A wind generating unit that connects to the AC network with power electronics rather than rotating machines or an aggregation of such units.
No Additional PropertiesPointer to AssetInfo object
Pointer to AssetInfo object
Must match regular expression:^AssetInfo::'(.+)'$
Pointer to PowerTransformerInfo object
Must match regular expression:^PowerTransformerInfo::'(.+)'$
Pointer to WireInfo object
Must match regular expression:^WireInfo::'(.+)'$
Pointer to SwitchInfo object
Must match regular expression:^SwitchInfo::'(.+)'$
Pointer to ShuntCompensatorInfo object
Must match regular expression:^ShuntCompensatorInfo::'(.+)'$
Pointer to WireAssemblyInfo object
Must match regular expression:^WireAssemblyInfo::'(.+)'$
Pointer to TransformerEndInfo object
Must match regular expression:^TransformerEndInfo::'(.+)'$
Pointer to TapChangerInfo object
Must match regular expression:^TapChangerInfo::'(.+)'$
Pointer to WireSpacingInfo object
Must match regular expression:^WireSpacingInfo::'(.+)'$
Pointer to TransformerTankInfo object
Must match regular expression:^TransformerTankInfo::'(.+)'$
Pointer to CableInfo object
Must match regular expression:^CableInfo::'(.+)'$
Pointer to OverheadWireInfo object
Must match regular expression:^OverheadWireInfo::'(.+)'$
Pointer to ConcentricNeutralCableInfo object
Must match regular expression:^ConcentricNeutralCableInfo::'(.+)'$
Pointer to TapeShieldCableInfo object
Must match regular expression:^TapeShieldCableInfo::'(.+)'$
Pointers to GenericAction objects
No Additional ItemsPointer to GenericAction object
Pointer to Location object
Pointer to Location object
Must match regular expression:^Location::'(.+)'$
Pointer to ProposedSiteLocation object
Must match regular expression:^ProposedSiteLocation::'(.+)'$
Pointer to Curve object
Pointer to Curve object
Must match regular expression:^Curve::'(.+)'$
Pointer to RampRateCurve object
Must match regular expression:^RampRateCurve::'(.+)'$
Pointer to DispatchCurve object
Must match regular expression:^DispatchCurve::'(.+)'$
Pointer to CustomProtectionCurve object
Must match regular expression:^CustomProtectionCurve::'(.+)'$
Pointer to StartUpTimeCurve object
Must match regular expression:^StartUpTimeCurve::'(.+)'$
Pointer to EmissionCurve object
Must match regular expression:^EmissionCurve::'(.+)'$
Pointer to VsCapabilityCurve object
Must match regular expression:^VsCapabilityCurve::'(.+)'$
Pointer to StartUpCostCurve object
Must match regular expression:^StartUpCostCurve::'(.+)'$
Pointer to HeatRateCurve object
Must match regular expression:^HeatRateCurve::'(.+)'$
Pointer to ReactiveCapabilityCurve object
Must match regular expression:^ReactiveCapabilityCurve::'(.+)'$
Pointer to FuelCostCurve object
Must match regular expression:^FuelCostCurve::'(.+)'$
Pointer to GenUnitOpCostCurve object
Must match regular expression:^GenUnitOpCostCurve::'(.+)'$
Pointer to ShutdownCurve object
Must match regular expression:^ShutdownCurve::'(.+)'$
Pointer to StartRampCurve object
Must match regular expression:^StartRampCurve::'(.+)'$
Pointer to ProducerCostFunction object
Must match regular expression:^ProducerCostFunction::'(.+)'$
Pointers to OperationalLimitSet objects
No Additional ItemsPointer to OperationalLimitSet object
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.
The equipment is enabled to participate in network analysis. If unspecified, the value is assumed to be true.
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.
Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.
Maximum active power limit. This is the maximum (nameplate) limit for the unit.
No Additional Propertiesnan
nan
nan
Minimum active power limit. This is the minimum (nameplate) limit for the unit.
No Additional Propertiesnan
nan
nan
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.
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.
The aliasName is free text human readable name of the object alternative to IdentifiedObject.name. It may be non unique and may not correlate to a naming hierarchy.
The attribute aliasName is retained because of backwards compatibility between CIM relases. It is however recommended to replace aliasName with the Name class as aliasName is planned for retirement at a future time.
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.
The name is any free human readable and possibly non unique text naming the object.