DisconnectingCircuitBreaker

Type: object

A circuit breaking device including disconnecting function, eliminating the need for separate disconnectors.

No Additional Properties

AssetInfo_anyOfPointer

Type: object

Pointer to AssetInfo object

AssetInfo_Pointer

Type: string

Pointer to AssetInfo object

Must match regular expression: ^AssetInfo::'(.+)'$

PowerTransformerInfo_Pointer

Type: string

Pointer to PowerTransformerInfo object

Must match regular expression: ^PowerTransformerInfo::'(.+)'$

WireInfo_Pointer

Type: string

Pointer to WireInfo object

Must match regular expression: ^WireInfo::'(.+)'$

SwitchInfo_Pointer

Type: string

Pointer to SwitchInfo object

Must match regular expression: ^SwitchInfo::'(.+)'$

ShuntCompensatorInfo_Pointer

Type: string

Pointer to ShuntCompensatorInfo object

Must match regular expression: ^ShuntCompensatorInfo::'(.+)'$

WireAssemblyInfo_Pointer

Type: string

Pointer to WireAssemblyInfo object

Must match regular expression: ^WireAssemblyInfo::'(.+)'$

TransformerEndInfo_Pointer

Type: string

Pointer to TransformerEndInfo object

Must match regular expression: ^TransformerEndInfo::'(.+)'$

TapChangerInfo_Pointer

Type: string

Pointer to TapChangerInfo object

Must match regular expression: ^TapChangerInfo::'(.+)'$

WireSpacingInfo_Pointer

Type: string

Pointer to WireSpacingInfo object

Must match regular expression: ^WireSpacingInfo::'(.+)'$

TransformerTankInfo_Pointer

Type: string

Pointer to TransformerTankInfo object

Must match regular expression: ^TransformerTankInfo::'(.+)'$

CableInfo_Pointer

Type: string

Pointer to CableInfo object

Must match regular expression: ^CableInfo::'(.+)'$

OverheadWireInfo_Pointer

Type: string

Pointer to OverheadWireInfo object

Must match regular expression: ^OverheadWireInfo::'(.+)'$

ConcentricNeutralCableInfo_Pointer

Type: string

Pointer to ConcentricNeutralCableInfo object

Must match regular expression: ^ConcentricNeutralCableInfo::'(.+)'$

TapeShieldCableInfo_Pointer

Type: string

Pointer to TapeShieldCableInfo object

Must match regular expression: ^TapeShieldCableInfo::'(.+)'$

GenericAction_PointerArray

Type: array of string

Pointers to GenericAction objects

No Additional Items

Each item of this array must be:

GenericAction_Pointer

Type: string

Pointer to GenericAction object

Location_anyOfPointer

Type: object

Pointer to Location object

Location_Pointer

Type: string

Pointer to Location object

Must match regular expression: ^Location::'(.+)'$

ProposedSiteLocation_Pointer

Type: string

Pointer to ProposedSiteLocation object

Must match regular expression: ^ProposedSiteLocation::'(.+)'$

JumperAction_Pointer

Type: string

Pointer to JumperAction object

Must match regular expression: ^JumperAction::'(.+)'$

Terminal_Array

Type: array

Array of Terminal objects

No Additional Items

Each item of this array must be:

Terminal

Type: object

An AC electrical connection point to a piece of conducting equipment. Terminals are connected at physical connection points called connectivity nodes.

No Additional Properties

OperationalLimitSet_PointerArray

Type: array of string

Pointers to OperationalLimitSet objects

No Additional Items

Each item of this array must be:

OperationalLimitSet_Pointer

Type: string

Pointer to OperationalLimitSet object

SvPowerFlow_Array

Type: array

Array of SvPowerFlow objects

No Additional Items

Each item of this array must be:

SvPowerFlow

Type: object

State variable for power flow. Load convention is used for flow direction. This means flow out from the TopologicalNode into the equipment is positive.

No Additional Properties

p

Type: object or number

The active power flow. Load sign convention is used, i.e. positive sign means flow out from a TopologicalNode (bus) into the conducting equipment.

