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LinearShuntCompensator

A linear shunt compensator has banks or sections with equal admittance values.

URI: cim:LinearShuntCompensator
Type: Class

LinearShuntCompensator class diagram

Inheritance

Attributes

Name URI Cardinality and Range Inheritance Description
bPerSection cim:LinearShuntCompensator.bPerSection 1..1 Susceptance direct Positive sequence shunt (charging) susceptance per section.
gPerSection cim:LinearShuntCompensator.gPerSection 1..1 Conductance direct Positive sequence shunt (charging) conductance per section.
aVRDelay cim:ShuntCompensator.aVRDelay 0..1 Seconds ShuntCompensator An automatic voltage regulation delay (AVRDelay) which is the time delay from a change in voltage to when the capacitor is allowed to change state. This filters out temporary changes in voltage.
grounded cim:ShuntCompensator.grounded 0..1 boolean ShuntCompensator Used for Yn and Zn connections. True if the neutral is solidly grounded.
maximumSections cim:ShuntCompensator.maximumSections 1..1 integer ShuntCompensator The maximum number of sections that may be switched in.
nomU cim:ShuntCompensator.nomU 1..1 Voltage ShuntCompensator 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 cim:ShuntCompensator.normalSections 1..1 integer ShuntCompensator The normal number of sections switched in. The value shall be between zero and ShuntCompensator.maximumSections.
voltageSensitivity cim:ShuntCompensator.voltageSensitivity 0..1 VoltagePerReactivePower ShuntCompensator Voltage sensitivity required for the device to regulate the bus voltage, in voltage/reactive power.
RegulatingControl cim:RegulatingCondEq.RegulatingControl 0..1 RegulatingControl RegulatingCondEq The regulating control scheme in which this equipment participates.
BaseVoltage cim:ConductingEquipment.BaseVoltage 0..1 BaseVoltage ConductingEquipment 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.
aggregate cim:Equipment.aggregate 0..1 boolean Equipment The aggregate flag provides an alternative way of representing an aggregated (equivalent) element. It is applicable in cases when the dedicated classes for equivalent equipment do not have all of the attributes necessary to represent the required level of detail. In case the flag is set to “true” the single instance of equipment represents multiple pieces of equipment that have been modelled together as an aggregate equivalent obtained by a network reduction procedure. Examples would be power transformers or synchronous machines operating in parallel modelled as a single aggregate power transformer or aggregate synchronous machine.The attribute is not used for EquivalentBranch, EquivalentShunt and EquivalentInjection.
normallyInService cim:Equipment.normallyInService 0..1 boolean Equipment Specifies the availability of the equipment under normal operating conditions. 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.
EquipmentContainer cim:Equipment.EquipmentContainer 0..1 EquipmentContainer Equipment Container of this equipment.
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.
description cim:IdentifiedObject.description 0..1 string IdentifiedObject 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.
energyIdentCodeEic eu:IdentifiedObject.energyIdentCodeEic 0..1 string IdentifiedObject 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. For details on EIC scheme please refer to ENTSO-E web site.
name cim:IdentifiedObject.name 1..1 string IdentifiedObject The name is any free human readable and possibly non unique text naming the object.
shortName eu:IdentifiedObject.shortName 0..1 string IdentifiedObject The attribute is used for an exchange of a human readable short name with length of the string 12 characters maximum.

