MktShuntCompensator
Subclass of IEC 61970:Wires:ShuntCompensator.
Type |
Class |
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URI |
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CIM standard (perspective) |
IEC62325 (Market) |
Slots
Name | Cardinality | Type | Description |
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1 |
Dataset containing the data objects. |
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0..* |
n/a |
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0..1 |
Datasheet information for this power system resource. |
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0..1 |
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. |
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0..1 |
Container of this equipment. |
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0..1 |
Action involving grounding operation on this conducting equipment. |
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0..1 |
Jumper action involving jumping operation on this conducting equipment. |
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0..1 |
Location of this power system resource. |
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0..1 |
The outage that is isolated by the outage isolation equipment. |
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0..1 |
Custom classification for this power system resource. |
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0..1 |
The single CIM data object in the appropriate dataset context. |
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0..1 |
The regulating control scheme in which this equipment participates. |
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0..1 |
The shunt compensator action that is performed on the shunt compensator |
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0..1 |
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. |
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0..1 |
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. |
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0..1 |
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. |
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0..1 |
Specifies the regulation status of the equipment. True is regulating, false is not regulating. |
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0..1 |
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. |
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0..1 |
Used for Yn and Zn connections. True if the neutral is solidly grounded. |
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0..1 |
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. |
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0..1 |
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. |
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0..1 |
The maximum number of sections that may be switched in. |
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0..1 |
The name is any free human readable and possibly non unique text naming the object. |
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0..1 |
The equipment is enabled to participate in network analysis. If unspecified, the value is assumed to be true. |
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0..1 |
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. |
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0..1 |
The normal number of sections switched in. The value shall be between zero and ShuntCompensator.maximumSections. |
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0..1 |
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. |
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0..1 |
The type of phase connection, such as wye or delta. |
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0..1 |
Shunt compensator sections in use. Starting value for steady state solution. The attribute shall be a positive value or zero. Non integer values are allowed to support continuous variables. The reasons for continuous value are to support study cases where no discrete shunt compensators has yet been designed, a solutions where a narrow voltage band force the sections to oscillate or accommodate for a continuous solution as input. For LinearShuntConpensator the value shall be between zero and ShuntCompensator.maximumSections. At value zero the shunt compensator conductance and admittance is zero. Linear interpolation of conductance and admittance between the previous and next integer section is applied in case of non-integer values. For NonlinearShuntCompensator-s shall only be set to one of the NonlinearShuntCompenstorPoint.sectionNumber. There is no interpolation between NonlinearShuntCompenstorPoint-s. |
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0..1 |
The switch on count since the capacitor count was last reset or initialized. |
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0..1 |
The date and time when the capacitor bank was last switched on. |
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0..1 |
Voltage sensitivity required for the device to regulate the bus voltage, in voltage/reactive power. |
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0..* |
Additional equipment container beyond the primary equipment container. The equipment is contained in another equipment container, but also grouped with this equipment container. |
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0..* |
All assets represented by this power system resource. For example, multiple conductor assets are electrically modelled as a single AC line segment. |
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0..* |
All clearances applicable to this power system resource. |
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0..* |
All configuration events created for this Power System resource. |
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0..* |
The contingency equipments in which this equipment participates. |
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0..* |
The controller outputs used to actually govern a regulating device, e.g. the magnetization of a synchronous machine or capacitor bank breaker actuator. |
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0..* |
The diagram objects that are associated with the domain object. |
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0..* |
n/a |
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0..* |
Equipment limit series calculation component to which this equipment contributes. |
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0..* |
n/a |
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0..* |
All faults on this equipment. |
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0..* |
The generic action that is performed on the power system resource |
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0..* |
Limit dependencymodels organized under this equipment as a means for organizing the model in a tree view. |
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0..* |
The measurements associated with this power system resource. |
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0..* |
All names of this identified object. |
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0..* |
The operating shares of this power system resource. |
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0..* |
The operational limit sets associated with this equipment. |
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0..* |
All operational restrictions for this equipment. |
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0..* |
All operational tags placed on this power system resource. |
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0..* |
All outages in which this equipment is involved. |
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0..* |
All events associated with this power system resource. |
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0..* |
n/a |
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0..* |
Protection equipment used to protect specific conducting equipment. |
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0..* |
The operating condition to the Conducting Equipment is changed when protective action adjustment is activated. For ShuntCompensator or other conducting equipment that operates on discrete values (integer), the values given in float will be rounded. |
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0..* |
Protective action is controlling equipment. This can be direct signals from the control center, or emulation of action done by protection equipment. |
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0..* |
Reporting groups to which this power system resource belongs. |
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0..* |
The individual phases models for the shunt compensator. |
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0..* |
The state for the number of shunt compensator sections in service. |
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0..* |
The status state variable associated with this conducting equipment. |
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0..* |
Data objects registered. |
||
0..* |
Conducting equipment have terminals that may be connected to other conducting equipment terminals via connectivity nodes or topological nodes. |
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0..* |
All usage points connected to the electrical grid through this equipment. |
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0..* |
The verification action that is performed on the power system resource |
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0..* |
n/a |
AdditionalEquipmentContainer
Additional equipment container beyond the primary equipment container. The equipment is contained in another equipment container, but also grouped with this equipment container.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
aggregate
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.