No Additional Properties

UnitSymbol

Type: enum (of string) Default: "W"

nan

Must be one of:

  • "UnitSymbol.JPerkg"
  • "UnitSymbol.NPerm"
  • "UnitSymbol.WPerW"
  • "UnitSymbol.JPermol"
  • "UnitSymbol.WPerm2sr"
  • "UnitSymbol.V"
  • "UnitSymbol.A2h"
  • "UnitSymbol.JPerK"
  • "UnitSymbol.m3Perkg"
  • "UnitSymbol.HzPerHz"
  • "UnitSymbol.T"
  • "UnitSymbol.Vh"
  • "UnitSymbol.tonne"
  • "UnitSymbol.JPerm2"
  • "UnitSymbol.CPerkg"
  • "UnitSymbol.VPerHz"
  • "UnitSymbol.ohm"
  • "UnitSymbol.K"
  • "UnitSymbol.m3Compensated"
  • "UnitSymbol.lx"
  • "UnitSymbol.lPerh"
  • "UnitSymbol.APerm"
  • "UnitSymbol.charPers"
  • "UnitSymbol.katPerm3"
  • "UnitSymbol.Pas"
  • "UnitSymbol.ohmPerm"
  • "UnitSymbol.radPers2"
  • "UnitSymbol.Btu"
  • "UnitSymbol.WPers"
  • "UnitSymbol.h"
  • "UnitSymbol.lPerl"
  • "UnitSymbol.l"
  • "UnitSymbol.As"
  • "UnitSymbol.cosPhi"
  • "UnitSymbol.W"
  • "UnitSymbol.count"
  • "UnitSymbol.PaPers"
  • "UnitSymbol.onePerHz"
  • "UnitSymbol.m3Pers"
  • "UnitSymbol.KPers"
  • "UnitSymbol.Vs"
  • "UnitSymbol.m2Pers"
  • "UnitSymbol.Ah"
  • "UnitSymbol.deg"
  • "UnitSymbol.mPers2"
  • "UnitSymbol.lm"
  • "UnitSymbol.d"
  • "UnitSymbol.JPerkgK"
  • "UnitSymbol.m"
  • "UnitSymbol.min"
  • "UnitSymbol.dB"
  • "UnitSymbol.Gy"
  • "UnitSymbol.Nm"
  • "UnitSymbol.JPerm3"
  • "UnitSymbol.sPers"
  • "UnitSymbol.Q"
  • "UnitSymbol.rev"
  • "UnitSymbol.N"
  • "UnitSymbol.Bq"
  • "UnitSymbol.WPermK"
  • "UnitSymbol.GyPers"
  • "UnitSymbol.HPerm"
  • "UnitSymbol.molPerkg"
  • "UnitSymbol.molPerm3"
  • "UnitSymbol.Wb"
  • "UnitSymbol.VPerm"
  • "UnitSymbol.WPerm2"
  • "UnitSymbol.kn"
  • "UnitSymbol.CPerm2"
  • "UnitSymbol.anglemin"
  • "UnitSymbol.Oe"
  • "UnitSymbol.kgm"
  • "UnitSymbol.character"
  • "UnitSymbol.APerA"
  • "UnitSymbol.A2s"
  • "UnitSymbol.Qh"
  • "UnitSymbol.JPers"
  • "UnitSymbol.Hz"
  • "UnitSymbol.rad"
  • "UnitSymbol.kat"
  • "UnitSymbol.degC"
  • "UnitSymbol.bar"
  • "UnitSymbol.M"
  • "UnitSymbol.molPermol"
  • "UnitSymbol.kgPerJ"
  • "UnitSymbol.J"
  • "UnitSymbol.HzPers"
  • "UnitSymbol.WPersr"
  • "UnitSymbol.anglesec"
  • "UnitSymbol.F"
  • "UnitSymbol.Mx"
  • "UnitSymbol.ha"
  • "UnitSymbol.SPerm"
  • "UnitSymbol.gal"
  • "UnitSymbol.mmHg"
  • "UnitSymbol.m2"
  • "UnitSymbol.mPers"
  • "UnitSymbol.V2h"
  • "UnitSymbol.m3"
  • "UnitSymbol.G"
  • "UnitSymbol.H"
  • "UnitSymbol.mol"
  • "UnitSymbol.rotPers"
  • "UnitSymbol.VAh"
  • "UnitSymbol.mPerm3"
  • "UnitSymbol.onePerm"
  • "UnitSymbol.V2"
  • "UnitSymbol.WPerA"
  • "UnitSymbol.Pa"
  • "UnitSymbol.kgPerm3"
  • "UnitSymbol.CPerm3"
  • "UnitSymbol.Sv"
  • "UnitSymbol.S"
  • "UnitSymbol.JPermolK"
  • "UnitSymbol.ft3"
  • "UnitSymbol.Wh"
  • "UnitSymbol.radPers"
  • "UnitSymbol.ohmm"
  • "UnitSymbol.kgm2"
  • "UnitSymbol.m3Perh"
  • "UnitSymbol.dBm"
  • "UnitSymbol.VA"
  • "UnitSymbol.A2"
  • "UnitSymbol.s"
  • "UnitSymbol.therm"
  • "UnitSymbol.VArh"
  • "UnitSymbol.cd"
  • "UnitSymbol.VPerV"
  • "UnitSymbol.gPerg"
  • "UnitSymbol.kg"
  • "UnitSymbol.A"
  • "UnitSymbol.m3Uncompensated"
  • "UnitSymbol.ppm"
  • "UnitSymbol.FPerm"
  • "UnitSymbol.C"
  • "UnitSymbol.sr"
  • "UnitSymbol.none"
  • "UnitSymbol.VPerVAr"
  • "UnitSymbol.VAr"
  • "UnitSymbol.VPerVA"
  • "UnitSymbol.lPers"