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#", "this": "http://ucaiug.org/ns/CGMES/CoreEquipment-EU/3.0#", "cims": "http://iec.ch/TC57/1999/rdf-schema-extensions-19990926#", "dct": "http://purl.org/dc/terms/", "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:LinearShuntCompensator",
    "cim:LinearShuntCompensator.bPerSection": "float",
    "cim:LinearShuntCompensator.gPerSection": "float",
    "cim:ShuntCompensator.aVRDelay": "float",
    "cim:ShuntCompensator.grounded": "boolean",
    "cim:ShuntCompensator.maximumSections": "integer",
    "cim:ShuntCompensator.nomU": "float",
    "cim:ShuntCompensator.normalSections": "integer",
    "cim:ShuntCompensator.voltageSensitivity": "float",
    "cim:RegulatingCondEq.RegulatingControl": { "@id": "urn:uuid:<uuid of RegulatingControl>" },
    "cim:ConductingEquipment.BaseVoltage": { "@id": "urn:uuid:<uuid of BaseVoltage>" },
    "cim:Equipment.aggregate": "boolean",
    "cim:Equipment.normallyInService": "boolean",
    "cim:Equipment.EquipmentContainer": { "@id": "urn:uuid:<uuid of EquipmentContainer>" },
    "cim:IdentifiedObject.mRID": "string",
    "cim:IdentifiedObject.description": "string",
    "eu:IdentifiedObject.energyIdentCodeEic": "string",
    "cim:IdentifiedObject.name": "string",
    "eu:IdentifiedObject.shortName": "string"
}
<cim:LinearShuntCompensator rdf:ID="_<uuid>">
    <cim:LinearShuntCompensator.bPerSection>float</cim:LinearShuntCompensator.bPerSection>
    <cim:LinearShuntCompensator.gPerSection>float</cim:LinearShuntCompensator.gPerSection>
    <cim:ShuntCompensator.aVRDelay>float</cim:ShuntCompensator.aVRDelay>
    <cim:ShuntCompensator.grounded>boolean</cim:ShuntCompensator.grounded>
    <cim:ShuntCompensator.maximumSections>integer</cim:ShuntCompensator.maximumSections>
    <cim:ShuntCompensator.nomU>float</cim:ShuntCompensator.nomU>
    <cim:ShuntCompensator.normalSections>integer</cim:ShuntCompensator.normalSections>
    <cim:ShuntCompensator.voltageSensitivity>float</cim:ShuntCompensator.voltageSensitivity>
    <cim:RegulatingCondEq.RegulatingControl rdf:resource="#_<uuid of RegulatingControl>" />
    <cim:ConductingEquipment.BaseVoltage rdf:resource="#_<uuid of BaseVoltage>" />
    <cim:Equipment.aggregate>boolean</cim:Equipment.aggregate>
    <cim:Equipment.normallyInService>boolean</cim:Equipment.normallyInService>
    <cim:Equipment.EquipmentContainer rdf:resource="#_<uuid of EquipmentContainer>" />
    <cim:IdentifiedObject.mRID>string</cim:IdentifiedObject.mRID>
    <cim:IdentifiedObject.description>string</cim:IdentifiedObject.description>
    <eu:IdentifiedObject.energyIdentCodeEic>string</eu:IdentifiedObject.energyIdentCodeEic>
    <cim:IdentifiedObject.name>string</cim:IdentifiedObject.name>
    <eu:IdentifiedObject.shortName>string</eu:IdentifiedObject.shortName>
</cim:LinearShuntCompensator>
{
    "bPerSection": "float",
    "gPerSection": "float",
    "aVRDelay": "float",
    "grounded": "boolean",
    "maximumSections": "integer",
    "nomU": "float",
    "normalSections": "integer",
    "voltageSensitivity": "float",
    "RegulatingControl": "<RegulatingControl>",
    "BaseVoltage": "<BaseVoltage>",
    "aggregate": "boolean",
    "normallyInService": "boolean",
    "EquipmentContainer": "<EquipmentContainer>",
    "mRID": "string",
    "description": "string",
    "energyIdentCodeEic": "string",
    "name": "string",
    "shortName": "string"
}
<urn:uuid:<graph-id>> {
    <urn:uuid:<uuid>>
        a cim:LinearShuntCompensator ;
        cim:LinearShuntCompensator.bPerSection "float" ;
        cim:LinearShuntCompensator.gPerSection "float" ;
        cim:ShuntCompensator.aVRDelay "float" ;
        cim:ShuntCompensator.grounded "boolean" ;
        cim:ShuntCompensator.maximumSections "integer" ;
        cim:ShuntCompensator.nomU "float" ;
        cim:ShuntCompensator.normalSections "integer" ;
        cim:ShuntCompensator.voltageSensitivity "float" ;
        cim:RegulatingCondEq.RegulatingControl <urn:uuid:<uuid of RegulatingControl>> ;
        cim:ConductingEquipment.BaseVoltage <urn:uuid:<uuid of BaseVoltage>> ;
        cim:Equipment.aggregate "boolean" ;
        cim:Equipment.normallyInService "boolean" ;
        cim:Equipment.EquipmentContainer <urn:uuid:<uuid of EquipmentContainer>> ;
        cim:IdentifiedObject.mRID "string" ;
        cim:IdentifiedObject.description "string" ;
        eu:IdentifiedObject.energyIdentCodeEic "string" ;
        cim:IdentifiedObject.name "string" ;
        eu:IdentifiedObject.shortName "string" .
}

Schema Source