Abnormal condition causing current flow through conducting equipment, such as caused by equipment failure or short circuits from objects not typically modelled (for example, a tree falling on a line).
No Additional PropertiesPointer to Equipment object
Pointer to Equipment object
Must match regular expression:^Equipment::'(.+)'$
Pointer to ConductingEquipment object
Must match regular expression:^ConductingEquipment::'(.+)'$
Pointer to GeneratingUnit object
Must match regular expression:^GeneratingUnit::'(.+)'$
Pointer to PowerElectronicsUnit object
Must match regular expression:^PowerElectronicsUnit::'(.+)'$
Pointer to EnergyConnection object
Must match regular expression:^EnergyConnection::'(.+)'$
Pointer to Ground object
Must match regular expression:^Ground::'(.+)'$
Pointer to PowerTransformer object
Must match regular expression:^PowerTransformer::'(.+)'$
Pointer to EarthFaultCompensator object
Must match regular expression:^EarthFaultCompensator::'(.+)'$
Pointer to ACDCConverter object
Must match regular expression:^ACDCConverter::'(.+)'$
Pointer to SeriesCompensator object
Must match regular expression:^SeriesCompensator::'(.+)'$
Pointer to Conductor object
Must match regular expression:^Conductor::'(.+)'$
Pointer to Switch object
Must match regular expression:^Switch::'(.+)'$
Pointer to HydroGeneratingUnit object
Must match regular expression:^HydroGeneratingUnit::'(.+)'$
Pointer to ThermalGeneratingUnit object
Must match regular expression:^ThermalGeneratingUnit::'(.+)'$
Pointer to NuclearGeneratingUnit object
Must match regular expression:^NuclearGeneratingUnit::'(.+)'$
Pointer to WindGeneratingUnit object
Must match regular expression:^WindGeneratingUnit::'(.+)'$
Pointer to SolarGeneratingUnit object
Must match regular expression:^SolarGeneratingUnit::'(.+)'$
Pointer to PhotoVoltaicUnit object
Must match regular expression:^PhotoVoltaicUnit::'(.+)'$
Pointer to BatteryUnit object
Must match regular expression:^BatteryUnit::'(.+)'$
Pointer to PowerElectronicsWindUnit object
Must match regular expression:^PowerElectronicsWindUnit::'(.+)'$
Pointer to EnergyConsumer object
Must match regular expression:^EnergyConsumer::'(.+)'$
Pointer to EnergySource object
Must match regular expression:^EnergySource::'(.+)'$
Pointer to RegulatingCondEq object
Must match regular expression:^RegulatingCondEq::'(.+)'$
Pointer to GroundingImpedance object
Must match regular expression:^GroundingImpedance::'(.+)'$
Pointer to CsConverter object
Must match regular expression:^CsConverter::'(.+)'$
Pointer to VsConverter object
Must match regular expression:^VsConverter::'(.+)'$
Pointer to WireSegment object
Must match regular expression:^WireSegment::'(.+)'$
Pointer to ACLineSegment object
Must match regular expression:^ACLineSegment::'(.+)'$
Pointer to Disconnector object
Must match regular expression:^Disconnector::'(.+)'$
Pointer to Jumper object
Must match regular expression:^Jumper::'(.+)'$
Pointer to Fuse object
Must match regular expression:^Fuse::'(.+)'$
Pointer to GroundDisconnector object
Must match regular expression:^GroundDisconnector::'(.+)'$
Pointer to Sectionaliser object
Must match regular expression:^Sectionaliser::'(.+)'$
Pointer to Cut object
Must match regular expression:^Cut::'(.+)'$
Pointer to ProtectedSwitch object
Must match regular expression:^ProtectedSwitch::'(.+)'$
Pointer to ConformLoad object
Must match regular expression:^ConformLoad::'(.+)'$
Pointer to NonConformLoad object
Must match regular expression:^NonConformLoad::'(.+)'$
Pointer to ShuntCompensator object
Must match regular expression:^ShuntCompensator::'(.+)'$
Pointer to StaticVarCompensator object
Must match regular expression:^StaticVarCompensator::'(.+)'$
Pointer to PowerElectronicsConnection object
Must match regular expression:^PowerElectronicsConnection::'(.+)'$
Pointer to RotatingMachine object
Must match regular expression:^RotatingMachine::'(.+)'$
Pointer to Breaker object
Must match regular expression:^Breaker::'(.+)'$
Pointer to Recloser object
Must match regular expression:^Recloser::'(.+)'$
Pointer to LoadBreakSwitch object
Must match regular expression:^LoadBreakSwitch::'(.+)'$
Pointer to NonlinearShuntCompensator object
Must match regular expression:^NonlinearShuntCompensator::'(.+)'$
Pointer to LinearShuntCompensator object
Must match regular expression:^LinearShuntCompensator::'(.+)'$
Pointer to AsynchronousMachine object
Must match regular expression:^AsynchronousMachine::'(.+)'$
Pointer to SynchronousMachine object
Must match regular expression:^SynchronousMachine::'(.+)'$
Pointer to DisconnectingCircuitBreaker object
Must match regular expression:^DisconnectingCircuitBreaker::'(.+)'$
Pointer to Location object
Pointer to Location object
Must match regular expression:^Location::'(.+)'$
Pointer to ProposedSiteLocation object
Must match regular expression:^ProposedSiteLocation::'(.+)'$
The date and time at which the fault occurred.
Fault impedance. Its usage is described by 'kind'.
No Additional PropertiesThe reactance of the fault between phases.
No Additional Propertiesnan
nan
nan
The resistance of the fault between phases.
No Additional Propertiesnan
nan
nan
The reactance of the fault between phases and ground.
No Additional Propertiesnan
nan
nan
The resistance of the fault between phases and ground.
No Additional Propertiesnan
nan
nan
Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.
The length to the place where the fault is located starting from terminal with sequence number 1 of the faulted line segment.
No Additional Propertiesnan
nan
nan
The kind of phase fault.
The phases participating in the fault. The fault connections into these phases are further specified by the type of fault.
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.