UnitMultiplier

Type: enum (of string) Default: "none"

nan

Must be one of:

  • "UnitMultiplier.f"
  • "UnitMultiplier.c"
  • "UnitMultiplier.G"
  • "UnitMultiplier.d"
  • "UnitMultiplier.z"
  • "UnitMultiplier.p"
  • "UnitMultiplier.y"
  • "UnitMultiplier.h"
  • "UnitMultiplier.Y"
  • "UnitMultiplier.a"
  • "UnitMultiplier.none"
  • "UnitMultiplier.k"
  • "UnitMultiplier.m"
  • "UnitMultiplier.n"
  • "UnitMultiplier.E"
  • "UnitMultiplier.da"
  • "UnitMultiplier.T"
  • "UnitMultiplier.M"
  • "UnitMultiplier.P"
  • "UnitMultiplier.Z"
  • "UnitMultiplier.micro"

phase

Type: enum (of string)

The individual phase of the flow. If unspecified, then assumed to be balanced among phases.

Must be one of:

  • "SinglePhaseKind.B"
  • "SinglePhaseKind.N"
  • "SinglePhaseKind.C"
  • "SinglePhaseKind.s2"
  • "SinglePhaseKind.A"
  • "SinglePhaseKind.s1"

q

Type: object or number

The reactive power flow. Load sign convention is used, i.e. positive sign means flow out from a TopologicalNode (bus) into the conducting equipment.

No Additional Properties

UnitMultiplier

Type: enum (of string) Default: "none"

nan

Must be one of:

  • "UnitMultiplier.f"
  • "UnitMultiplier.c"
  • "UnitMultiplier.G"
  • "UnitMultiplier.d"
  • "UnitMultiplier.z"
  • "UnitMultiplier.p"
  • "UnitMultiplier.y"
  • "UnitMultiplier.h"
  • "UnitMultiplier.Y"
  • "UnitMultiplier.a"
  • "UnitMultiplier.none"
  • "UnitMultiplier.k"
  • "UnitMultiplier.m"
  • "UnitMultiplier.n"
  • "UnitMultiplier.E"
  • "UnitMultiplier.da"
  • "UnitMultiplier.T"
  • "UnitMultiplier.M"
  • "UnitMultiplier.P"
  • "UnitMultiplier.Z"
  • "UnitMultiplier.micro"

