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VsConverter

DC side of the voltage source converter (VSC).

URI: cim:VsConverter
Type: Class

VsConverter class diagram

Inheritance

Attributes

Name URI Cardinality and Range Inheritance Description
droop cim:VsConverter.droop 0..1 PU direct Droop constant. The pu value is obtained as D [kV/MW] x Sb / Ubdc. The attribute shall be a positive value.
droopCompensation cim:VsConverter.droopCompensation 0..1 Resistance direct Compensation constant. Used to compensate for voltage drop when controlling voltage at a distant bus. The attribute shall be a positive value.
qShare cim:VsConverter.qShare 0..1 PerCent direct Reactive power sharing factor among parallel converters on Uac control. The attribute shall be a positive value or zero.
targetPhasePcc cim:VsConverter.targetPhasePcc 0..1 AngleDegrees direct Phase target at AC side, at point of common coupling. The attribute shall be a positive value.
targetPowerFactorPcc cim:VsConverter.targetPowerFactorPcc 0..1 float direct Power factor target at the AC side, at point of common coupling. The attribute shall be a positive value.
targetPWMfactor cim:VsConverter.targetPWMfactor 0..1 float direct Magnitude of pulse-modulation factor. The attribute shall be a positive value.
targetQpcc cim:VsConverter.targetQpcc 0..1 ReactivePower direct Reactive power injection target in AC grid, at point of common coupling. Load sign convention is used, i.e. positive sign means flow out from a node.
targetUpcc cim:VsConverter.targetUpcc 0..1 Voltage direct Voltage target in AC grid, at point of common coupling. The attribute shall be a positive value.
p cim:ACDCConverter.p 1..1 ActivePower ACDCConverter 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 cim:ACDCConverter.q 1..1 ReactivePower ACDCConverter 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.
targetPpcc cim:ACDCConverter.targetPpcc 0..1 ActivePower ACDCConverter Real power injection target in AC grid, at point of common coupling. Load sign convention is used, i.e. positive sign means flow out from a node.
targetUdc cim:ACDCConverter.targetUdc 0..1 Voltage ACDCConverter Target value for DC voltage magnitude. The attribute shall be a positive value.
inService cim:Equipment.inService 1..1 boolean Equipment Specifies the availability of the equipment. True means the equipment is available for topology processing, which determines if the equipment is energized or not. False means that the equipment is treated by network applications as if it is not in the model.
mRID cim:IdentifiedObject.mRID 1..1 string IdentifiedObject Master resource identifier issued by a model authority. The mRID is 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, the mRID is mapped to rdf:ID or rdf:about attributes that identify CIM object elements.

Format Examples

{
    "@context": {"rdf": "http://www.w3.org/1999/02/22-rdf-syntax-ns#", "linkml": "https://w3id.org/linkml/", "sh": "http://www.w3.org/ns/shacl#", "skos": "http://www.w3.org/2004/02/skos/core#", "dc": "http://purl.org/dc/elements/1.1/", "profcim": "http://iec.ch/TC57/ns/CIM/prof-cim#", "owl": "http://www.w3.org/2002/07/owl#", "cim": "http://iec.ch/TC57/CIM100#", "cims": "http://iec.ch/TC57/1999/rdf-schema-extensions-19990926#", "dct": "http://purl.org/dc/terms/", "this": "http://ucaiug.org/ns/CGMES/SteadyStateHypothesis-EU/3.0#", "rdfs": "http://www.w3.org/2000/01/rdf-schema#", "dcat": "http://www.w3.org/ns/dcat#", "eu": "http://iec.ch/TC57/CIM100-European#"},
    "@id": "urn:uuid:<uuid>",
    "@type": "cim:VsConverter",
    "cim:VsConverter.droop": "float",
    "cim:VsConverter.droopCompensation": "float",
    "cim:VsConverter.qShare": "float",
    "cim:VsConverter.targetPhasePcc": "float",
    "cim:VsConverter.targetPowerFactorPcc": "float",
    "cim:VsConverter.targetPWMfactor": "float",
    "cim:VsConverter.targetQpcc": "float",
    "cim:VsConverter.targetUpcc": "float",
    "cim:ACDCConverter.p": "float",
    "cim:ACDCConverter.q": "float",
    "cim:ACDCConverter.targetPpcc": "float",
    "cim:ACDCConverter.targetUdc": "float",
    "cim:Equipment.inService": "boolean",
    "cim:IdentifiedObject.mRID": "string"
}
<cim:VsConverter rdf:ID="_<uuid>">
    <cim:VsConverter.droop>float</cim:VsConverter.droop>
    <cim:VsConverter.droopCompensation>float</cim:VsConverter.droopCompensation>
    <cim:VsConverter.qShare>float</cim:VsConverter.qShare>
    <cim:VsConverter.targetPhasePcc>float</cim:VsConverter.targetPhasePcc>
    <cim:VsConverter.targetPowerFactorPcc>float</cim:VsConverter.targetPowerFactorPcc>
    <cim:VsConverter.targetPWMfactor>float</cim:VsConverter.targetPWMfactor>
    <cim:VsConverter.targetQpcc>float</cim:VsConverter.targetQpcc>
    <cim:VsConverter.targetUpcc>float</cim:VsConverter.targetUpcc>
    <cim:ACDCConverter.p>float</cim:ACDCConverter.p>
    <cim:ACDCConverter.q>float</cim:ACDCConverter.q>
    <cim:ACDCConverter.targetPpcc>float</cim:ACDCConverter.targetPpcc>
    <cim:ACDCConverter.targetUdc>float</cim:ACDCConverter.targetUdc>
    <cim:Equipment.inService>boolean</cim:Equipment.inService>
    <cim:IdentifiedObject.mRID>string</cim:IdentifiedObject.mRID>
</cim:VsConverter>
{
    "droop": "float",
    "droopCompensation": "float",
    "qShare": "float",
    "targetPhasePcc": "float",
    "targetPowerFactorPcc": "float",
    "targetPWMfactor": "float",
    "targetQpcc": "float",
    "targetUpcc": "float",
    "p": "float",
    "q": "float",
    "targetPpcc": "float",
    "targetUdc": "float",
    "inService": "boolean",
    "mRID": "string"
}
<urn:uuid:<graph-id>> {
    <urn:uuid:<uuid>>
        a cim:VsConverter ;
        cim:VsConverter.droop "float" ;
        cim:VsConverter.droopCompensation "float" ;
        cim:VsConverter.qShare "float" ;
        cim:VsConverter.targetPhasePcc "float" ;
        cim:VsConverter.targetPowerFactorPcc "float" ;
        cim:VsConverter.targetPWMfactor "float" ;
        cim:VsConverter.targetQpcc "float" ;
        cim:VsConverter.targetUpcc "float" ;
        cim:ACDCConverter.p "float" ;
        cim:ACDCConverter.q "float" ;
        cim:ACDCConverter.targetPpcc "float" ;
        cim:ACDCConverter.targetUdc "float" ;
        cim:Equipment.inService "boolean" ;
        cim:IdentifiedObject.mRID "string" .
}

Schema Source