Packages

final case class SynchronousMachineDynamics(RotatingMachineDynamics: RotatingMachineDynamics = null, CrossCompoundTurbineGovernorDyanmics: String = null, CrossCompoundTurbineGovernorDynamics: String = null, ExcitationSystemDynamics: String = null, GenICompensationForGenJ: List[String] = null, MechanicalLoadDynamics: String = null, SynchronousMachine: String = null, TurbineGovernorDynamics: List[String] = null) extends Element with Product with Serializable

Synchronous machine whose behaviour is described by reference to a standard model expressed in one of the following forms: - simplified (or classical), where a group of generators or motors is not modelled in detail; - detailed, in equivalent circuit form; - detailed, in time constant reactance form; or <font color="#0f0f0f">- by definition of a user-defined model.</font> <font color="#0f0f0f">It is a common practice to represent small generators by a negative load rather than by a dynamic generator model when performing dynamics simulations.

In this case, a SynchronousMachine in the static model is not represented by anything in the dynamics model, instead it is treated as an ordinary load.</font> <font color="#0f0f0f">Parameter details:</font>

  • <font color="#0f0f0f">Synchronous machine parameters such as Xl, Xd, Xp etc. are actually used as inductances in the models,</font> but are commonly referred to as reactances since, at nominal frequency, the PU values are the same. However, some references use the symbol L instead of X.
RotatingMachineDynamics

RotatingMachineDynamics Reference to the superclass object.

CrossCompoundTurbineGovernorDyanmics

CrossCompoundTurbineGovernorDynamics The cross-compound turbine governor with which this high-pressure synchronous machine is associated.

CrossCompoundTurbineGovernorDynamics

CrossCompoundTurbineGovernorDynamics The cross-compound turbine governor with which this low-pressure synchronous machine is associated.

ExcitationSystemDynamics

ExcitationSystemDynamics Excitation system model associated with this synchronous machine model.

GenICompensationForGenJ

GenICompensationForGenJ Compensation of voltage compensator's generator for current flow out of this generator.

MechanicalLoadDynamics

MechanicalLoadDynamics Mechanical load model associated with this synchronous machine model.

SynchronousMachine

SynchronousMachine Synchronous machine to which synchronous machine dynamics model applies.

TurbineGovernorDynamics

TurbineGovernorDynamics Turbine-governor model associated with this synchronous machine model. Multiplicity of greater than one is intended to support hydro units that have multiple turbines on one generator.

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Instance Constructors

  1. new SynchronousMachineDynamics(RotatingMachineDynamics: RotatingMachineDynamics = null, CrossCompoundTurbineGovernorDyanmics: String = null, CrossCompoundTurbineGovernorDynamics: String = null, ExcitationSystemDynamics: String = null, GenICompensationForGenJ: List[String] = null, MechanicalLoadDynamics: String = null, SynchronousMachine: String = null, TurbineGovernorDynamics: List[String] = null)

    RotatingMachineDynamics

    RotatingMachineDynamics Reference to the superclass object.

    CrossCompoundTurbineGovernorDyanmics

    CrossCompoundTurbineGovernorDynamics The cross-compound turbine governor with which this high-pressure synchronous machine is associated.

    CrossCompoundTurbineGovernorDynamics

    CrossCompoundTurbineGovernorDynamics The cross-compound turbine governor with which this low-pressure synchronous machine is associated.

    ExcitationSystemDynamics

    ExcitationSystemDynamics Excitation system model associated with this synchronous machine model.

    GenICompensationForGenJ

    GenICompensationForGenJ Compensation of voltage compensator's generator for current flow out of this generator.

    MechanicalLoadDynamics

    MechanicalLoadDynamics Mechanical load model associated with this synchronous machine model.

    SynchronousMachine

    SynchronousMachine Synchronous machine to which synchronous machine dynamics model applies.

    TurbineGovernorDynamics

    TurbineGovernorDynamics Turbine-governor model associated with this synchronous machine model. Multiplicity of greater than one is intended to support hydro units that have multiple turbines on one generator.

Value Members

  1. final def !=(arg0: Any): Boolean
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  2. final def ##(): Int
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  3. final def ==(arg0: Any): Boolean
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  4. val CrossCompoundTurbineGovernorDyanmics: String
  5. val CrossCompoundTurbineGovernorDynamics: String
  6. val ExcitationSystemDynamics: String
  7. val GenICompensationForGenJ: List[String]
  8. val MechanicalLoadDynamics: String
  9. val RotatingMachineDynamics: RotatingMachineDynamics
  10. val SynchronousMachine: String
  11. val TurbineGovernorDynamics: List[String]
  12. def about: Boolean

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  19. def clone(): AnyRef
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  20. def copy(): Row

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    Definition Classes
    SynchronousMachineDynamics → Row
  21. def emit_attribute(field: String, value: Any)(implicit clz: String, s: StringBuilder): Unit

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  23. final def eq(arg0: AnyRef): Boolean
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  25. def export: String

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    returns

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    Definition Classes
    SynchronousMachineDynamicsElement
  26. def export_fields: String

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    returns

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    SynchronousMachineDynamicsElement
  27. def fieldIndex(name: String): Int
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  28. def get(i: Int): AnyRef

    Get the value of the field at index i.

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  53. final def isInstanceOf[T0]: Boolean
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  55. def json: String
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  56. def length: Int

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  57. def mask(position: Int): Boolean

    Is a field present predicate.

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  65. def schema: StructType
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  66. def size: Int
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  67. def sup: RotatingMachineDynamics

    Return the superclass object.

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    returns

    The typed superclass nested object.

    Definition Classes
    SynchronousMachineDynamicsElement
  68. final def synchronized[T0](arg0: ⇒ T0): T0
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  69. def toSeq: Seq[Any]
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  70. def toString(): String
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