UnitSymbol

Type: enum (of string) Default: "VAr"

nan

Must be one of:

  • "UnitSymbol.JPerkg"
  • "UnitSymbol.NPerm"
  • "UnitSymbol.WPerW"
  • "UnitSymbol.JPermol"
  • "UnitSymbol.WPerm2sr"
  • "UnitSymbol.V"
  • "UnitSymbol.A2h"
  • "UnitSymbol.JPerK"
  • "UnitSymbol.m3Perkg"
  • "UnitSymbol.HzPerHz"
  • "UnitSymbol.T"
  • "UnitSymbol.Vh"
  • "UnitSymbol.tonne"
  • "UnitSymbol.JPerm2"
  • "UnitSymbol.CPerkg"
  • "UnitSymbol.VPerHz"
  • "UnitSymbol.ohm"
  • "UnitSymbol.K"
  • "UnitSymbol.m3Compensated"
  • "UnitSymbol.lx"
  • "UnitSymbol.lPerh"
  • "UnitSymbol.APerm"
  • "UnitSymbol.charPers"
  • "UnitSymbol.katPerm3"
  • "UnitSymbol.Pas"
  • "UnitSymbol.ohmPerm"
  • "UnitSymbol.radPers2"
  • "UnitSymbol.Btu"
  • "UnitSymbol.WPers"
  • "UnitSymbol.h"
  • "UnitSymbol.lPerl"
  • "UnitSymbol.l"
  • "UnitSymbol.As"
  • "UnitSymbol.cosPhi"
  • "UnitSymbol.W"
  • "UnitSymbol.count"
  • "UnitSymbol.PaPers"
  • "UnitSymbol.onePerHz"
  • "UnitSymbol.m3Pers"
  • "UnitSymbol.KPers"
  • "UnitSymbol.Vs"
  • "UnitSymbol.m2Pers"
  • "UnitSymbol.Ah"
  • "UnitSymbol.deg"
  • "UnitSymbol.mPers2"
  • "UnitSymbol.lm"
  • "UnitSymbol.d"
  • "UnitSymbol.JPerkgK"
  • "UnitSymbol.m"
  • "UnitSymbol.min"
  • "UnitSymbol.dB"
  • "UnitSymbol.Gy"
  • "UnitSymbol.Nm"
  • "UnitSymbol.JPerm3"
  • "UnitSymbol.sPers"
  • "UnitSymbol.Q"
  • "UnitSymbol.rev"
  • "UnitSymbol.N"
  • "UnitSymbol.Bq"
  • "UnitSymbol.WPermK"
  • "UnitSymbol.GyPers"
  • "UnitSymbol.HPerm"
  • "UnitSymbol.molPerkg"
  • "UnitSymbol.molPerm3"
  • "UnitSymbol.Wb"
  • "UnitSymbol.VPerm"
  • "UnitSymbol.WPerm2"
  • "UnitSymbol.kn"
  • "UnitSymbol.CPerm2"
  • "UnitSymbol.anglemin"
  • "UnitSymbol.Oe"
  • "UnitSymbol.kgm"
  • "UnitSymbol.character"
  • "UnitSymbol.APerA"
  • "UnitSymbol.A2s"
  • "UnitSymbol.Qh"
  • "UnitSymbol.JPers"
  • "UnitSymbol.Hz"
  • "UnitSymbol.rad"
  • "UnitSymbol.kat"
  • "UnitSymbol.degC"
  • "UnitSymbol.bar"
  • "UnitSymbol.M"
  • "UnitSymbol.molPermol"
  • "UnitSymbol.kgPerJ"
  • "UnitSymbol.J"
  • "UnitSymbol.HzPers"
  • "UnitSymbol.WPersr"
  • "UnitSymbol.anglesec"
  • "UnitSymbol.F"
  • "UnitSymbol.Mx"
  • "UnitSymbol.ha"
  • "UnitSymbol.SPerm"
  • "UnitSymbol.gal"
  • "UnitSymbol.mmHg"
  • "UnitSymbol.m2"
  • "UnitSymbol.mPers"
  • "UnitSymbol.V2h"
  • "UnitSymbol.m3"
  • "UnitSymbol.G"
  • "UnitSymbol.H"
  • "UnitSymbol.mol"
  • "UnitSymbol.rotPers"
  • "UnitSymbol.VAh"
  • "UnitSymbol.mPerm3"
  • "UnitSymbol.onePerm"
  • "UnitSymbol.V2"
  • "UnitSymbol.WPerA"
  • "UnitSymbol.Pa"
  • "UnitSymbol.kgPerm3"
  • "UnitSymbol.CPerm3"
  • "UnitSymbol.Sv"
  • "UnitSymbol.S"
  • "UnitSymbol.JPermolK"
  • "UnitSymbol.ft3"
  • "UnitSymbol.Wh"
  • "UnitSymbol.radPers"
  • "UnitSymbol.ohmm"
  • "UnitSymbol.kgm2"
  • "UnitSymbol.m3Perh"
  • "UnitSymbol.dBm"
  • "UnitSymbol.VA"
  • "UnitSymbol.A2"
  • "UnitSymbol.s"
  • "UnitSymbol.therm"
  • "UnitSymbol.VArh"
  • "UnitSymbol.cd"
  • "UnitSymbol.VPerV"
  • "UnitSymbol.gPerg"
  • "UnitSymbol.kg"
  • "UnitSymbol.A"
  • "UnitSymbol.m3Uncompensated"
  • "UnitSymbol.ppm"
  • "UnitSymbol.FPerm"
  • "UnitSymbol.C"
  • "UnitSymbol.sr"
  • "UnitSymbol.none"
  • "UnitSymbol.VPerVAr"
  • "UnitSymbol.VAr"
  • "UnitSymbol.VPerVA"
  • "UnitSymbol.lPers"

