reactivePower"@en . - . - . - . - "High voltage source reactive injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for steady state solutions."^^ . - . - "Description" . - . - "referencePriority"@en . - . - . - . - "Priority of unit for use as powerflow voltage phase angle reference bus selection. 0 = don t care (default) 1 = highest priority. 2 is less than 1 and so on."^^ . - . - . - "p"@en . - . - . - . - "Active power injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for steady state solutions."^^ . - . - . - "q"@en . - . - . - . - "Reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for steady state solutions."^^ . - . - "Description" . - "Description" . - "Description" . - "Description" . - "Description" . - "Description" . - "Description" . - . - "controlEnabled"@en . - . - . - . - "Specifies the regulation status of the equipment. True is regulating, false is not regulating."^^ . - . - . - "p"@en . - . - . - . - "Active power injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for a steady state solution."^^ . - . - . - "q"@en . - . - . - . - "Reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for a steady state solution."^^ . - . - "Description" . - . - "q"@en . - . - . - . - "Reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node.Starting value for a steady state solution."^^ . - . - "Description" . - . - "open"@en . - . - . - . - "The attribute tells if the switch is considered open when used as input to topology processing."^^ . - . - "Description" . - . - "operatingMode"@en . - . - . - . - "Current mode of operation."^^ . - . - "SynchronousMachineOperatingMode"@en . - "Synchronous machine operating mode."^^ . - . - . - . - "generator"@en . - . - "condenser"@en . - . - "motor"@en . - . - . - "referencePriority"@en . - . - . - . - "Priority of unit for use as powerflow voltage phase angle reference bus selection. 0 = don t care (default) 1 = highest priority. 2 is less than 1 and so on."^^ . - . - "Description" . - "Description" . - "Description" . - "Description" . - . - "discrete"@en . - . - . - . - "The regulation is performed in a discrete mode. This applies to equipment with discrete controls, e.g. tap changers and shunt compensators."^^ . - . - . - "enabled"@en . - . - . - . - "The flag tells if regulation is enabled."^^ . - . - . - "targetDeadband"@en . - . - . - . - "This is a deadband used with discrete control to avoid excessive update of controls like tap changers and shunt compensator banks while regulating.The units of those appropriate for the mode."^^ . - . - . - "targetValue"@en . - . - . - . - "The target value specified for case input. This value can be used for the target value without the use of schedules. The value has the units appropriate to the mode attribute."^^ . - . - . - "targetValueUnitMultiplier"@en . - . - . - . - "Specify the multiplier for used for the targetValue."^^ . - . - . - "sections"@en . - . - . - . - "Shunt compensator sections in use.Starting value for steady state solution. Non integer values are allowed to support continuous variables. The reasons for continuous value are to support study cases where no discrete shunt compensators has yet been designed, a solutions where a narrow voltage band force the sections to oscillate or accommodate for a continuous solution as input."^^ . - . - . - "controlEnabled"@en . - . - . - . - "Specifies the regulation status of the equipment. True is regulating, false is not regulating."^^ . - . - . - "step"@en . - . - . - . - "Tap changer position.Starting step for a steady state solution. Non integer values are allowed to support continuous tap variables. The reasons for continuous value are to support study cases where no discrete tap changers has yet been designed, a solutions where a narrow voltage band force the tap step to oscillate or accommodate for a continuous solution as input.The attribute shall be equal or greater than lowStep and equal or less than highStep."^^ . - . - "Description" . - "Description" . - "Description" . - "TopologyBoundaryProfile"@en . - . - "This profile has been built on the basis of the IEC 61970-456 document and adjusted to fit the purpose of the ENTSO-E boundary profile."^^ . - "TopologyBoundaryVersion"@en . - "Version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix476 . -_:node1gda76hcix476 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix477 . -_:node1gda76hcix477 "http://iec.ch/TC57/2013/61970-456/TopologyBoundary/3" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix478 . -_:node1gda76hcix478 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix479 . -_:node1gda76hcix479 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix480 . -_:node1gda76hcix480 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURI"@en . - . - . - . - _:node1gda76hcix481 . -_:node1gda76hcix481 "http://entsoe.eu/CIM/TopologyBoundary/3/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/TopologyBoundary/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix482 . -_:node1gda76hcix482 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix483 . -_:node1gda76hcix483 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix484 . -_:node1gda76hcix484 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix485 . -_:node1gda76hcix485 "TP_BD" . - "The short name of the profile used in profile documentation."^^ . - . - "BaseVoltage"@en . - "The base voltage of the topologocial node."^^ . - . - . - . - . - "Yes" . - . - "TopologicalNode"@en . - "The topological nodes at the base voltage."^^ . - . - . - . - . - "No" . - . - "Description" . - "TopologicalNode"@en . - "The topological node to which this connectivity node is assigned. May depend on the current state of switches in the network."^^ . - . - . - . - . - "Yes" . - . - "ConnectivityNodes"@en . - "The connectivity nodes combine together to form this topological node. May depend on the current state of switches in the network."^^ . - . - . - . - . - . - "No" . - . - "ConnectivityNodeContainer"@en . - "The connectivity node container to which the toplogical node belongs."^^ . - . - . - . - . - "Yes" . - . - "TopologicalNode"@en . - "The topological nodes which belong to this connectivity node container."^^ . - . - . - . - . - "No" . - . - . - . - . - "boundaryPoint"@en . - . - . - . - "Entsoe" . - "Identifies if a node is a BoundaryPoint. If boundaryPoint=true the ConnectivityNode or the TopologicalNode represents a BoundaryPoint. "^^ . - . - . - "fromEndIsoCode"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the ISO code of the region to which the “From” side of the Boundary point belongs to or it is connected to.The ISO code is two characters country code as defined by ISO 3166 (http://www.iso.org/iso/country_codes). The length of the string is 2 characters maximum.The attribute is a required for the Boundary Model Authority Set where this attribute is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "fromEndName"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of a human readable name with length of the string 32 characters maximum. The attribute covers two cases:
    \t
  • if the Boundary point is placed on a tie-line the attribute is used for exchange of the geographical name of the substation to which the “From” side of the tie-line is connected to.
  • \t
  • if the Boundary point is placed in a substation the attribute is used for exchange of the name of the element (e.g. PowerTransformer, ACLineSegment, Switch, etc) to which the “From” side of the Boundary point is connected to.
The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "fromEndNameTso"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the name of the TSO to which the “From” side of the Boundary point belongs to or it is connected to. The length of the string is 32 characters maximum.The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile. "^^ . - . - . - "toEndIsoCode"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the ISO code of the region to which the “To” side of the Boundary point belongs to or it is connected to.The ISO code is two characters country code as defined by ISO 3166 (http://www.iso.org/iso/country_codes). The length of the string is 2 characters maximum.The attribute is a required for the Boundary Model Authority Set where this attribute is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "toEndName"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of a human readable name with length of the string 32 characters maximum. The attribute covers two cases:
    \t
  • if the Boundary point is placed on a tie-line the attribute is used for exchange of the geographical name of the substation to which the “To” side of the tie-line is connected to.
  • \t
  • if the Boundary point is placed in a substation the attribute is used for exchange of the name of the element (e.g. PowerTransformer, ACLineSegment, Switch, etc) to which the “To” side of the Boundary point is connected to.
