final case class StaticVarCompensator(RegulatingCondEq: RegulatingCondEq = null, capacitiveRating: Double = 0.0, inductiveRating: Double = 0.0, q: Double = 0.0, sVCControlMode: String = null, slope: Double = 0.0, voltageSetPoint: Double = 0.0, StaticVarCompensatorDynamics: String = null) extends Element with Product with Serializable
A facility for providing variable and controllable shunt reactive power.
The SVC typically consists of a stepdown transformer, filter, thyristor-controlled reactor, and thyristor-switched capacitor arms.
The SVC may operate in fixed MVar output mode or in voltage control mode. When in voltage control mode, the output of the SVC will be proportional to the deviation of voltage at the controlled bus from the voltage setpoint. The SVC characteristic slope defines the proportion. If the voltage at the controlled bus is equal to the voltage setpoint, the SVC MVar output is zero.
- RegulatingCondEq
RegulatingCondEq Reference to the superclass object.
- capacitiveRating
Capacitive reactance at maximum capacitive reactive power. Shall always be positive.
- inductiveRating
Inductive reactance at maximum inductive reactive power. Shall always be negative.
- q
Reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node. Starting value for a steady state solution.
- sVCControlMode
SVC control mode.
- slope
The characteristics slope of an SVC defines how the reactive power output changes in proportion to the difference between the regulated bus voltage and the voltage setpoint. The attribute shall be a positive value or zero.
- voltageSetPoint
The reactive power output of the SVC is proportional to the difference between the voltage at the regulated bus and the voltage setpoint. When the regulated bus voltage is equal to the voltage setpoint, the reactive power output is zero.
- StaticVarCompensatorDynamics
StaticVarCompensatorDynamics Static Var Compensator dynamics model used to describe dynamic behaviour of this Static Var Compensator.
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new
StaticVarCompensator(RegulatingCondEq: RegulatingCondEq = null, capacitiveRating: Double = 0.0, inductiveRating: Double = 0.0, q: Double = 0.0, sVCControlMode: String = null, slope: Double = 0.0, voltageSetPoint: Double = 0.0, StaticVarCompensatorDynamics: String = null)
- RegulatingCondEq
RegulatingCondEq Reference to the superclass object.
- capacitiveRating
Capacitive reactance at maximum capacitive reactive power. Shall always be positive.
- inductiveRating
Inductive reactance at maximum inductive reactive power. Shall always be negative.
- q
Reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node. Starting value for a steady state solution.
- sVCControlMode
SVC control mode.
- slope
The characteristics slope of an SVC defines how the reactive power output changes in proportion to the difference between the regulated bus voltage and the voltage setpoint. The attribute shall be a positive value or zero.
- voltageSetPoint
The reactive power output of the SVC is proportional to the difference between the voltage at the regulated bus and the voltage setpoint. When the regulated bus voltage is equal to the voltage setpoint, the reactive power output is zero.
- StaticVarCompensatorDynamics
StaticVarCompensatorDynamics Static Var Compensator dynamics model used to describe dynamic behaviour of this Static Var Compensator.
Value Members
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final
def
!=(arg0: Any): Boolean
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final
def
##(): Int
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final
def
==(arg0: Any): Boolean
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- val RegulatingCondEq: RegulatingCondEq
- val StaticVarCompensatorDynamics: String
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def
about: Boolean
Flag for rdf:about elements.
Flag for rdf:about elements.
- returns
true
if this is an rdf:about element,false
otherwise.
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def
anyNull: Boolean
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def
apply(i: Int): Any
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final
def
asInstanceOf[T0]: T0
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def
baseclass: String
This class name.
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val
bitfields: Array[Int]
Valid fields bitmap.
Valid fields bitmap.
One (1) in a bit position means that field was found in parsing, zero means it has an indeterminate value. Field order is specified by the fields array.
For classes constructed manually, we initially fill this in with the worst case scenario. ToDo: this won't work for classes with more than 128 fields (so far none).
- Definition Classes
- Element
- val capacitiveRating: Double
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def
classes: Seq[String]
This class and the hierarchical list of classes this class derives from.
This class and the hierarchical list of classes this class derives from.
- returns
the list of classes without the package prefixes.
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def
clone(): AnyRef
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def
copy(): Row
Return a copy of this object as a Row.
Return a copy of this object as a Row.
Creates a clone of this object for use in Row manipulations.
- returns
The copy of the object.