cimObjectType

Type: enum (of string)

Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.

Must be one of:

  • "SvPowerFlow"

Circuit_Pointer

Type: string

Pointer to Circuit object

Must match regular expression: ^Circuit::'(.+)'$

ConnectivityNode_Pointer

Type: string

Pointer to ConnectivityNode object

Must match regular expression: ^ConnectivityNode::'(.+)'$

TopologicalNode_Pointer

Type: string

Pointer to TopologicalNode object

Must match regular expression: ^TopologicalNode::'(.+)'$

connected

Type: boolean

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.

phases

Type: enum (of string)

Represents the normal network phasing condition. If the attribute is missing, three phases (ABC) shall be assumed, except for terminals of grounding classes (specializations of EarthFaultCompensator, GroundDisconnector, and Ground) which will be assumed to be N. Therefore, phase code ABCN is explicitly declared when needed, e.g. for star point grounding equipment.
The phase code on terminals connecting same ConnectivityNode or same TopologicalNode as well as for equipment between two terminals shall be consistent.

Must be one of:

  • "PhaseCode.ACN"
  • "PhaseCode.s2N"
  • "PhaseCode.N"
  • "PhaseCode.X"
  • "PhaseCode.BN"
  • "PhaseCode.s12N"
  • "PhaseCode.none"
  • "PhaseCode.s1"
  • "PhaseCode.AC"
  • "PhaseCode.ABC"
  • "PhaseCode.AB"
  • "PhaseCode.s1N"
  • "PhaseCode.BC"
  • "PhaseCode.XY"
  • "PhaseCode.ABCN"
  • "PhaseCode.C"
  • "PhaseCode.s12"
  • "PhaseCode.AN"
  • "PhaseCode.XYN"
  • "PhaseCode.ABN"
  • "PhaseCode.XN"
  • "PhaseCode.s2"
  • "PhaseCode.CN"
  • "PhaseCode.B"
  • "PhaseCode.A"
  • "PhaseCode.BCN"

sequenceNumber

Type: integer

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.

cimObjectType

Type: enum (of string)

Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.