The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile."^^ . - . - . - "toEndNameTso"@en . - . - . - . - "Entsoe" . - "The attribute is used for an exchange of the name of the TSO to which the “To” side of the Boundary point belongs to or it is connected to. The length of the string is 32 characters maximum.The attribute is required for the Boundary Model Authority Set where it is used only for the TopologicalNode in the Boundary Topology profile and ConnectivityNode in the Boundary Equipment profile. "^^ . - . - "TopologyProfile"@en . - . - "This profile has been built on the basis of the IEC 61970-456 document and adjusted to fit the purpose of the ENTSO-E CGMES."^^ . - "TopologyVersion"@en . - "Version details."^^ . - "Entsoe" . - . - . - . - "baseUML"@en . - . - . - . - _:node1gda76hcix486 . -_:node1gda76hcix486 "iec61970cim16v28_iec61968cim12v08_iec62325cim03v01a" . - "Base UML provided by CIM model manager."^^ . - . - . - "baseURI"@en . - . - . - . - _:node1gda76hcix487 . -_:node1gda76hcix487 "http://iec.ch/TC57/2013/61970-456/Topology/4" . - "Profile URI used in the Model Exchange header and defined in IEC standards. It uniquely identifies the Profile and its version. It is given for information only and to identify the closest IEC profile to which this CGMES profile is based on."^^ . - . - . - "date"@en . - . - . - . - _:node1gda76hcix488 . -_:node1gda76hcix488 "2014-08-07" . - "Profile creation dateForm is YYYY-MM-DD for example for January 5, 2009 it is 2009-01-05."^^ . - . - . - "differenceModelURI"@en . - . - . - . - _:node1gda76hcix489 . -_:node1gda76hcix489 "http://iec.ch/TC57/61970-552/DifferenceModel/1#" . - "Difference model URI defined by IEC 61970-552. "^^ . - . - . - "entsoeUML"@en . - . - . - . - _:node1gda76hcix490 . -_:node1gda76hcix490 "entsoe_v2.4.15" . - "UML provided by ENTSO-E."^^ . - . - . - "entsoeURI"@en . - . - . - . - _:node1gda76hcix491 . -_:node1gda76hcix491 "http://entsoe.eu/CIM/Topology/4/1" . - "Profile URI defined by ENTSO-E and used in the Model Exchange header. It uniquely identifies the Profile and its version. The last two elements in the URI (http://entsoe.eu/CIM/Topology/yy/zzz) indicate major and minor versions where:- yy - indicates a major version;- zzz - indicates a minor version. "^^ . - . - . - "modelDescriptionURI"@en . - . - . - . - _:node1gda76hcix492 . -_:node1gda76hcix492 "http://iec.ch/TC57/61970-552/ModelDescription/1#" . - "Model Description URI defined by IEC 61970-552. "^^ . - . - . - "namespaceRDF"@en . - . - . - . - _:node1gda76hcix493 . -_:node1gda76hcix493 "http://www.w3.org/1999/02/22-rdf-syntax-ns#" . - "RDF namespace. "^^ . - . - . - "namespaceUML"@en . - . - . - . - _:node1gda76hcix494 . -_:node1gda76hcix494 "http://iec.ch/TC57/2013/CIM-schema-cim16#" . - "CIM UML namespace. "^^ . - . - . - "shortName"@en . - . - . - . - _:node1gda76hcix495 . -_:node1gda76hcix495 "TP" . - "The short name of the profile used in profile documentation."^^ . - . - "Contains the core PowerSystemResource and ConductingEquipment entities "^^ . - . - "The topological node to which this connectivity node is assigned. May depend on the current state of switches in the network."^^ . - "The connectivity nodes combine together to form this topological node. May depend on the current state of switches in the network."^^ . - "TopologicalNode"@en . - "The reporting group to which the topological node belongs."^^ . - . - . - . - . - "No" . - . - "ReportingGroup"@en . - "The topological nodes that belong to the reporting group."^^ . - . - . - . - . - "Yes" . - . - . - "Terminal"@en . - "The topological node associated with the terminal. This can be used as an alternative to the connectivity node path to topological node, thus making it unneccesary to model connectivity nodes in some cases. Note that the if connectivity nodes are in the model, this association would probably not be used as an input specification."^^ . - . - . - . - . - "No" . - . - "TopologicalNode"@en . - "The terminals associated with the topological node. This can be used as an alternative to the connectivity node path to terminal, thus making it unneccesary to model connectivity nodes in some cases. Note that if connectivity nodes are in the model, this association would probably not be used as an input specification."^^ . - . - . - . - . - "Yes" . - . - "DCTerminals"@en . - "See association end Terminal.TopologicalNode."^^ . - . - . - . - . - "No" . - . - "DCTopologicalNode"@en . - "See association end TopologicalNode.Terminal."^^ . - . - . - . - . - "Yes" . - . - "DCEquipmentContainer"@en . - . - . - . - . - "Yes" . - . - "DCTopologicalNode"@en . - . - . - . - . - "No" . - . - "Description" . - "DCNodes"@en . - "See association end ConnectivityNode.TopologicalNode."^^ . - . - . - . - . - "No" . - . - "DCTopologicalNode"@en . - "See association end TopologicalNode.ConnectivityNodes."^^ . - . - . - . - . - "Yes" . - . - . - . - . - "2030-01-02T09:00:00" . - "2015-02-02T13:01:25.830" . - "CGMES Conformity Assessment: Small Grid Base Case Test Configuration. The model is owned by ENTSO-E and is provided by ENTSO-E \"as it is\". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. ENTSO-E web site is the only official source of information related to the model." . - "4" . - "http://entsoe.eu/CIM/EquipmentCore/3/1" . - "http://GB/Planning/ENTSOE/2" . - . - . - "31-32_0" . - "33"^^ . - . - . - . - "31-32_1" . - "220"^^ . - . - . - . - "2-12_0" . - "132"^^ . - . - . - . - "2-12_1" . - "85"^^ . - . - . - . - "32-114_0" . - "450"^^ . - . - . - . - "32-114_1" . - "7"^^ . - . - . - . - "24-72_0" . - "4"^^ . - . - . - . - "24-72_1" . - "36"^^ . - . - . - . - "17-18_0" . - "252"^^ . - . - . - . - "17-18_1" . - "513.437439"^^ . - . - . - . - "17-113_0" . - "391"^^ . - . - . - . - "17-113_1" . - "204"^^ . - . - . - . - "49-50_0" . - "392"^^ . - . - . - . - "49-50_1" . - "220"^^ . - . - . - . - "1-3_0" . - "40"^^ . - . - . - . - "1-3_1" . - "19"^^ . - . - . - . - "92-102_0" . - "477"^^ . - . - . - . - "92-102_1" . - "607"^^ . - . - . - . - "93-94_0" . - "314"^^ . - . - . - . - "93-94_1" . - "155"^^ . - . - . - . - "46-48_0" . - "160"^^ . - . - . - . - "46-48_1" . - "48"^^ . - . - . - . - "49-66_0" . - "160"^^ . - . - . - . - "49-66_1" . - "600"^^ . - . - . - . - "75-118_0" . - "40"^^ . - . - . - . - "75-118_1" . - "40"^^ . - . - . - . - "94-96_0" . - "40"^^ . - . - . - . - "94-96_1" . - "400"^^ . - . - . - . - "62-67_0" . - "800"^^ . - . - . - . - "62-67_1" . - "400"^^ . - . - . - . - "47-49_0" . - "400"^^ . - . - . - . - "47-49_1" . - "400"^^ . - . - . - . - "100-106_0" . - "400"^^ . - . - . - . - "100-106_1" . - "160"^^ . - . - . - . - "77-78_0" . - "40"^^ . - . - . - . - "77-78_1" . - "600"^^ . - . - . - . - "6-7_0" . - "800"^^ . - . - . - . - "6-7_1" . - "400"^^ . - . - . - . - "77-80_0" . - "240"^^ . - . - . - . - "77-80_1" . - "240"^^ . - . - . - . - "78-79_0" . - "80"^^ . - . - . - . - "78-79_1" . - "50"^^ . - . - . - . - "103-104_0" . - "300"^^ . - . - . - . - "103-104_1" . - "0"^^ . - . - . - . - "95-96_0" . - "0"^^ . - . - . - . - "95-96_1" . - "20"^^ . - . - . - . - "77-80_0" . - "200"^^ . - . - . - . - "77-80_1" . - "400"^^ . - . - . - . - "5-11_0" . - "200"^^ . - . - . - . - "5-11_1" . - "100"^^ . - . - . - . - "71-72_0" . - "200"^^ . - . - . - . - "71-72_1" . - "100"^^ . - . - . - . - "66-67_0" . - "0"^^ . - . - . - . - "66-67_1" . - "0"^^ . - . - . - . - "34-43_0" . - "300"^^ . - . - . - . - "34-43_1" . - "400"^^ . - . - . - . - "52-53_0" . - "100"^^ . - . - . - . - "52-53_1" . - "120"^^ . - . - . - . - "105-107_0" . - "120"^^ . - . - . - . - "105-107_1" . - "20"^^ . - . - . - . - "100-101_0" . - "1"^^ . - . - . - . - "100-101_1" . - "2"^^ . - . - . - . - "56-57_0" . - "1"^^ . - . - . - . - "56-57_1" . - "2"^^ . - . - . - . - "47-69_0" . - "1"^^ . - . - . - . - "47-69_1" . - "2"^^ . - . - . - . - "110-111_0" . - "1"^^ . - . - . - . - "110-111_1" . - "2"^^ . - . - . - . - "41-42_0" . - "1"^^ . - . - . - . - "41-42_1" . - "2"^^ . - . - . - . - "80-99_0" . - "1"^^ . - . - . - . - "80-99_1" . - "2"^^ . - . - . - . - "54-59_0" . - "1"^^ . - . - . - . - "54-59_1" . - "2"^^ . - . - . - . - "68-116_0" . - "1"^^ . - . - . - . - "68-116_1" . - "2"^^ . - . - . - . - "92-94_0" . - "1"^^ . - . - . - . - "92-94_1" . - "2"^^ . - . - . - . - "37-39_0" . - "1"^^ . - . - . - . - "37-39_1" . - "2"^^ . - . - . - . - "46-47_0" . - "1"^^ . - . - . - . - "46-47_1" . - "2"^^ . - . - . - . - "30-38_0" . - "1"^^ . - . - . - . - "30-38_1" . - "2"^^ . - . - . - . - "82-83_0" . - "1"^^ . - . - . - . - "82-83_1" . - "2"^^ . - . - . - . - "108-109_0" . - "1"^^ . - . - . - . - "108-109_1" . - "2"^^ . - . - . - . - "70-74_0" . - "1"^^ . - . - . - . - "70-74_1" . - "2"^^ . - . - . - . - "77-82_0" . - "1"^^ . - . - . - . - "77-82_1" . - "2"^^ . - . - . - . - "23-24_0" . - "1"^^ . - . - . - . - "23-24_1" . - "2"^^ . - . - . - . - "15-17_0" . - "1"^^ . - . - . - . - "15-17_1" . - "2"^^ . - . - . - . - "8-30_0" . - "1"^^ . - . - . - . - "8-30_1" . - "2"^^ . - . - . - . - "49-69_0" . - "1"^^ . - . - . - . - "49-69_1" . - "2"^^ . - . - . - . - "13-15_0" . - "1"^^ . - . - . - . - "13-15_1" . - "2"^^ . - . - . - . - "69-70_0" . - "1"^^ . - . - . - . - "69-70_1" . - "2"^^ . - . - . - . - "19-20_0" . - "1"^^ . - . - . - . - "19-20_1" . - "2"^^ . - . - . - . - "94-95_0" . - "1"^^ . - . - . - . - "94-95_1" . - "2"^^ . - . - . - . - "12-16_0" . - "1"^^ . - . - . - . - "12-16_1" . - "2"^^ . - . - . - . - "100-103_0" . - "1"^^ . - . - . - . - "100-103_1" . - "2"^^ . - . - . - . - "27-32_0" . - "1"^^ . - . - . - . - "27-32_1" . - "2"^^ . - . - . - . - "59-61_0" . - "1"^^ . - . - . - . - "59-61_1" . - "2"^^ . - . - . - . - "100-104_0" . - "1"^^ . - . - . - . - "100-104_1" . - "2"^^ . - . - . - . - "75-77_0" . - "1"^^ . - . - . - . - "75-77_1" . - "2"^^ . - . - . - . - "23-32_0" . - "1"^^ . - . - . - . - "23-32_1" . - "2"^^ . - . - . - . - "96-97_0" . - "1"^^ . - . - . - . - "96-97_1" . - "2"^^ . - . - . - . - "25-27_0" . - "1"^^ . - . - . - . - "25-27_1" . - "2"^^ . - . - . - . - "110-112_0" . - "1"^^ . - . - . - . - "110-112_1" . - "2"^^ . - . - . - . - "89-92_0" . - "1"^^ . - . - . - . - "89-92_1" . - "2"^^ . - . - . - . - "49-54_0" . - "1"^^ . - . - . - . - "49-54_1" . - "2"^^ . - . - . - . - "40-41_0" . - "1"^^ . - . - . - . - "40-41_1" . - "2"^^ . - . - . - . - "39-40_0" . - "1"^^ . - . - . - . - "39-40_1" . - "2"^^ . - . - . - . - "89-92_0" . - "1"^^ . - . - . - . - "89-92_1" . - "2"^^ . - . - . - . - "33-37_0" . - "1"^^ . - . - . - . - "33-37_1" . - "2"^^ . - . - . - . - "105-108_0" . - "1"^^ . - . - . - . - "105-108_1" . - "2"^^ . - . - . - . - "34-37_0" . - "1"^^ . - . - . - . - "34-37_1" . - "2"^^ . - . - . - . - "61-62_0" . - "1"^^ . - . - . - . - "61-62_1" . - "2"^^ . - . - . - . - "101-102_0" . - "1"^^ . - . - . - . - "101-102_1" . - "2"^^ . - . - . - . - "26-30_0" . - "1"^^ . - . - . - . - "26-30_1" . - "2"^^ . - . - . - . - "42-49_0" . - "1"^^ . - . - . - . - "42-49_1" . - "2"^^ . - . - . - . - "105-106_0" . - "1"^^ . - . - . - . - "105-106_1" . - "2"^^ . - . - . - . - "60-61_0" . - "1"^^ . - . - . - . - "60-61_1" . - "2"^^ . - . - . - . - "23-25_0" . - "1"^^ . - . - . - . - "23-25_1" . - "2"^^ . - . - . - . - "19-34_0" . - "1"^^ . - . - . - . - "19-34_1" . - "2"^^ . - . - . - . - "59-60_0" . - "1"^^ . - . - . - . - "59-60_1" . - "2"^^ . - . - . - . - "15-19_0" . - "1"^^ . - . - . - . - "15-19_1" . - "2"^^ . - . - . - . - "90-91_0" . - "1"^^ . - . - . - . - "90-91_1" . - "2"^^ . - . - . - . - "22-23_0" . - "1"^^ . - . - . - . - "22-23_1" . - "2"^^ . - . - . - . - "83-85_0" . - "1"^^ . - . - . - . - "83-85_1" . - "2"^^ . - . - . - . - "17-31_0" . - "1"^^ . - . - . - . - "17-31_1" . - "2"^^ . - . - . - . - "89-90_0" . - "1"^^ . - . - . - . - "89-90_1" . - "2"^^ . - . - . - . - "70-75_0" . - "1"^^ . - . - . - . - "70-75_1" . - "2"^^ . - . - . - . - "50-57_0" . - "1"^^ . - . - . - . - "50-57_1" . - "2"^^ . - . - . - . - "5-6_0" . - "1"^^ . - . - . - . - "5-6_1" . - "2"^^ . - . - . - . - "55-59_0" . - "1"^^ . - . - . - . - "55-59_1" . - "2"^^ . - . - . - . - "1-2_0" . - "1"^^ . - . - . - . - "1-2_1" . - "2"^^ . - . - . - . - "11-12_0" . - "1"^^ . - . - . - . - "11-12_1" . - "2"^^ . - . - . - . - "8-9_0" . - "1"^^ . - . - . - . - "8-9_1" . - "2"^^ . - . - . - . - "64-65_0" . - "1"^^ . - . - . - . - "64-65_1" . - "2"^^ . - . - . - . - "54-56_0" . - "1"^^ . - . - . - . - "54-56_1" . - "2"^^ . - . - . - . - "84-85_0" . - "1"^^ . - . - . - . - "84-85_1" . - "2"^^ . - . - . - . - "34-36_0" . - "1"^^ . - . - . - . - "34-36_1" . - "2"^^ . - . - . - . - "24-70_0" . - "1"^^ . - . - . - . - "24-70_1" . - "2"^^ . - . - . - . - "85-86_0" . - "1"^^ . - . - . - . - "85-86_1" . - "2"^^ . - . - . - . - "16-17_0" . - "1"^^ . - . - . - . - "16-17_1" . - "2"^^ . - . - . - . - "62-66_0" . - "1"^^ . - . - . - . - "62-66_1" . - "2"^^ . - . - . - . - "76-77_0" . - "1"^^ . - . - . - . - "76-77_1" . - "2"^^ . - . - . - . - "60-62_0" . - "1"^^ . - . - . - . - "60-62_1" . - "2"^^ . - . - . - . - "12-117_0" . - "1"^^ . - . - . - . - "12-117_1" . - "2"^^ . - . - . - . - "27-28_0" . - "1"^^ . - . - . - . - "27-28_1" . - "2"^^ . - . - . - . - "45-46_0" . - "1"^^ . - . - . - . - "45-46_1" . - "2"^^ . - . - . - . - "18-19_0" . - "1"^^ . - . - . - . - "18-19_1" . - "2"^^ . - . - . - . - "9-10_0" . - "1"^^ . - . - . - . - "9-10_1" . - "2"^^ . - . - . - . - "85-88_0" . - "1"^^ . - . - . - . - "85-88_1" . - "2"^^ . - . - . - . - "69-77_0" . - "1"^^ . - . - . - . - "69-77_1" . - "2"^^ . - . - . - . - "11-13_0" . - "1"^^ . - . - . - . - "11-13_1" . - "2"^^ . - . - . - . - "103-105_0" . - "1"^^ . - . - . - . - "103-105_1" . - "2"^^ . - . - . - . - "45-49_0" . - "1"^^ . - . - . - . - "45-49_1" . - "2"^^ . - . - . - . - "88-89_0" . - "1"^^ . - . - . - . - "88-89_1" . - "2"^^ . - . - . - . - "80-98_0" . - "1"^^ . - . - . - . - "80-98_1" . - "2"^^ . - . - . - . - "91-92_0" . - "1"^^ . - . - . - . - "91-92_1" . - "2"^^ . - . - . - . - "7-12_0" . - "1"^^ . - . - . - . - "7-12_1" . - "2"^^ . - . - . - . - "99-100_0" . - "1"^^ . - . - . - . - "99-100_1" . - "2"^^ . - . - . - . - "114-115_0" . - "1"^^ . - . - . - . - "114-115_1" . - "2"^^ . - . - . - . - "83-84_0" . - "1"^^ . - . - . - . - "83-84_1" . - "2"^^ . - . - . - . - "71-73_0" . - "1"^^ . - . - . - . - "71-73_1" . - "2"^^ . - . - . - . - "14-15_0" . - "1"^^ . - . - . - . - "14-15_1" . - "2"^^ . - . - . - . - "80-96_0" . - "1"^^ . - . - . - . - "80-96_1" . - "2"^^ . - . - . - . - "56-59_0" . - "1"^^ . - . - . - . - "56-59_1" . - "2"^^ . - . - . - . - "92-100_0" . - "1"^^ . - . - . - . - "92-100_1" . - "2"^^ . - . - . - . - "43-44_0" . - "1"^^ . - . - . - . - "43-44_1" . - "2"^^ . - . - . - . - "109-110_0" . - "1"^^ . - . - . - . - "109-110_1" . - "2"^^ . - . - . - . - "68-81_0" . - "1"^^ . - . - . - . - "68-81_1" . - "2"^^ . - . - . - . - "85-89_0" . - "1"^^ . - . - . - . - "85-89_1" . - "2"^^ . - . - . - . - "89-90_0" . - "1"^^ . - . - . - . - "89-90_1" . - "2"^^ . - . - . - . - "98-100_0" . - "1"^^ . - . - . - . - "98-100_1" . - "2"^^ . - . - . - . - "28-29_0" . - "1"^^ . - . - . - . - "28-29_1" . - "2"^^ . - . - . - . - "3-5_0" . - "1"^^ . - . - . - . - "3-5_1" . - "2"^^ . - . - . - . - "82-96_0" . - "1"^^ . - . - . - . - "82-96_1" . - "2"^^ . - . - . - . - "38-65_0" . - "1"^^ . - . - . - . - "38-65_1" . - "2"^^ . - . - . - . - "106-107_0" . - "1"^^ . - . - . - . - "106-107_1" . - "2"^^ . - . - . - . - "27-115_0" . - "1"^^ . - . - . - . - "27-115_1" . - "2"^^ . - . - . - . - "12-14_0" . - "1"^^ . - . - . - . - "12-14_1" . - "2"^^ . - . - . - . - "76-118_0" . - "1"^^ . - . - . - . - "76-118_1" . - "2"^^ . - . - . - . - "74-75_0" . - "1"^^ . - . - . - . - "74-75_1" . - "2"^^ . - . - . - . - "3-12_0" . - "1"^^ . - . - . - . - "3-12_1" . - "2"^^ . - . - . - . - "49-51_0" . - "1"^^ . - . - . - . - "49-51_1" . - "2"^^ . - . - . - . - "40-42_0" . - "1"^^ . - . - . - . - "40-42_1" . - "2"^^ . - . - . - . - "32-113_0" . - "1"^^ . - . - . - . - "32-113_1" . - "2"^^ . - . - . - . - "51-58_0" . - "1"^^ . - . - . - . - "51-58_1" . - "2"^^ . - . - . - . - "29-31_0" . - "1"^^ . - . - . - . - "29-31_1" . - "2"^^ . - . - . - . - "65-68_0" . - "1"^^ . - . - . - . - "65-68_1" . - "2"^^ . - . - . - . - "49-54_0" . - "1"^^ . - . - . - . - "49-54_1" . - "2"^^ . - . - . - . - "70-71_0" . - "1"^^ . - . - . - . - "70-71_1" . - "2"^^ . - . - . - . - "55-56_0" . - "1"^^ . - . - . - . - "55-56_1" . - "2"^^ . - . - . - . - "35-37_0" . - "1"^^ . - . - . - . - "35-37_1" . - "2"^^ . - . - . - . - "4-5_0" . - "1"^^ . - . - . - . - "4-5_1" . - "2"^^ . - . - . - . - "20-21_0" . - "1"^^ . - . - . - . - "20-21_1" . - "2"^^ . - . - . - . - "104-105_0" . - "1"^^ . - . - . - . - "104-105_1" . - "2"^^ . - . - . - . - "44-45_0" . - "1"^^ . - . - . - . - "44-45_1" . - "2"^^ . - . - . - . - "4-11_0" . - "1"^^ . - . - . - . - "4-11_1" . - "2"^^ . - . - . - . - "92-93_0" . - "1"^^ . - . - . - . - "92-93_1" . - "2"^^ . - . - . - . - "42-49_0" . - "1"^^ . - . - . - . - "42-49_1" . - "2"^^ . - . - . - . - "69-75_0" . - "1"^^ . - . - . - . - "69-75_1" . - "2"^^ . - . - . - . - "79-80_0" . - "1"^^ . - . - . - . - "79-80_1" . - "2"^^ . - . - . - . - "51-52_0" . - "1"^^ . - . - . - . - "51-52_1" . - "2"^^ . - . - . - . - "53-54_0" . - "1"^^ . - . - . - . - "53-54_1" . - "2"^^ . - . - . - . - "54-55_0" . - "1"^^ . - . - . - . - "54-55_1" . - "2"^^ . - . - . - . - "80-97_0" . - "1"^^ . - . - . - . - "80-97_1" . - "2"^^ . - . - . - . - "103-110_0" . - "1"^^ . - . - . - . - "103-110_1" . - "2"^^ . - . - . - . - "56-58_0" . - "1"^^ . - . - . - . - "56-58_1" . - "2"^^ . - . - . - . - "15-33_0" . - "1"^^ . - . - . - . - "15-33_1" . - "2"^^ . - . - . - . - "35-36_0" . - "1"^^ . - . - . - . - "35-36_1" . - "2"^^ . - . - . - . - "63-64_0" . - "1"^^ . - . - . - . - "63-64_1" . - "2"^^ . - . - . - . - "37-40_0" . - "1"^^ . - . - . - . - "37-40_1" . - "2"^^ . - . - . - . - "48-49_0" . - "1"^^ . - . - . - . - "48-49_1" . - "2"^^ . - . - . - . - "56-59_0" . - "1"^^ . - . - . - . - "56-59_1" . - "2"^^ . - . - . - . - "94-100_0" . - "1"^^ . - . - . - . - "94-100_1" . - "2"^^ . - . - . - . - "49-66_0" . - "1"^^ . - . - . - . - "49-66_1" . - "2"^^ . - . - . - . - "21-22_0" . - "1"^^ . - . - . - . - "21-22_1" . - "2"^^ . - . - . - . - "38-37_0" . - "1"^^ . - . - . - . - "38-37_1" . - "2"^^ . - . - . - . - "30-17_0" . - "1"^^ . - . - . - . - "30-17_1" . - "2"^^ . - . - . - . - "81-80_0" . - "1"^^ . - . - . - . - "81-80_1" . - "2"^^ . - . - . - . - "8-5_0" . - "1"^^ . - . - . - . - "8-5_1" . - "2"^^ . - . - . - . - "63-59_0" . - "1"^^ . - . - . - . - "63-59_1" . - "2"^^ . - . - . - . - "65-66_0" . - "1"^^ . - . - . - . - "65-66_1" . - "2"^^ . - . - . - . - "26-25_0" . - "1"^^ . - . - . - . - "26-25_1" . - "2"^^ . - . - . - . - "86-87_0" . - "1"^^ . - . - . - . - "86-87_1" . - "2"^^ . - . - . - . - "68-69_0" . - "1"^^ . - . - . - . - "68-69_1" . - "2"^^ . - . - . - . - "64-61_0" . - "1"^^ . - . - . - . - "64-61_1" . - "2"^^ . - . - . - . - "TwinBrch SM_0" . - "1"^^ . - . - . - . - "Breed SM_0" . - "2"^^ . - . - . - . - "DeerCrk SM_0" . - "1"^^ . - . - . - . - "Pinevlle SM_0" . - "2"^^ . - . - . - . - "DanRiver SM_0" . - "1"^^ . - . - . - . - "Glen Lyn SM_0" . - "2"^^ . - . - . - . - "Sporn SM_0" . - "1"^^ . - . - . - . - "Muskngum SM_0" . - "2"^^ . - . - . - . - "Philo SM_0" . - "1"^^ . - . - . - . - "Muskngum SM_0" . - "2"^^ . - . - . - . - "TannrsCk SM_0" . - "1"^^ . - . - . - . - "Claytor SM_0" . - "2"^^ . - . - . - . - "W.Lancst SM_0" . - "1"^^ . - . - . - . - "CabinCrk SM_0" . - "2"^^ . - . - . - . - "ClinchRv SM_0" . - "1"^^ . - . - . - . - "TannrsCk SM_0" . - "2"^^ . - . - . - . - "Tidd SM_0" . - "1"^^ . - . - . - . - "W.Kammer SM_0" . - "2"^^ . - . - . - . - "Torrey SM_0" . - "1"^^ . - . - . - . - "Sprigg SC_0" . - "2"^^ . - . - . - . - "Logan SC_0" . - "1"^^ . - . - . - . - "Olive SC_0" . - "2"^^ . - . - . - . - "Zanesvll SC_0" . - "1"^^ . - . - . - . - "W.Lancst SC_0" . - "2"^^ . - . - . - . - "Rockhill SC_0" . - "1"^^ . - . - . - . - "Roanoke SC_0" . - "2"^^ . - . - . - . - "EastLima SC_0" . - "1"^^ . - . - . - . - "Fieldale SC_0" . - "2"^^ . - . - . - . - "Reusens SC_0" . - "1"^^ . - . - . - . - "CapitlHl SC_0" . - "2"^^ . - . - . - . - "Bellefnt SC_0" . - "1"^^ . - . - . - . - "WMVernon SC_0" . - "2"^^ . - . - . - . - "N.Newark SC_0" . - "1"^^ . - . - . - . - "Hillsbro NegG LD_0" . - "2"^^ . - . - . - . - "WMVernon LD_0" . - "1"^^ . - . - . - . - "Newcmrst LD_0" . - "2"^^ . - . - . - . - "West End NegG LD_0" . - "1"^^ . - . - . - . - "Claytor LD_0" . - "2"^^ . - . - . - . - "Tazewell LD_0" . - "1"^^ . - . - . - . - "SCoshoct LD_0" . - "2"^^ . - . - . - . - "HickryCk LD_0" . - "1"^^ . - . - . - . - "Reusens NegG LD_0" . - "2"^^ . - . - . - . - "Mullin LD_0" . - "1"^^ . - . - . - . - "Concord LD_0" . - "2"^^ . - . - . - . - "Cloverdl LD_0" . - "1"^^ . - . - . - . - "WNwPhil2 LD_0" . - "2"^^ . - . - . - . - "FtWayne LD_0" . - "1"^^ . - . - . - . - "Wooster LD_0" . - "2"^^ . - . - . - . - "Turner LD_0" . - "1"^^ . - . - . - . - "CabinCrk LD_0" . - "2"^^ . - . - . - . - "Muskngum LD_0" . - "1"^^ . - . - . - . - "Fremont LD_0" . - "2"^^ . - . - . - . - "Madison LD_0" . - "1"^^ . - . - . - . - "Chemical LD_0" . - "2"^^ . - . - . - . - "West End LD_0" . - "1"^^ . - . - . - . - "NwCarlsl NegG LD_0" . - "2"^^ . - . - . - . - "Franklin LD_0" . - "1"^^ . - . - . - . - "N. E. LD_0" . - "2"^^ . - . - . - . - "Kankakee LD_0" . - "1"^^ . - . - . - . - "Zanesvll LD_0" . - "2"^^ . - . - . - . - "CollCrnr LD_0" . - "1"^^ . - . - . - . - "SouthBnd LD_0" . - "1"^^ . - . - . - . - "Sundial LD_0" . - "1"^^ . - . - . - . - "CapitlHl LD_0" . - "1"^^ . - . - . - . - "Caldwell LD_0" . - "1"^^ . - . - . - . - "Deer Crk NegG LD_0" . - "1"^^ . - . - . - . - "Adams LD_0" . - "1"^^ . - . - . - . - "Torrey LD_0" . - "1"^^ . - . - . - . - "WHuntngd LD_0" . - "1"^^ . - . - . - . - "WMedford LD_0" . - "1"^^ . - . - . - . - "Howard LD_0" . - "1"^^ . - . - . - . - "S.Tiffin LD_0" . - "1"^^ . - . - . - . - "Tidd LD_0" . - "1"^^ . - . - . - . - "WestLima LD_0" . - "1"^^ . - . - . - . - "Jay LD_0" . - "1"^^ . - . - . - . - "DeerCrk LD_0" . - "1"^^ . - . - . - . - "Injection_0" . - "1"^^ . - . - . - . - "Baileysv LD_0" . - "1"^^ . - . - . - . - "Delaware LD_0" . - "1"^^ . - . - . - . - "Blaine LD_0" . - "1"^^ . - . - . - . - "Danville LD_0" . - "1"^^ . - . - . - . - "Wythe LD_0" . - "1"^^ . - . - . - . - "HolstonT NegG LD_0" . - "1"^^ . - . - . - . - "Hancock LD_0" . - "1"^^ . - . - . - . - "Madison NegG LD_0" . - "1"^^ . - . - . - . - "Natrium LD_0" . - "1"^^ . - . - . - . - "Logan LD_0" . - "1"^^ . - . - . - . - "GoshenJt LD_0" . - "1"^^ . - . - . - . - "SthPoint LD_0" . - "1"^^ . - . - . - . - "Sprigg LD_0" . - "1"^^ . - . - . - . - "BeaverCk LD_0" . - "1"^^ . - . - . - . - "Switchbk LD_0" . - "1"^^ . - . - . - . - "Injection_0" . - "1"^^ . - . - . - . - "Howard NegG LD_0" . - "1"^^ . - . - . - . - "TwinBrch LD_0" . - "1"^^ . - . - . - . - "Grant LD_0" . - "1"^^ . - . - . - . - "Bellefnt LD_0" . - "1"^^ . - . - . - . - "S.Kenton LD_0" . - "1"^^ . - . - . - . - "Bradley LD_0" . - "1"^^ . - . - . - . - "Trenton NegG LD_0" . - "1"^^ . - . - . - . - "Sorenson LD_0" . - "1"^^ . - . - . - . - "Holston NegG LD_0" . - "1"^^ . - . - . - . - "Rockhill LD_0" . - "1"^^ . - . - . - . - "NwLibrty LD_0" . - "1"^^ . - . - . - . - "Haviland LD_0" . - "1"^^ . - . - . - . - "Lincoln LD_0" . - "1"^^ . - . - . - . - "N.Newark LD_0" . - "1"^^ . - . - . - . - "Holston LD_0" . - "1"^^ . - . - . - . - "Reusens LD_0" . - "1"^^ . - . - . - . - "Portsmth LD_0" . - "1"^^ . - . - . - . - "Injection_0" . - "1"^^ . - . - . - . - "Roanoke LD_0" . - "1"^^ . - . - . - . - "Danville NegG LD_0" . - "1"^^ . - . - . - . - "Olive NegG LD_0" . - "1"^^ . - . - . - . - "Darrah LD_0" . - "1"^^ . - . - . - . - "W.Lancst LD_0" . - "1"^^ . - . - . - . - "BetsyLne LD_0" . - "1"^^ . - . - . - . - "Pokagon LD_0" . - "1"^^ . - . - . - . - "Hazard LD_0" . - "1"^^ . - . - . - . - "Crooksvl LD_0" . - "1"^^ . - . - . - . - "McKinley LD_0" . - "1"^^ . - . - . - . - "Smythe LD_0" . - "1"^^ . - . - . - . - "SWKammer LD_0" . - "1"^^ . - . - . - . - "Saltvlle LD_0" . - "1"^^ . - . - . - . - "Fieldale LD_0" . - "1"^^ . - . - . - . - "Randolph LD_0" . - "1"^^ . - . - . - . - "Riversde LD_0" . - "1"^^ . - . - . - . - "WNwPhil1 LD_0" . - "1"^^ . - . - . - . - "JacksnRd LD_0" . - "1"^^ . - . - . - . - "Sterling LD_0" . - "1"^^ . - . - . - . - "Hinton NegG LD_0" . - "1"^^ . - . - . - . - "Medford LD_0" . - "1"^^ . - . - . - . - "Philo LD_0" . - "1"^^ . - . - . - . - "WCambrdg LD_0" . - "1"^^ . - . - . - . - "Glen Lyn LD_0" . - "1"^^ . - . - . - . - "NwCarlsl LD_0" . - "1"^^ . - . - . - . - "Summerfl LD_0" . - "1"^^ . - . - . - . - "Sunnysde LD_0" . - "1"^^ . - . - . - . - "Wagenhls LD_0" . - "1"^^ . - . - . - . - "33.00" . - "1"^^ . - . - "220.00" . - "1"^^ . - . - "132.00" . - "1"^^ . - . - "VLA132KV" . - . - . - . - "DIA132KV" . - . - . - . - "DUR132KV" . - . - . - . - "MIC132KV" . - . - . - . - "RÓM132KV" . - . - . - . - "HOG132KV" . - . - . - . - "HOG132KV" . - . - . - . - "NIN132KV" . - . - . - . - "FOR132KV" . - . - . - . - "NEE132KV" . - . - . - . - "GOD132KV" . - . - . - . - "WES132KV" . - . - . - . - "MEN132KV" . - . - . - . - "ALQ132KV" . - . - . - . - "MNT132KV" . - . - . - . - "DAL132KV" . - . - . - . - "HAY132KV" . - . - . - . - "CRI220KV" . - . - . - . - "ETH132KV" . - . - . - . - "VAL132KV" . - . - . - . - "GRI132KV" . - . - . - . - "OST132KV" . - . - . - . - "ERB132KV" . - . - . - . - "STM132KV" . - . - . - . - "HAY220KV" . - . - . - . - "CAL132KV" . - . - . - . - "EPH132KV" . - . - . - . - "GRE132KV" . - . - . - . - "WAY132KV" . - . - . - . - "EDH132KV" . - . - . - . - "FAN132KV" . - . - . - . - "OLD132KV" . - . - . - . - "VIN132KV" . - . - . - . - "NIN220KV" . - . - . - . - "CAR132KV" . - . - . - . - "QAR132KV" . - . - . - . - "THE132KV" . - . - . - . - "BRI132KV" . - . - . - . - "MNA132KV" . - . - . - . - "BEL132KV" . - . - . - . - "MNI132KV" . - . - . - . - "VALE33KV" . - . - . - . - "UPB132KV" . - . - . - . - "NEW132KV" . - . - . - . - "STK132KV" . - . - . - . - "WHI132KV" . - . - . - . - "NAR132KV" . - . - . - . - "ESG132KV" . - . - . - . - "STO132KV" . - . - . - . - "RUS132KV" . - . - . - . - "DOL132KV" . - . - . - . - "OLL132KV" . - . - . - . - "BRE132KV" . - . - . - . - "EDO220KV" . - . - . - . - "LON132KV" . - . - . - . - "CRI132KV" . - . - . - . - "ARM132KV" . - . - . - . - "STA220KV" . - . - . - . - "FRM132KV" . - . - . - . - "LOR132KV" . - . - . - . - "FRO132KV" . - . - . - . - "BAR132KV" . - . - . - . - "CRO132KV" . - . - . - . - "PIN132KV" . - . - . - . - "AND220KV" . - . - . - . - "HAR132KV" . - . - . - . - "UPB220KV" . - . - . - . - "LIN132KV" . - . - . - . - "MIT132KV" . - . - . - . - "DOR132KV" . - . - . - . - "ANN132KV" . - . - . - . - "STN132KV" . - . - . - . - "CAR132KV" . - . - . - . - "BEA132KV" . - . - . - . - "FRL132KV" . - . - . - . - "HRL132KV" . - . - . - . - "HOB132KV" . - . - . - . - "WIN220KV" . - . - . - . - "GON220KV" . - . - . - . - "EGL132KV" . - . - . - . - "DUN132KV" . - . - . - . - "GUL132KV" . - . - . - . - "OSG132KV" . - . - . - . - "PEL132KV" . - . - . - . - "QAR220KV" . - . - . - . - "TUC132KV" . - . - . - . - "NOG132KV" . - . - . - . - "SCA132KV" . - . - . - . - "ALD132KV" . - . - . - . - "AZK132KV" . - . - . - . - "MNM132KV" . - . - . - . - "TIR132KV" . - . - . - . - "AVA132KV" . - . - . - . - "BYW132KV" . - . - . - . - "HAV132KV" . - . - . - . - "ERE132KV" . - . - . - . - "CAS132KV" . - . - . - . - "ELD132KV" . - . - . - . - "AND132KV" . - . - . - . - "GOD220KV" . - . - . - . - "COM132KV" . - . - . - . - "EDO132KV" . - . - . - . - "THA132KV" . - . - . - . - "RIV132KV" . - . - . - . - "ROH132KV" . - . - . - . - "RVR132KV" . - . - . - . - "LAN132KV" . - . - . - . - "KHA132KV" . - . - . - . - "NUR132KV" . - . - . - . - "NOB132KV" . - . - . - . - "UMB132KV" . - . - . - . - "OND132KV" . - . - . - . - "STA132KV" . - . - . - . - "KGL132KV" . - . - . - . - "GOB132KV" . - . - . - . - "Godrics Hollow" . - . - . - "Nurmengard" . - . - . - "Gringotts" . - . - . - "Needlehole" . - . - . - "Dale" . - . - . - "Hogsmeade" . - . - . - "Barad-dûr" . - . - . - "Waymoot" . - . - . - "Upbourn" . - . - . - "Fornost Erain" . - . - . - "The Wall" . - . - . - "Havens of the Falas" . - . - . - "Minas Anor" . - . - . - "Avallonë" . - . - . - "Vale of Arryn" . - . - . - "Minas Tirith" . - . - . - "Bywater" . - . - . - "Tirion" . - . - . - "White Harbor" . - . - . - "Nobottle" . - . - . - "Formenos" . - . - . - "Vinyamar" . - . - . - "Aldburg" . - . - . - "Scary" . - . - . - "Winterfell" . - . - . - "Brithombar" . - . - . - "Nindamos" . - . - . - "Haysend" . - . - . - "Bree" . - . - . - "Mithlond" . - . - . - "Pincup" . - . - . - "Casterly Rock" . - . - . - "Lannisport" . - . - . - "Armenelos" . - . - . - "Erebor" . - . - . - "Ollivanders" . - . - . - "Pelargir" . - . - . - "Crickhollow" . - . - . - "Harlond" . - . - . - "Stock" . - . - . - "Stormlands" . - . - . - "Crownlands" . - . - . - "Hobbiton" . - . - . - "Goblin Town" . - . - . - "Rohan" . - . - . - "Andúnië" . - . - . - "Michel Delving" . - . - . - "Calembel" . - . - . - "Riverlands" . - . - . - "Standelf" . - . - . - "Rómenna" . - . - . - "Ost-in-Edhil" . - . - . - "Oldtown" . - . - . - "Grey Havens" . - . - . - "Edhellond" . - . - . - "Forlond" . - . - . - "Osgiliath" . - . - . - "Ethring" . - . - . - "Minas Ithil" . - . - . - "Frogmorton" . - . - . - "Nargothrond" . - . - . - "Kings Landing" . - . - . - "Tuckborough" . - . - . - "Alqualondë" . - . - . - "Menegroth" . - . - . - "Erech" . - . - . - "Dunharrow" . - . - . - "Linhir" . - . - . - "Nogrod" . - . - . - "Beauxbatons" . - . - . - "Carn Dûm" . - . - . - "Ephel Brandir" . - . - . - "Staddle" . - . - . - "Diagon Alley" . - . - . - "Ondosto" . - . - . - "Rivendell" . - . - . - "Esgaroth" . - . - . - "Hogwarts" . - . - . - "Annúminas" . - . - . - "Azkaban" . - . - . - "Qarth" . - . - . - "St Mungos" . - . - . - "Belegost" . - . - . - "Gulltown" . - . - . - "Khazad-dûm" . - . - . - "Minas Morgul" . - . - . - "Lond Daer Enedh" . - . - . - "Durmstrang" . - . - . - "Combe" . - . - . - "Eldalondë" . - . - . - "Lorien" . - . - . - "Harrenhal" . - . - . - "Valmar" . - . - . - "Dol Amroth" . - . - . - "Fangorn Forest" . - . - . - "Westerlands" . - . - . - "Tharbad" . - . - . - "Caras Galadhon" . - . - . - "Umbar" . - . - . - "Dorne" . - . - . - "Eglarest" . - . - . - "Newbury" . - . - . - "Rushey" . - . - . - "Gondolin" . - . - . - "Edoras" . - . - . - "GB" . - . - "Middle" . - . - . - "PATL" . - "1"^^ . - . - . - . - "TATL" . - "1"^^ . - . - . - . - "TATL" . - "1"^^ . - . - . - . - "Hillsbro NegG LD" . - "1"^^ . - . - . - . - "Hillsbro NegG LD" . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - . - "WMVernon LD" . - "1"^^ . - . - . - "Newcmrst LD" . - "1"^^ . - . - . - "West End NegG LD" . - "1"^^ . - . - . - . - "West End NegG LD" . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - . - "Claytor LD" . - "1"^^ . - . - . - "Tazewell LD" . - "1"^^ . - . - . - "SCoshoct LD" . - "1"^^ . - . - . - "HickryCk LD" . - "1"^^ . - . - . - "Reusens NegG LD" . - "1"^^ . - . - . - . - "Reusens NegG LD" . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - . - "Mullin LD" . - "1"^^ . - . - . - "Concord LD" . - "1"^^ . - . - . - "Cloverdl LD" . - "1"^^ . - . - . - "WNwPhil2 LD" . - "1"^^ . - . - . - "FtWayne LD" . - "1"^^ . - . - . - "Wooster LD" . - "1"^^ . - . - . - "Turner LD" . - "1"^^ . - . - . - "CabinCrk LD" . - "1"^^ . - . - . - "Muskngum LD" . - "1"^^ . - . - . - "Fremont LD" . - "1"^^ . - . - . - "Madison LD" . - "1"^^ . - . - . - "Chemical LD" . - "1"^^ . - . - . - "West End LD" . - "1"^^ . - . - . - "NwCarlsl NegG LD" . - "1"^^ . - . - . - . - "NwCarlsl NegG LD" . - "1"^^ . - "1"^^ . - "1"^^ . - "1"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Franklin LD" . - "false"^^ . - . - . - "N. E. LD" . - "false"^^ . - . - . - "Kankakee LD" . - "false"^^ . - . - . - "Zanesvll LD" . - "false"^^ . - . - . - "CollCrnr LD" . - "false"^^ . - . - . - "SouthBnd LD" . - "false"^^ . - . - . - "Sundial LD" . - "false"^^ . - . - . - "CapitlHl LD" . - "false"^^ . - . - . - "Caldwell LD" . - "false"^^ . - . - . - "Deer Crk NegG LD" . - "false"^^ . - . - . - . - "Deer Crk NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Adams LD" . - "false"^^ . - . - . - "Torrey LD" . - "false"^^ . - . - . - "WHuntngd LD" . - "false"^^ . - . - . - "WMedford LD" . - "false"^^ . - . - . - "Howard LD" . - "false"^^ . - . - . - "S.Tiffin LD" . - "false"^^ . - . - . - "Tidd LD" . - "false"^^ . - . - . - "WestLima LD" . - "false"^^ . - . - . - "Jay LD" . - "false"^^ . - . - . - "DeerCrk LD" . - "false"^^ . - . - . - "Baileysv LD" . - "false"^^ . - . - . - "Delaware LD" . - "false"^^ . - . - . - "Blaine LD" . - "false"^^ . - . - . - "Danville LD" . - "false"^^ . - . - . - "Wythe LD" . - "false"^^ . - . - . - "HolstonT NegG LD" . - "false"^^ . - . - . - . - "HolstonT NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Hancock LD" . - "false"^^ . - . - . - "Madison NegG LD" . - "false"^^ . - . - . - . - "Madison NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Natrium LD" . - "false"^^ . - . - . - "Logan LD" . - "false"^^ . - . - . - "GoshenJt LD" . - "false"^^ . - . - . - "SthPoint LD" . - "false"^^ . - . - . - "Sprigg LD" . - "false"^^ . - . - . - "BeaverCk LD" . - "false"^^ . - . - . - "Switchbk LD" . - "false"^^ . - . - . - "Howard NegG LD" . - "false"^^ . - . - . - . - "Howard NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "TwinBrch LD" . - "false"^^ . - . - . - "Grant LD" . - "false"^^ . - . - . - "Bellefnt LD" . - "false"^^ . - . - . - "S.Kenton LD" . - "false"^^ . - . - . - "Bradley LD" . - "false"^^ . - . - . - "Trenton NegG LD" . - "false"^^ . - . - . - . - "Trenton NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Sorenson LD" . - "false"^^ . - . - . - "Holston NegG LD" . - "false"^^ . - . - . - . - "Holston NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Rockhill LD" . - "false"^^ . - . - . - "NwLibrty LD" . - "false"^^ . - . - . - "Haviland LD" . - "false"^^ . - . - . - "Lincoln LD" . - "false"^^ . - . - . - "N.Newark LD" . - "false"^^ . - . - . - "Holston LD" . - "false"^^ . - . - . - "Reusens LD" . - "false"^^ . - . - . - "Portsmth LD" . - "false"^^ . - . - . - "Roanoke LD" . - "false"^^ . - . - . - "Danville NegG LD" . - "false"^^ . - . - . - . - "Danville NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Olive NegG LD" . - "false"^^ . - . - . - . - "Olive NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Darrah LD" . - "false"^^ . - . - . - "W.Lancst LD" . - "false"^^ . - . - . - "BetsyLne LD" . - "false"^^ . - . - . - "Pokagon LD" . - "false"^^ . - . - . - "Hazard LD" . - "false"^^ . - . - . - "Crooksvl LD" . - "false"^^ . - . - . - "McKinley LD" . - "false"^^ . - . - . - "Smythe LD" . - "false"^^ . - . - . - "SWKammer LD" . - "false"^^ . - . - . - "Saltvlle LD" . - "false"^^ . - . - . - "Fieldale LD" . - "false"^^ . - . - . - "Randolph LD" . - "false"^^ . - . - . - "Riversde LD" . - "false"^^ . - . - . - "WNwPhil1 LD" . - "false"^^ . - . - . - "JacksnRd LD" . - "false"^^ . - . - . - "Sterling LD" . - "false"^^ . - . - . - "Hinton NegG LD" . - "false"^^ . - . - . - . - "Hinton NegG LD" . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Medford LD" . - "false"^^ . - . - . - "Philo LD" . - "false"^^ . - . - . - "WCambrdg LD" . - "false"^^ . - . - . - "Glen Lyn LD" . - "false"^^ . - . - . - "NwCarlsl LD" . - "false"^^ . - . - . - "Summerfl LD" . - "false"^^ . - . - . - "Sunnysde LD" . - "false"^^ . - . - . - "Wagenhls LD" . - "false"^^ . - . - . - "Injection" . - . - "false"^^ . - . - . - "Injection" . - . - "false"^^ . - . - . - "Injection" . - . - "false"^^ . - . - . - "TwinBrch SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "TwinBrch SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "TwinBrch SM" . - . - . - . - "Breed SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Breed SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Breed SM" . - . - . - . - "DeerCrk SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "DeerCrk SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "DeerCrk SM" . - . - . - . - "Pinevlle SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Pinevlle SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Pinevlle SM" . - . - . - . - "DanRiver SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "DanRiver SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "DanRiver SM" . - . - . - . - "Glen Lyn SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Glen Lyn SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Glen Lyn SM" . - . - . - . - "Sporn SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Sporn SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Sporn SM" . - . - . - . - "Muskngum SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Muskngum SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Muskngum SM" . - . - . - . - "Philo SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Philo SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Philo SM" . - . - . - . - "Muskngum SM" . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - . - "Muskngum SM" . - . - . - "false"^^ . - "false"^^ . - . - "false"^^ . - "false"^^ . - "false"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Muskngum SM" . - . - . - . - "TannrsCk SM" . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "TannrsCk SM" . - . - . - "1400"^^ . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "TannrsCk SM" . - . - . - . - "Claytor SM" . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Claytor SM" . - . - . - "1000"^^ . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Claytor SM" . - . - . - . - "W.Lancst SM" . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "W.Lancst SM" . - . - . - "1150"^^ . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "W.Lancst SM" . - . - . - . - "CabinCrk SM" . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "CabinCrk SM" . - . - . - "1400"^^ . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "CabinCrk SM" . - . - . - . - "ClinchRv SM" . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "ClinchRv SM" . - . - . - "1000"^^ . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "ClinchRv SM" . - . - . - . - "TannrsCk SM" . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "TannrsCk SM" . - . - . - "1150"^^ . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "TannrsCk SM" . - . - . - . - "Tidd SM" . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Tidd SM" . - . - . - "1400"^^ . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Tidd SM" . - . - . - . - "W.Kammer SM" . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "W.Kammer SM" . - . - . - "1000"^^ . - "1150"^^ . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "W.Kammer SM" . - . - . - . - "Torrey SM" . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Torrey SM" . - . - . - "1150"^^ . - "1400"^^ . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Torrey SM" . - . - . - . - "31-32" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "2-12" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - 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"1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "49-50" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "1-3" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1150"^^ . - . - "92-102" . - "1400"^^ . - . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "93-94" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "46-48" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1150"^^ . - . - "49-66" . - "1400"^^ . - . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "75-118" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "94-96" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1150"^^ . - . - "62-67" . - "1400"^^ . - . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "47-49" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "100-106" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1150"^^ . - . - "77-78" . - "1400"^^ . - . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "6-7" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "77-80" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1150"^^ . - . - "78-79" . - "1400"^^ . - . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "103-104" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "95-96" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1150"^^ . - . - "77-80" . - "1400"^^ . - . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "5-11" . - "1150"^^ . - . - . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1150"^^ . - . - "Emergency" . - . - . - "1400"^^ . - . - "71-72" . - "1000"^^ . - . - . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1400"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1150"^^ . - . - "66-67" . - "1400"^^ . - . - . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - "1150"^^ . - "1400"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1150"^^ . - . - "ShortTerm" . - . - . - "1400"^^ . - . - "Emergency" . - . - . - "1312"^^ . - . - "34-43" . - "1508"^^ . - . - . - "1837"^^ . - "2186"^^ . - "2514"^^ . - "3061"^^ . - "1312"^^ . - "1508"^^ . - "1837"^^ . - "2186"^^ . - "2514"^^ . - "3061"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1312"^^ . - . - "ShortTerm" . - . - . - "1508"^^ . - . - "Emergency" . - . - . - "1837"^^ . - . - "52-53" . - "2186"^^ . - . - . - "2514"^^ . - "3061"^^ . - "1312"^^ . - "1508"^^ . - "1837"^^ . - "2186"^^ . - "2514"^^ . - "3061"^^ . - "1312"^^ . - "1508"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1837"^^ . - . - "ShortTerm" . - . - . - "2186"^^ . - . - "Emergency" . - . - . - "2514"^^ . - . - "105-107" . - "3061"^^ . - . - . - "1312"^^ . - "1508"^^ . - "1837"^^ . - "2186"^^ . - "2514"^^ . - "3061"^^ . - "1312"^^ . - "1508"^^ . - "1837"^^ . - "2186"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "2514"^^ . - . - "ShortTerm" . - . - . - "3061"^^ . - . - "Emergency" . - . - . - "2186"^^ . - . - "100-101" . - "2514"^^ . - . - . - "3061"^^ . - "8747"^^ . - "10059"^^ . - "12246"^^ . - "1312"^^ . - "1508"^^ . - "1837"^^ . - "2186"^^ . - "2514"^^ . - "3061"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1312"^^ . - . - "ShortTerm" . - . - . - "1508"^^ . - . - "Emergency" . - . - . - "1837"^^ . - . - "56-57" . - "2186"^^ . - . - . - "2514"^^ . - "3061"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "47-69" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "110-111" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "41-42" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "80-99" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "54-59" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "68-116" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "92-94" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "37-39" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - . - "46-47" . - "1000"^^ . - . - . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - "1000"^^ . - . - "Ratings" . - . - . - "Normal" . - . - . - "1000"^^ . - . - "ShortTerm" . - . - . - "1000"^^ . - . - "Emergency" . - . - . - "1000"^^ . - 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. - . - "Container for 66-67" . - . - . - "Container for 34-43" . - . - . - "Container for 52-53" . - . - . - "Container for 105-107" . - . - . - "Container for 100-101" . - . - . - "Container for 56-57" . - . - . - "Container for 47-69" . - . - . - "Container for 110-111" . - . - . - "Container for 41-42" . - . - . - "Container for 80-99" . - . - . - "Container for 54-59" . - . - . - "Container for 92-94" . - . - . - "Container for 37-39" . - . - . - "Container for 46-47" . - . - . - "Container for 30-38" . - . - . - "Container for 82-83" . - . - . - "Container for 108-109" . - . - . - "Container for 70-74" . - . - . - "Container for 77-82" . - . - . - "Container for 23-24" . - . - . - "Container for 15-17" . - . - . - "Container for 8-30" . - . - . - "Container for 49-69" . - . - . - "Container for 13-15" . - . - . - "Container for 69-70" . - . - . - "Container for 19-20" . - . - . - "Container for 94-95" . - . - . - "Container for 12-16" . - . - . - "Container for 100-103" . - . - . - "Container for 27-32" . - . - . - "Container for 59-61" . - . - . - "Container for 100-104" . - . - . - "Container for 75-77" . - . - . - "Container for 23-32" . - . - . - "Container for 96-97" . - . - . - "Container for 25-27" . - . - . - "Container for 110-112" . - . - . - "Container for 89-92" . - . - . - "Container for 49-54" . - . - . - "Container for 40-41" . - . - . - "Container for 39-40" . - . - . - "Container for 89-92" . - . - . - "Container for 33-37" . - . - . - "Container for 105-108" . - . - . - "Container for 34-37" . - . - . - "Container for 61-62" . - . - . - "Container for 101-102" . - . - . - "Container for 26-30" . - . - . - "Container for 42-49" . - . - . - "Container for 105-106" . - . - . - "Container for 60-61" . - . - . - "Container for 23-25" . - . - . - "Container for 19-34" . - . - . - "Container for 59-60" . - . - . - "Container for 15-19" . - . - . - "Container for 90-91" . - . - . - "Container for 22-23" . - . - . - "Container for 83-85" . - . - . - "Container for 17-31" . - . - . - "Container for 89-90" . - . - . - "Container for 70-75" . - . - . - "Container for 50-57" . - . - . - "Container for 5-6" . - . - . - "Container for 55-59" . - . - . - "Container for 1-2" . - . - . - "Container for 11-12" . - . - . - "Container for 8-9" . - . - . - "Container for 64-65" . - . - . - "Container for 54-56" . - . - . - "Container for 84-85" . - . - . - "Container for 34-36" . - . - . - "Container for 24-70" . - . - . - "Container for 85-86" . - . - . - "Container for 16-17" . - . - . - "Container for 62-66" . - . - . - "Container for 76-77" . - . - . - "Container for 60-62" . - . - . - "Container for 27-28" . - . - . - "Container for 45-46" . - . - . - "Container for 18-19" . - . - . - "Container for 9-10" . - . - . - "Container for 85-88" . - . - . - "Container for 69-77" . - . - . - "Container for 11-13" . - . - . - "Container for 103-105" . - . - . - "Container for 45-49" . - . - . - "Container for 88-89" . - . - . - "Container for 80-98" . - . - . - "Container for 91-92" . - . - . - "Container for 7-12" . - . - . - "Container for 99-100" . - . - . - "Container for 114-115" . - . - . - "Container for 83-84" . - . - . - "Container for 14-15" . - . - . - "Container for 80-96" . - . - . - "Container for 56-59" . - . - . - "Container for 92-100" . - . - . - "Container for 43-44" . - . - . - "Container for 109-110" . - . - . - "Container for 68-81" . - . - . - "Container for 85-89" . - . - . - "Container for 89-90" . - . - . - "Container for 98-100" . - . - . - "Container for 28-29" . - . - . - "Container for 3-5" . - . - . - "Container for 82-96" . - . - . - "Container for 38-65" . - . - . - "Container for 106-107" . - . - . - "Container for 27-115" . - . - . - "Container for 12-14" . - . - . - "Container for 76-118" . - . - . - "Container for 74-75" . - . - . - "Container for 3-12" . - . - . - "Container for 49-51" . - . - . - "Container for 40-42" . - . - . - "Container for 32-113" . - . - . - "Container for 51-58" . - . - . - "Container for 29-31" . - . - . - "Container for 65-68" . - . - . - "Container for 49-54" . - . - . - "Container for 70-71" . - . - . - "Container for 55-56" . - . - . - "Container for 35-37" . - . - . - "Container for 4-5" . - . - . - "Container for 20-21" . - . - . - "Container for 104-105" . - . - . - "Container for 44-45" . - . - . - "Container for 4-11" . - . - . - "Container for 92-93" . - . - . - "Container for 42-49" . - . - . - "Container for 69-75" . - . - . - "Container for 79-80" . - . - . - "Container for 51-52" . - . - . - "Container for 53-54" . - . - . - "Container for 54-55" . - . - . - "Container for 80-97" . - . - . - "Container for 103-110" . - . - . - "Container for 56-58" . - . - . - "Container for 15-33" . - . - . - "Container for 35-36" . - . - . - "Container for 63-64" . - . - . - "Container for 37-40" . - . - . - "Container for 48-49" . - . - . - "Container for 56-59" . - . - . - "Container for 94-100" . - . - . - "Container for 49-66" . - . - . - "Container for 21-22" . - . - . - "_CA_GB" . - . - . - "GEN_GB" . - . - . - . - "PATLT" . - "0"^^ . - . - . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "0"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . - . - "Normal" . - . - . - "false"^^ . diff --git a/tests/data/smallgrid_tpsvssh.nq b/tests/data/smallgrid_tpsvssh.nq deleted file mode 100644 index 031f13d5..00000000 --- a/tests/data/smallgrid_tpsvssh.nq +++ /dev/null @@ -1,5023 +0,0 @@ - . - "2030-01-02T09:00:00" . - "2014-10-22T09:01:25.830" . - "CGMES Conformity Assessment: Small Grid Base Case Test Configuration. The model is owned by ENTSO-E and is provided by ENTSO-E \"as it is\". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. ENTSO-E web site is the only official source of information related to the model." . - "4" . - "http://entsoe.eu/CIM/SteadyStateHypothesis/1/1" . - "http://GB/Planning/ENTSOE/2" . - . - . - "HickryCk" . - . - "TannrsCk1" . - . - "WHuntngd" . - . - "Pokagon" . - . - "FtWayne" . - . - "DeerCrk" . - . - "W.Kammer" . - . - "Sterling" . - . - "Turner" . - . - "WestLima" . - . - "Natrium" . - . - "Pinevlle" . - . - "Bellefnt" . - . - "Olive1" . - . - "Blaine" . - . - "Riversde" . - . - "Tidd1" . - . - "Zanesvll" . - . - "Sundial" . - . - "Logan" . - . - "Sporn2" . - . - "SouthBnd" . - . - "Holston" . - . - "Kammer" . - . - "CapitlHl" . - . - "Sporn1" . - . - "Rockhill" . - . - "Wagenhls" . - . - "Trenton" . - . - "Olive2" . - . - "Cloverdl" . - . - "BeaverCk" . - . - "DanRiver" . - . - "Sorenson1" . - . - "Randolph" . - . - "Muskngum1" . - . - "Kankakee" . - . - "Portsmth" . - . - "CollCrnr" . - . - "Sprigg" . - . - "Roanoke" . - . - "Hillsbro" . - . - "Muskngum2" . - . - "WMVernon" . - . - "HolstonT" . - . - "X5 TRI" . - . - "Madison" . - . - "Grant" . - . - "Breed" . - . - "EastLima1" . - . - "WNwPhil1" . - . - "Reusens" . - . - "Wythe" . - . - "BetsyLne" . - . - "SCoshoct" . - . - "WNwPhil2" . - . - "ClinchRv" . - . - "N.Newark" . - . - "S.Kenton" . - . - "SthPoint" . - . - "Fremont" . - . - "Fieldale" . - . - "Philo" . - . - "WCambrdg" . - . - "Mullin" . - . - "TwinBrch" . - . - "Claytor" . - . - "Tidd2" . - . - "Saltvlle" . - . - "Concord" . - . - "Chemical" . - . - "WMedford" . - . - "Tazewell" . - . - "S.Tiffin" . - . - "Howard" . - . - "SWKammer" . - . - "Hancock" . - . - "Baileysv" . - . - "Medford" . - . - "West End" . - . - "N. E." . - . - "Newcmrst" . - . - "Caldwell" . - . - "Crooksvl" . - . - "Hazard" . - . - "McKinley" . - . - "Delaware" . - . - "Haviland" . - . - "Torrey" . - . - "JacksnRd" . - . - "EastLima2" . - . - "GoshenJt" . - . - "NwLibrty" . - . - "Kanawha" . - . - "Glen Lyn" . - . - "Hinton" . - . - "Switchbk" . - . - "Sunnysde" . - . - "W.Lancst" . - . - "Summerfl" . - . - "Lincoln" . - . - "Sorenson2" . - . - "TannrsCk2" . - . - "Smythe" . - . - "Darrah" . - . - "NwCarlsl" . - . - "X9" . - . - "CabinCrk" . - . - "Deer Crk" . - . - "Danville" . - . - "Bradley" . - . - "Adams" . - . - "Wooster" . - . - "Jay" . - . - "Franklin" . - . - "0" . - . - "39"^^ . - . - "-220"^^ . - . - "33"^^ . - . - "20"^^ . - . - "90"^^ . - . - "43"^^ . - . - "-7"^^ . - . - "-160"^^ . - . - "31"^^ . - . - "61"^^ . - . - "33"^^ . - . - "77"^^ . - . - "-4"^^ . - . - "68"^^ . - . - "28"^^ . - . - "2"^^ . - . - "51"^^ . - . - "277"^^ . - . - "-155"^^ . - . - "20"^^ . - . - "15"^^ . - . - "54"^^ . - . - "70"^^ . - . - "85"^^ . - 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"true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - "true"^^ . - "true"^^ . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - . - "true"^^ . - . - "true"^^ . - . - "true"^^ . - . - "2030-01-02T09:00:00" . - "2014-10-27T09:01:25.830" . - "CGMES Conformity Assessment: Small Grid Base Case Test Configuration. The model is owned by ENTSO-E and is provided by ENTSO-E \"as it is\". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. ENTSO-E web site is the only official source of information related to the model." . - "4" . - "http://entsoe.eu/CIM/Topology/4/1" . - "http://GB/Planning/ENTSOE/2" . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - . - "true"^^ . - . - . - 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. - "true"^^ . - . - . - . - "true"^^ . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - 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. - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - . - "2030-01-02T09:00:00" . - "2014-10-22T09:01:25.830" . - "CGMES Conformity Assessment: Small Grid Base Case Test Configuration. The model is owned by ENTSO-E and is provided by ENTSO-E \"as it is\". To the fullest extent permitted by law, ENTSO-E shall not be liable for any damages of any kind arising out of the use of the model (including any of its subsequent modifications). ENTSO-E neither warrants, nor represents that the use of the model will not infringe the rights of third parties. Any use of the model shall include a reference to ENTSO-E. ENTSO-E web site is the only official source of information related to the model." . - "4" . - "http://entsoe.eu/CIM/StateVariables/4/1" . - "http://GB/Planning/ENTSOE/2" . - . - . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "true"^^ . - . - . - "true"^^ . - "210"^^ . - . - . - "false"^^ . - "false"^^ . - 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"04731cb7-c766-11e1-8775-005056c00008" . - "047da403-c766-11e1-8775-005056c00008" . - "0480b140-c766-11e1-8775-005056c00008" . - "047e6758-c766-11e1-8775-005056c00008" . - "045c1240-c766-11e1-8775-005056c00008" . - "04486334-c766-11e1-8775-005056c00008" . - "04522734-c766-11e1-8775-005056c00008" . - "046efe07-c766-11e1-8775-005056c00008" . - "04700f70-c766-11e1-8775-005056c00008" . - "045841b9-c766-11e1-8775-005056c00008" . - "0480150a-c766-11e1-8775-005056c00008" . - "0448ff77-c766-11e1-8775-005056c00008" . - "04522737-c766-11e1-8775-005056c00008" . - "04784cd2-c766-11e1-8775-005056c00008" . - "04570939-c766-11e1-8775-005056c00008" . - "04882b51-c766-11e1-8775-005056c00008" . - "046476b8-c766-11e1-8775-005056c00008" . - "04502b62-c766-11e1-8775-005056c00008" . - "04492686-c766-11e1-8775-005056c00008" . - "04590500-c766-11e1-8775-005056c00008" . - "04486337-c766-11e1-8775-005056c00008" . - "5631ccc1-d9d2-11e2-bb49-005056c00008" . - "0474f17b-c766-11e1-8775-005056c00008" . - "0463654a-c766-11e1-8775-005056c00008" . - "04700f74-c766-11e1-8775-005056c00008" . - "0488eeab-c766-11e1-8775-005056c00008" . - "0479d376-c766-11e1-8775-005056c00008" . - "0464ebe7-c766-11e1-8775-005056c00008" . - "0464c4d5-c766-11e1-8775-005056c00008" . - "04765100-c766-11e1-8775-005056c00008" . - "047b3307-c766-11e1-8775-005056c00008" . - "04767811-c766-11e1-8775-005056c00008" . - "045b9d17-c766-11e1-8775-005056c00008" . - "047b3303-c766-11e1-8775-005056c00008" . - "0472ce97-c766-11e1-8775-005056c00008" . - "045868c4-c766-11e1-8775-005056c00008" . - "04882b59-c766-11e1-8775-005056c00008" . - "5631f3d5-d9d2-11e2-bb49-005056c00008" . - "046d9e74-c766-11e1-8775-005056c00008" . - "044ecbda-c766-11e1-8775-005056c00008" . - "0481e9c0-c766-11e1-8775-005056c00008" . - "04622cc1-c766-11e1-8775-005056c00008" . - "0451b205-c766-11e1-8775-005056c00008" . - "04555b85-c766-11e1-8775-005056c00008" . - "0471e432-c766-11e1-8775-005056c00008" . - "044d4536-c766-11e1-8775-005056c00008" . - "0487dd31-c766-11e1-8775-005056c00008" . - "0461b799-c766-11e1-8775-005056c00008" . - "0483e592-c766-11e1-8775-005056c00008" . - "0482ad17-c766-11e1-8775-005056c00008" . - "047fc6e2-c766-11e1-8775-005056c00008" . - "04531191-c766-11e1-8775-005056c00008" . - "0485ba54-c766-11e1-8775-005056c00008" . - "0486cbc1-c766-11e1-8775-005056c00008" . - "0454bf45-c766-11e1-8775-005056c00008" . - "5631f3d1-d9d2-11e2-bb49-005056c00008" . - "0454983a-c766-11e1-8775-005056c00008" . - "0457cc88-c766-11e1-8775-005056c00008" . - "048433b8-c766-11e1-8775-005056c00008" . - "044e7db8-c766-11e1-8775-005056c00008" . - "044e7db6-c766-11e1-8775-005056c00008" . - "04549830-c766-11e1-8775-005056c00008" . - "0462c902-c766-11e1-8775-005056c00008" . - "045e5c31-c766-11e1-8775-005056c00008" . - "047e4047-c766-11e1-8775-005056c00008" . - "0465d641-c766-11e1-8775-005056c00008" . - "045163e8-c766-11e1-8775-005056c00008" . - "0474ca6b-c766-11e1-8775-005056c00008" . - "045645e4-c766-11e1-8775-005056c00008" . - "0478c20a-c766-11e1-8775-005056c00008" . - "0462f018-c766-11e1-8775-005056c00008" . - "0476ed4b-c766-11e1-8775-005056c00008" . - "0466c0a7-c766-11e1-8775-005056c00008" . - "046c8d06-c766-11e1-8775-005056c00008" . - "0477b094-c766-11e1-8775-005056c00008" . - "04494d96-c766-11e1-8775-005056c00008" . - "0489b1f7-c766-11e1-8775-005056c00008" . - "04513cd3-c766-11e1-8775-005056c00008" . - "045dbff8-c766-11e1-8775-005056c00008" . - "04577e64-c766-11e1-8775-005056c00008" . - "044c0cb9-c766-11e1-8775-005056c00008" . - "04851e16-c766-11e1-8775-005056c00008" . - "045f4695-c766-11e1-8775-005056c00008" . - "048481d4-c766-11e1-8775-005056c00008" . - "65a95678-1819-43cd-94d2-a03756822725" . - "5c96df9d-39fa-46fe-a424-7b3e50184f79" . - "9c6a1e49-17b2-46fc-8e32-c95dec33eba8" . diff --git a/tests/t_utils/entsoe_models.py b/tests/t_utils/entsoe_models.py index bd46abb2..956a0386 100644 --- a/tests/t_utils/entsoe_models.py +++ b/tests/t_utils/entsoe_models.py @@ -125,14 +125,21 @@ def bg_http(url: str, name: str) -> GraphDBClient: return new_repo_blazegraph(url, name, "http") model = None - test_folder = Path(__file__).parent.parent / "data" + test_folder = Path(__file__).parent.parent / "data/small" try: + adaptor = XmlModelAdaptor.from_folder(test_folder) + adaptor.adapt() init_func = t_common.init_repo_rdf4j if api == RestApi.RDF4J else bg_http tpsvssh_client = init_func(url, "smallgrid_tpsvssh") - tpsvssh_client.upload_rdf(test_folder / "smallgrid_tpsvssh.nq", "n-quads") + tpsvssh_ctx = adaptor.tpsvssh_contexts() + tpsvssh_client.upload_rdf(adaptor.nq_bytes(tpsvssh_ctx), "n-quads") + + remaining = adaptor.nq_bytes( + [ctx for ctx in adaptor.graph.contexts() if ctx not in tpsvssh_ctx] + ) eq_client = init_func(url, "smallgrid_eq") - eq_client.upload_rdf(test_folder / "smallgrid_eq.nq", "n-quads") + eq_client.upload_rdf(remaining, "n-quads") m_cfg = ModelConfig( system_state_repo=tpsvssh_client.service_cfg.url,