final case class ExternalNetworkInjection(RegulatingCondEq: RegulatingCondEq = null, governorSCD: Double = 0.0, ikSecond: Boolean = false, maxInitialSymShCCurrent: Double = 0.0, maxP: Double = 0.0, maxQ: Double = 0.0, maxR0ToX0Ratio: Double = 0.0, maxR1ToX1Ratio: Double = 0.0, maxZ0ToZ1Ratio: Double = 0.0, minInitialSymShCCurrent: Double = 0.0, minP: Double = 0.0, minQ: Double = 0.0, minR0ToX0Ratio: Double = 0.0, minR1ToX1Ratio: Double = 0.0, minZ0ToZ1Ratio: Double = 0.0, p: Double = 0.0, q: Double = 0.0, referencePriority: Int = 0, voltageFactor: Double = 0.0) extends Element with Product with Serializable
This class represents the external network and it is used for IEC 60909 calculations.
- RegulatingCondEq
RegulatingCondEq Reference to the superclass object.
- governorSCD
Power Frequency Bias. This is the change in power injection divided by the change in frequency and negated. A positive value of the power frequency bias provides additional power injection upon a drop in frequency.
- ikSecond
Indicates whether initial symmetrical short-circuit current and power have been calculated according to IEC (Ik"). Used only if short circuit calculations are done according to superposition method.
- maxInitialSymShCCurrent
Maximum initial symmetrical short-circuit currents (Ik" max) in A (Ik" = Sk"/(SQRT(3) Un)). Used for short circuit data exchange according to IEC 60909.
- maxP
Maximum active power of the injection.
- maxQ
Maximum reactive power limit. It is used for modelling of infeed for load flow exchange and not for short circuit modelling.
- maxR0ToX0Ratio
Maximum ratio of zero sequence resistance of Network Feeder to its zero sequence reactance (R(0)/X(0) max). Used for short circuit data exchange according to IEC 60909.
- maxR1ToX1Ratio
Maximum ratio of positive sequence resistance of Network Feeder to its positive sequence reactance (R(1)/X(1) max). Used for short circuit data exchange according to IEC 60909.
- maxZ0ToZ1Ratio
Maximum ratio of zero sequence impedance to its positive sequence impedance (Z(0)/Z(1) max). Used for short circuit data exchange according to IEC 60909.
- minInitialSymShCCurrent
Minimum initial symmetrical short-circuit currents (Ik" min) in A (Ik" = Sk"/(SQRT(3) Un)). Used for short circuit data exchange according to IEC 60909.
- minP
Minimum active power of the injection.
- minQ
Minimum reactive power limit. It is used for modelling of infeed for load flow exchange and not for short circuit modelling.
- minR0ToX0Ratio
Indicates whether initial symmetrical short-circuit current and power have been calculated according to IEC (Ik"). Used for short circuit data exchange according to IEC 6090.
- minR1ToX1Ratio
Minimum ratio of positive sequence resistance of Network Feeder to its positive sequence reactance (R(1)/X(1) min). Used for short circuit data exchange according to IEC 60909.
- minZ0ToZ1Ratio
Minimum ratio of zero sequence impedance to its positive sequence impedance (Z(0)/Z(1) min). Used for short circuit data exchange according to IEC 60909.
- p
Active power injection. Load sign convention is used, i.e. positive sign means flow out from a node. Starting value for steady state solutions.
- q
Reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node. Starting value for steady state solutions.
- referencePriority
Priority of unit for use as powerflow voltage phase angle reference bus selection. 0 = don t care (default) 1 = highest priority. 2 is less than 1 and so on.
- voltageFactor
Voltage factor in pu, which was used to calculate short-circuit current Ik" and power Sk". Used only if short circuit calculations are done according to superposition method.