Must be one of:

  • "Terminal"

description

Type: string

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.

aliasName

Type: string

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.

mRID

Type: string

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.

name

Type: string

The name is any free human readable and possibly non unique text naming the object.

BaseVoltage_Pointer

Type: string

Pointer to BaseVoltage object

Must match regular expression: ^BaseVoltage::'(.+)'$

GroundAction_Pointer

Type: string

Pointer to GroundAction object

Must match regular expression: ^GroundAction::'(.+)'$

SvStatus_Array

Type: array

Array of SvStatus objects

No Additional Items

Each item of this array must be:

SvStatus

Type: object

State variable for status.

No Additional Properties

inService

Type: boolean

The in service status as a result of topology processing. It indicates if the equipment is considered as energized by the power flow. It reflects if the equipment is connected within a solvable island. It does not necessarily reflect whether or not the island was solved by the power flow.

phase

Type: SinglePhaseKind

The individual phase status. If the attribute is unspecified, then three phase model is assumed.

cimObjectType

Type: enum (of string)

Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.

Must be one of:

  • "SvStatus"

SwitchPhase_Array

Type: array

Array of SwitchPhase objects

No Additional Items

Each item of this array must be:

SwitchPhase

Type: object

Single phase of a multi-phase switch when its attributes might be different per phase.

No Additional Properties

GenericAction_PointerArray

Type: array of string

Pointers to GenericAction objects

Same definition as PowerSystemResource.GenericAction

Location_anyOfPointer

Type: object

Pointer to Location object

Same definition as PowerSystemResource.Location

normalOpen

Type: boolean

Used in cases when no Measurement for the status value is present. If the SwitchPhase has a status measurement the Discrete.normalValue is expected to match with this value.

phaseSide1

Type: enum (of string)

Phase of this SwitchPhase on the side with terminal sequence number equal to 1. Should be a phase contained in that terminal’s phases attribute.

Must be one of:

  • "SinglePhaseKind.B"
  • "SinglePhaseKind.N"
  • "SinglePhaseKind.C"
  • "SinglePhaseKind.s2"
  • "SinglePhaseKind.A"
  • "SinglePhaseKind.s1"

phaseSide2

Type: enum (of string)

Phase of this SwitchPhase on the side with terminal sequence number equal to 2. Should be a phase contained in that terminal’s Terminal.phases attribute.

Must be one of:

  • "SinglePhaseKind.B"
  • "SinglePhaseKind.N"
  • "SinglePhaseKind.C"
  • "SinglePhaseKind.s2"
  • "SinglePhaseKind.A"
  • "SinglePhaseKind.s1"

cimObjectType

Type: enum (of string)

Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.

Must be one of:

  • "SwitchPhase"

closed

Type: boolean

The attribute tells if the switch is considered closed when used as input to topology processing.

ratedCurrent

Type: object or number

The maximum continuous current carrying capacity in amps governed by the device material and construction.
The attribute shall be a positive value.

No Additional Properties

UnitSymbol

Type: enum (of string) Default: "A"

nan

Must be one of:

  • "UnitSymbol.JPerkg"
  • "UnitSymbol.NPerm"
  • "UnitSymbol.WPerW"
  • "UnitSymbol.JPermol"
  • "UnitSymbol.WPerm2sr"
  • "UnitSymbol.V"
  • "UnitSymbol.A2h"
  • "UnitSymbol.JPerK"
  • "UnitSymbol.m3Perkg"
  • "UnitSymbol.HzPerHz"
  • "UnitSymbol.T"
  • "UnitSymbol.Vh"
  • "UnitSymbol.tonne"
  • "UnitSymbol.JPerm2"
  • "UnitSymbol.CPerkg"
  • "UnitSymbol.VPerHz"
  • "UnitSymbol.ohm"
  • "UnitSymbol.K"
  • "UnitSymbol.m3Compensated"
  • "UnitSymbol.lx"
  • "UnitSymbol.lPerh"
  • "UnitSymbol.APerm"
  • "UnitSymbol.charPers"
  • "UnitSymbol.katPerm3"
  • "UnitSymbol.Pas"
  • "UnitSymbol.ohmPerm"
  • "UnitSymbol.radPers2"
  • "UnitSymbol.Btu"
  • "UnitSymbol.WPers"
  • "UnitSymbol.h"
  • "UnitSymbol.lPerl"
  • "UnitSymbol.l"
  • "UnitSymbol.As"
  • "UnitSymbol.cosPhi"
  • "UnitSymbol.W"
  • "UnitSymbol.count"
  • "UnitSymbol.PaPers"
  • "UnitSymbol.onePerHz"
  • "UnitSymbol.m3Pers"
  • "UnitSymbol.KPers"
  • "UnitSymbol.Vs"
  • "UnitSymbol.m2Pers"
  • "UnitSymbol.Ah"
  • "UnitSymbol.deg"
  • "UnitSymbol.mPers2"
  • "UnitSymbol.lm"
  • "UnitSymbol.d"
  • "UnitSymbol.JPerkgK"
  • "UnitSymbol.m"
  • "UnitSymbol.min"
  • "UnitSymbol.dB"
  • "UnitSymbol.Gy"
  • "UnitSymbol.Nm"
  • "UnitSymbol.JPerm3"
  • "UnitSymbol.sPers"
  • "UnitSymbol.Q"
  • "UnitSymbol.rev"
  • "UnitSymbol.N"
  • "UnitSymbol.Bq"
  • "UnitSymbol.WPermK"
  • "UnitSymbol.GyPers"
  • "UnitSymbol.HPerm"
  • "UnitSymbol.molPerkg"
  • "UnitSymbol.molPerm3"
  • "UnitSymbol.Wb"
  • "UnitSymbol.VPerm"
  • "UnitSymbol.WPerm2"
  • "UnitSymbol.kn"
  • "UnitSymbol.CPerm2"
  • "UnitSymbol.anglemin"
  • "UnitSymbol.Oe"
  • "UnitSymbol.kgm"
  • "UnitSymbol.character"
  • "UnitSymbol.APerA"
  • "UnitSymbol.A2s"
  • "UnitSymbol.Qh"
  • "UnitSymbol.JPers"
  • "UnitSymbol.Hz"
  • "UnitSymbol.rad"
  • "UnitSymbol.kat"
  • "UnitSymbol.degC"
  • "UnitSymbol.bar"
  • "UnitSymbol.M"
  • "UnitSymbol.molPermol"
  • "UnitSymbol.kgPerJ"
  • "UnitSymbol.J"
  • "UnitSymbol.HzPers"
  • "UnitSymbol.WPersr"
  • "UnitSymbol.anglesec"
  • "UnitSymbol.F"
  • "UnitSymbol.Mx"
  • "UnitSymbol.ha"
  • "UnitSymbol.SPerm"
  • "UnitSymbol.gal"
  • "UnitSymbol.mmHg"
  • "UnitSymbol.m2"
  • "UnitSymbol.mPers"
  • "UnitSymbol.V2h"
  • "UnitSymbol.m3"
  • "UnitSymbol.G"
  • "UnitSymbol.H"
  • "UnitSymbol.mol"
  • "UnitSymbol.rotPers"
  • "UnitSymbol.VAh"
  • "UnitSymbol.mPerm3"
  • "UnitSymbol.onePerm"
  • "UnitSymbol.V2"
  • "UnitSymbol.WPerA"
  • "UnitSymbol.Pa"
  • "UnitSymbol.kgPerm3"
  • "UnitSymbol.CPerm3"
  • "UnitSymbol.Sv"
  • "UnitSymbol.S"
  • "UnitSymbol.JPermolK"
  • "UnitSymbol.ft3"
  • "UnitSymbol.Wh"
  • "UnitSymbol.radPers"
  • "UnitSymbol.ohmm"
  • "UnitSymbol.kgm2"
  • "UnitSymbol.m3Perh"
  • "UnitSymbol.dBm"
  • "UnitSymbol.VA"
  • "UnitSymbol.A2"
  • "UnitSymbol.s"
  • "UnitSymbol.therm"
  • "UnitSymbol.VArh"
  • "UnitSymbol.cd"
  • "UnitSymbol.VPerV"
  • "UnitSymbol.gPerg"
  • "UnitSymbol.kg"
  • "UnitSymbol.A"
  • "UnitSymbol.m3Uncompensated"
  • "UnitSymbol.ppm"
  • "UnitSymbol.FPerm"
  • "UnitSymbol.C"
  • "UnitSymbol.sr"
  • "UnitSymbol.none"
  • "UnitSymbol.VPerVAr"
  • "UnitSymbol.VAr"
  • "UnitSymbol.VPerVA"
  • "UnitSymbol.lPers"