URI |
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Cardinality |
0..1 |
Type |
|
Inherited from |
aliasName
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.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
AssetDatasheet
Datasheet information for this power system resource.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
Assets
All assets represented by this power system resource. For example, multiple conductor assets are electrically modelled as a single AC line segment.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
aVRDelay
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.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
BaseVoltage
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.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
Clearances
All clearances applicable to this power system resource.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
ConfigurationEvent
All configuration events created for this Power System resource.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
ContingencyEquipment
The contingency equipments in which this equipment participates.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
controlEnabled
Specifies the regulation status of the equipment. True is regulating, false is not regulating.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
Controls
The controller outputs used to actually govern a regulating device, e.g. the magnetization of a synchronous machine or capacitor bank breaker actuator.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
description
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.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
DiagramObjects
The diagram objects that are associated with the domain object.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
EqiupmentLimitSeriesComponent
Equipment limit series calculation component to which this equipment contributes.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
EquipmentContainer
Container of this equipment.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
EquipmentUnavailabilitySchedule
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
GenericAction
The generic action that is performed on the power system resource
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
grounded
Used for Yn and Zn connections. True if the neutral is solidly grounded.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
GroundingAction
Action involving grounding operation on this conducting equipment.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
inService
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.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
InstanceSet
Dataset containing the data objects.
URI |
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Cardinality |
1 |
Type |
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Inherited from |
JumpingAction
Jumper action involving jumping operation on this conducting equipment.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
LimitDependencyModel
Limit dependencymodels organized under this equipment as a means for organizing the model in a tree view.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
Location
Location of this power system resource.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
maximumSections
The maximum number of sections that may be switched in.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
Measurements
The measurements associated with this power system resource.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
mRID
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.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
name
The name is any free human readable and possibly non unique text naming the object.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
Names
All names of this identified object.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
networkAnalysisEnabled
The equipment is enabled to participate in network analysis. If unspecified, the value is assumed to be true.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
nomU
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.
URI |
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Cardinality |
0..1 |
Type |
|
Inherited from |
normallyInService
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.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
normalSections
The normal number of sections switched in. The value shall be between zero and ShuntCompensator.maximumSections.
URI |
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Cardinality |
0..1 |
Type |
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Inherited from |
OperatingShare
The operating shares of this power system resource.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
OperationalLimitSet
The operational limit sets associated with this equipment.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
OperationalRestrictions
All operational restrictions for this equipment.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
OperationalTags
All operational tags placed on this power system resource.
URI |
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Cardinality |
0..* |
Type |
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Inherited from |
Outage
The outage that is isolated by the outage isolation equipment.
URI |
|
---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |
Outages
All outages in which this equipment is involved.
URI |
|
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Cardinality |
0..* |
Type |
|
Inherited from |
phaseConnection
The type of phase connection, such as wye or delta.
URI |
|
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Cardinality |
0..1 |
Type |
|
Inherited from |
PropertiesCIMDataObject
The single CIM data object in the appropriate dataset context.
URI |
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---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |
ProtectionEquipments
Protection equipment used to protect specific conducting equipment.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
ProtectiveActionAdjustment
The operating condition to the Conducting Equipment is changed when protective action adjustment is activated. For ShuntCompensator or other conducting equipment that operates on discrete values (integer), the values given in float will be rounded.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
ProtectiveActionEquipment
Protective action is controlling equipment. This can be direct signals from the control center, or emulation of action done by protection equipment.
URI |
|
---|---|
Cardinality |
0..* |
Type |
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Inherited from |
PSREvents
All events associated with this power system resource.
URI |
|
---|---|
Cardinality |
0..* |
Type |
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Inherited from |
PSRType
Custom classification for this power system resource.
URI |
|
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Cardinality |
0..1 |
Type |
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Inherited from |
RegulatingControl
The regulating control scheme in which this equipment participates.
URI |
|
---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |
ReportingGroup
Reporting groups to which this power system resource belongs.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
sections
Shunt compensator sections in use. Starting value for steady state solution. The attribute shall be a positive value or zero. Non integer values are allowed to support continuous variables. The reasons for continuous value are to support study cases where no discrete shunt compensators has yet been designed, a solutions where a narrow voltage band force the sections to oscillate or accommodate for a continuous solution as input. For LinearShuntConpensator the value shall be between zero and ShuntCompensator.maximumSections. At value zero the shunt compensator conductance and admittance is zero. Linear interpolation of conductance and admittance between the previous and next integer section is applied in case of non-integer values. For NonlinearShuntCompensator-s shall only be set to one of the NonlinearShuntCompenstorPoint.sectionNumber. There is no interpolation between NonlinearShuntCompenstorPoint-s.
URI |
|
---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |
ShuntCompensatorAction
The shunt compensator action that is performed on the shunt compensator
URI |
|
---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |
ShuntCompensatorDynamicData
URI |
|
---|---|
Cardinality |
0..* |
Type |
ShuntCompensatorPhase
The individual phases models for the shunt compensator.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
SvShuntCompensatorSections
The state for the number of shunt compensator sections in service.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
SvStatus
The status state variable associated with this conducting equipment.
URI |
|
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Cardinality |
0..* |
Type |
|
Inherited from |
switchOnCount
The switch on count since the capacitor count was last reset or initialized.
URI |
|
---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |
switchOnDate
The date and time when the capacitor bank was last switched on.
URI |
|
---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |
TargetingCIMDataObject
Data objects registered.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
Terminals
Conducting equipment have terminals that may be connected to other conducting equipment terminals via connectivity nodes or topological nodes.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
UsagePoints
All usage points connected to the electrical grid through this equipment.
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
VerificationAction
The verification action that is performed on the power system resource
URI |
|
---|---|
Cardinality |
0..* |
Type |
|
Inherited from |
voltageSensitivity
Voltage sensitivity required for the device to regulate the bus voltage, in voltage/reactive power.
URI |
|
---|---|
Cardinality |
0..1 |
Type |
|
Inherited from |