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ExternalNetworkInjection(RegulatingCondEq: RegulatingCondEq = null, governorSCD: Double = 0.0, ikSecond: Boolean = false, maxInitialSymShCCurrent: Double = 0.0, maxP: Double = 0.0, maxQ: Double = 0.0, maxR0ToX0Ratio: Double = 0.0, maxR1ToX1Ratio: Double = 0.0, maxZ0ToZ1Ratio: Double = 0.0, minInitialSymShCCurrent: Double = 0.0, minP: Double = 0.0, minQ: Double = 0.0, minR0ToX0Ratio: Double = 0.0, minR1ToX1Ratio: Double = 0.0, minZ0ToZ1Ratio: Double = 0.0, p: Double = 0.0, q: Double = 0.0, referencePriority: Int = 0, voltageFactor: Double = 0.0)
- RegulatingCondEq
RegulatingCondEq Reference to the superclass object.
- governorSCD
Power Frequency Bias. This is the change in power injection divided by the change in frequency and negated. A positive value of the power frequency bias provides additional power injection upon a drop in frequency.
- ikSecond
Indicates whether initial symmetrical short-circuit current and power have been calculated according to IEC (Ik"). Used only if short circuit calculations are done according to superposition method.
- maxInitialSymShCCurrent
Maximum initial symmetrical short-circuit currents (Ik" max) in A (Ik" = Sk"/(SQRT(3) Un)). Used for short circuit data exchange according to IEC 60909.
- maxP
Maximum active power of the injection.
- maxQ
Maximum reactive power limit. It is used for modelling of infeed for load flow exchange and not for short circuit modelling.
- maxR0ToX0Ratio
Maximum ratio of zero sequence resistance of Network Feeder to its zero sequence reactance (R(0)/X(0) max). Used for short circuit data exchange according to IEC 60909.
- maxR1ToX1Ratio
Maximum ratio of positive sequence resistance of Network Feeder to its positive sequence reactance (R(1)/X(1) max). Used for short circuit data exchange according to IEC 60909.
- maxZ0ToZ1Ratio
Maximum ratio of zero sequence impedance to its positive sequence impedance (Z(0)/Z(1) max). Used for short circuit data exchange according to IEC 60909.
- minInitialSymShCCurrent
Minimum initial symmetrical short-circuit currents (Ik" min) in A (Ik" = Sk"/(SQRT(3) Un)). Used for short circuit data exchange according to IEC 60909.
- minP
Minimum active power of the injection.
- minQ
Minimum reactive power limit. It is used for modelling of infeed for load flow exchange and not for short circuit modelling.
- minR0ToX0Ratio
Indicates whether initial symmetrical short-circuit current and power have been calculated according to IEC (Ik"). Used for short circuit data exchange according to IEC 6090.
- minR1ToX1Ratio
Minimum ratio of positive sequence resistance of Network Feeder to its positive sequence reactance (R(1)/X(1) min). Used for short circuit data exchange according to IEC 60909.
- minZ0ToZ1Ratio
Minimum ratio of zero sequence impedance to its positive sequence impedance (Z(0)/Z(1) min). Used for short circuit data exchange according to IEC 60909.
- p
Active power injection. Load sign convention is used, i.e. positive sign means flow out from a node. Starting value for steady state solutions.
- q
Reactive power injection. Load sign convention is used, i.e. positive sign means flow out from a node. Starting value for steady state solutions.
- referencePriority
Priority of unit for use as powerflow voltage phase angle reference bus selection. 0 = don t care (default) 1 = highest priority. 2 is less than 1 and so on.
- voltageFactor
Voltage factor in pu, which was used to calculate short-circuit current Ik" and power Sk". Used only if short circuit calculations are done according to superposition method.
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- val governorSCD: Double
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- val ikSecond: Boolean
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- val maxInitialSymShCCurrent: Double
- val maxP: Double
- val maxQ: Double
- val maxR0ToX0Ratio: Double
- val maxR1ToX1Ratio: Double
- val maxZ0ToZ1Ratio: Double
- val minInitialSymShCCurrent: Double
- val minP: Double
- val minQ: Double
- val minR0ToX0Ratio: Double
- val minR1ToX1Ratio: Double
- val minZ0ToZ1Ratio: Double
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