Type: number Default: null

nan

UnitMultiplier

Type: enum (of string) Default: "none"

nan

Must be one of:

  • "UnitMultiplier.f"
  • "UnitMultiplier.c"
  • "UnitMultiplier.G"
  • "UnitMultiplier.d"
  • "UnitMultiplier.z"
  • "UnitMultiplier.p"
  • "UnitMultiplier.y"
  • "UnitMultiplier.h"
  • "UnitMultiplier.Y"
  • "UnitMultiplier.a"
  • "UnitMultiplier.none"
  • "UnitMultiplier.k"
  • "UnitMultiplier.m"
  • "UnitMultiplier.n"
  • "UnitMultiplier.E"
  • "UnitMultiplier.da"
  • "UnitMultiplier.T"
  • "UnitMultiplier.M"
  • "UnitMultiplier.P"
  • "UnitMultiplier.Z"
  • "UnitMultiplier.micro"

description

Type: string

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.

aliasName

Type: string

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.

mRID

Type: string

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.

name

Type: string

The name is any free human readable and possibly non unique text naming the object.

SvSwitch_Array

Type: array

Array of SvSwitch objects

No Additional Items

Each item of this array must be:

SvSwitch

Type: object

State variable for switch.

No Additional Properties

phase

Type: SinglePhaseKind

The terminal phase at which the connection is applied. If missing, the injection is assumed to be balanced among non-neutral phases.

open

Type: boolean

The attribute tells if the computed state of the switch is considered open.

cimObjectType

Type: enum (of string)

Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.

Must be one of:

  • "SvSwitch"

SwitchAction_Pointer

Type: string

Pointer to SwitchAction object

Must match regular expression: ^SwitchAction::'(.+)'$

OperationalLimitSet_PointerArray

Type: array of string

Pointers to OperationalLimitSet objects

Same definition as ACDCTerminal.OperationalLimitSet

inTransitTime

Type: Seconds

The transition time from open to close.

breakingCapacity

Type: CurrentFlow

The maximum fault current a breaking device can break safely under prescribed conditions of use.

aggregate

Type: boolean

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.

networkAnalysisEnabled

Type: boolean

The equipment is enabled to participate in network analysis. If unspecified, the value is assumed to be true.

description

Type: string

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.

locked

Type: boolean

If true, the switch is locked. The resulting switch state is a combination of locked and Switch.open attributes as follows:
<ul>
<li>locked=true and Switch.open=true. The resulting state is open and locked;</li>
<li>locked=false and Switch.open=true. The resulting state is open;</li>
<li>locked=false and Switch.open=false. The resulting state is closed.</li>
</ul>

normallyInService

Type: boolean

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.

cimObjectType

Type: enum (of string)

Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.

Must be one of:

  • "DisconnectingCircuitBreaker"

open

Type: boolean

The attribute tells if the switch is considered open when used as input to topology processing.

inService

Type: boolean

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.

normalOpen

Type: boolean

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

Type: CurrentFlow

The maximum continuous current carrying capacity in amps governed by the device material and construction.
The attribute shall be a positive value.

retained

Type: boolean

Branch is retained in the topological solution. The flow through retained switches will normally be calculated in power flow.

switchOnCount

Type: integer

The switch on count since the switch was last reset or initialized.

switchOnDate

Type: string

The date and time when the switch was last switched on.

aliasName

Type: string

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.

mRID

Type: string

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.

name

Type: string

The name is any free human readable and possibly non unique text naming the object.