- Definition Classes
- StaticVarCompensator → Row
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def
emit_attribute(field: String, value: Any)(implicit clz: String, s: StringBuilder): Unit
Emit one XML attribute.
Emit one XML attribute.
- field
The name of the field.
- value
The value of the field.
- clz
The class name (e.g. ACLineSegment) of this element
- s
The builder to write into.
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<cim:Location.CoordinateSystem rdf:resource="#wgs84"/>
Example: -
def
emit_element(field: String, value: Any)(implicit clz: String, s: StringBuilder): Unit
Emit one XML element.
Emit one XML element.
- field
The name of the field.
- value
The value of the field.
- clz
The class name (e.g. ACLineSegment) of this element
- s
The builder to write into.
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<cim:IdentifiedObject.name>WGS 84</cim:IdentifiedObject.name>
Example: -
final
def
eq(arg0: AnyRef): Boolean
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def
equals(o: Any): Boolean
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def
export: String
Return a string containing this object as XML.
Return a string containing this object as XML.
- returns
The XML corresponding to this object.
- Definition Classes
- StaticVarCompensator → Element
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def
export_fields: String
Return a string containing the fields of this object suitable for inclusion in an XML object.
Return a string containing the fields of this object suitable for inclusion in an XML object.
- returns
A string with the fields coded in XML
- Definition Classes
- StaticVarCompensator → Element
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def
fieldIndex(name: String): Int
- Definition Classes
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-
def
get(i: Int): AnyRef
Get the value of the field at index
i
.Get the value of the field at index
i
.- i
The index of the field desired.
- returns
The value stored in the field, or
null
if none.
- Definition Classes
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def
getAs[T](fieldName: String): T
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def
getAs[T](i: Int): T
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def
getBoolean(i: Int): Boolean
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def
getByte(i: Int): Byte
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final
def
getClass(): Class[_]
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def
getDate(i: Int): Date
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def
getDecimal(i: Int): BigDecimal
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def
getDouble(i: Int): Double
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def
getFloat(i: Int): Float
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def
getInstant(i: Int): Instant
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def
getInt(i: Int): Int
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def
getJavaMap[K, V](i: Int): Map[K, V]
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def
getList[T](i: Int): List[T]
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def
getLocalDate(i: Int): LocalDate
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def
getLong(i: Int): Long
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def
getMap[K, V](i: Int): Map[K, V]
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def
getSeq[T](i: Int): Seq[T]
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def
getShort(i: Int): Short
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def
getString(i: Int): String
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def
getStruct(i: Int): Row
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def
getTimestamp(i: Int): Timestamp
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def
getValuesMap[T](fieldNames: Seq[String]): Map[String, T]
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def
hashCode(): Int
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def
id: String
Return the unique ID for the object, the mRID for IdentifiedObject derived classes.
Return the unique ID for the object, the mRID for IdentifiedObject derived classes.
- returns
The object ID.
- Definition Classes
- Element
- val inductiveRating: Double
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final
def
isInstanceOf[T0]: Boolean
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-
def
isNullAt(i: Int): Boolean
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def
json: String
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- Row
- Annotations
- @Unstable()
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def
length: Int
The number of fields in the object definition.
The number of fields in the object definition.
- returns
The number of defined fields for use in Row manipulations.
- Definition Classes
- Element → Row
-
def
mask(position: Int): Boolean
Is a field present predicate.
Is a field present predicate.
Determines if the field at the given position was encountered while parsing.
- position
the field position in the fields array
- returns
true
if the field was parsed,false
otherwise.
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def
mkString(start: String, sep: String, end: String): String
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def
mkString(sep: String): String
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def
mkString: String
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ne(arg0: AnyRef): Boolean
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def
notify(): Unit
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final
def
notifyAll(): Unit
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def
prettyJson: String
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- val q: Double
- val sVCControlMode: String
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def
schema: StructType
- Definition Classes
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def
size: Int
- Definition Classes
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- val slope: Double
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def
sup: RegulatingCondEq
Return the superclass object.
Return the superclass object.
- returns
The typed superclass nested object.
- Definition Classes
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final
def
synchronized[T0](arg0: ⇒ T0): T0
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def
toSeq: Seq[Any]
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def
toString(): String
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- val voltageSetPoint: Double
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final
def
wait(arg0: Long, arg1: Int): Unit
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final
def
wait(arg0: Long): Unit
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final
def
wait(): Unit
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finalize(): Unit
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- Deprecated
(Since version ) see corresponding Javadoc for more information.