Hash table of DynamicsFunctionBlock objects
No Additional PropertiesAll properties whose name matches the following regular expression must respect the following conditions
Property name regular expression:^.+$
Abstract parent class for all Dynamics function blocks.
Abstract parent class for all synchronous and asynchronous machine standard models.
No Additional PropertiesUsed in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.
Function block used indicator.
true = use of function block is enabled
false = use of function block is disabled.
Damping torque coefficient (<i>D</i>) (>= 0). A proportionality constant that, when multiplied by the angular velocity of the rotor poles with respect to the magnetic field (frequency), results in the damping torque. This value is often zero when the sources of damping torques (generator damper windings, load damping effects, etc.) are modelled in detail. Typical value = 0.
Inertia constant of generator or motor and mechanical load (<i>H</i>) (> 0). This is the specification for the stored energy in the rotating mass when operating at rated speed. For a generator, this includes the generator plus all other elements (turbine, exciter) on the same shaft and has units of MW x s. For a motor, it includes the motor plus its mechanical load. Conventional units are PU on the generator MVA base, usually expressed as MW x s / MVA or just s. This value is used in the accelerating power reference frame for operator training simulator solutions. Typical value = 3.
nan
nan
Time, in seconds
Saturation factor at rated terminal voltage (<i>S1</i>) (>= 0). Not used by simplified model. Defined by defined by <i>S</i>(<i>E1</i>) in the SynchronousMachineSaturationParameters diagram. Typical value = 0,02.
Saturation factor at 120% of rated terminal voltage (<i>S12</i>) (>= RotatingMachineDynamics.saturationFactor). Not used by the simplified model, defined by <i>S</i>(<i>E2</i>) in the SynchronousMachineSaturationParameters diagram. Typical value = 0,12.
Stator leakage reactance (<i>Xl</i>) (>= 0). Typical value = 0,15.
nan
nan
nan
Stator (armature) resistance (<i>Rs</i>) (>= 0). Typical value = 0,005.
nan
nan
nan
Ratio (exciter voltage/generator voltage) of <i>Efd</i> bases of exciter and generator models (> 0). Typical value = 1.
Excitation base system mode. It should be equal to the value of <i>WLMDV</i> given by the user. <i>WLMDV</i> is the PU ratio between the field voltage and the excitation current: <i>Efd</i> = <i>WLMDV</i> x <i>Ifd</i>. Typical value = ifag.
Quadrature-axis saturation factor at 120% of rated terminal voltage (<i>S12q</i>) (>= SynchonousMachineDetailed.saturationFactorQAxis). Typical value = 0,12.
Quadrature-axis saturation factor at rated terminal voltage (<i>S1q</i>) (>= 0). Typical value = 0,02.
Saturation loading correction factor (<i>Ks</i>) (>= 0). Used only by type J model. Typical value = 0.
Type of synchronous machine model used in dynamic simulation applications.
Type of rotor on physical machine.
Damping time constant for “Canay” reactance (>= 0). Typical value = 0.
nan
nan
Time, in seconds
Direct-axis transient rotor time constant (<i>T'do</i>) (> SynchronousMachineTimeConstantReactance.tppdo). Typical value = 5.
nan
nan
Time, in seconds
Direct-axis subtransient rotor time constant (<i>T''do</i>) (> 0). Typical value = 0,03.
nan
nan
Time, in seconds
Quadrature-axis subtransient rotor time constant (<i>T''qo</i>) (> 0). Typical value = 0,03.
nan
nan
Time, in seconds
Quadrature-axis transient rotor time constant (<i>T'qo</i>) (> SynchronousMachineTimeConstantReactance.tppqo). Typical value = 0,5.
nan
nan
Time, in seconds
Direct-axis subtransient reactance (unsaturated) (<i>X''d</i>) (> RotatingMachineDynamics.statorLeakageReactance). Typical value = 0,2.
nan
nan
nan
Direct-axis synchronous reactance (<i>Xd</i>) (>= SynchronousMachineTimeConstantReactance.xDirectTrans). The quotient of a sustained value of that AC component of armature voltage that is produced by the total direct-axis flux due to direct-axis armature current and the value of the AC component of this current, the machine running at rated speed. Typical value = 1,8.
nan
nan
nan
Direct-axis transient reactance (unsaturated) (<i>X'd</i>) (>= SynchronousMachineTimeConstantReactance.xDirectSubtrans). Typical value = 0,5.
nan
nan
nan
Quadrature-axis subtransient reactance (<i>X''q</i>) (> RotatingMachineDynamics.statorLeakageReactance). Typical value = 0,2.
nan
nan
nan
Quadrature-axis synchronous reactance (<i>Xq</i>) (>= SynchronousMachineTimeConstantReactance.xQuadTrans).
The ratio of the component of reactive armature voltage, due to the quadrature-axis component of armature current, to this component of current, under steady state conditions and at rated frequency. Typical value = 1,6.
nan
nan
nan
Quadrature-axis transient reactance (<i>X'q</i>) (>= SynchronousMachineTimeConstantReactance.xQuadSubtrans). Typical value = 0,3.
nan
nan
nan
Direct-axis damper 1 winding resistance.
nan
nan
nan
Quadrature-axis damper 1 winding resistance.
nan
nan
nan
Quadrature-axis damper 2 winding resistance.
nan
nan
nan
Field winding resistance.
nan
nan
nan
Direct-axis damper 1 winding leakage reactance.
nan
nan
nan
Quadrature-axis damper 1 winding leakage reactance.
nan
nan
nan
Quadrature-axis damper 2 winding leakage reactance.
nan
nan
nan
Direct-axis mutual reactance.
nan
nan
nan
Quadrature-axis mutual reactance.
nan
nan
nan
Differential mutual (“Canay”) reactance.
nan
nan
nan
Field winding leakage reactance.
nan
nan
nan
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.
Transient rotor time constant (<i>T'o</i>) (> AsynchronousMachineTimeConstantReactance.tppo). Typical value = 5.
nan
nan
Time, in seconds
Subtransient rotor time constant (<i>T''o</i>) (> 0). Typical value = 0,03.
nan
nan
Time, in seconds
Transient reactance (unsaturated) (<i>X'</i>) (>= AsynchronousMachineTimeConstantReactance.xpp). Typical value = 0,5.
nan
nan
nan
Subtransient reactance (unsaturated) (<i>X''</i>) (> RotatingMachineDynamics.statorLeakageReactance). Typical value = 0,2.
nan
nan
nan
Synchronous reactance (<i>Xs</i>) (>= AsynchronousMachineTimeConstantReactance.xp). Typical value = 1,8.
nan
nan
nan
Damper 1 winding resistance.
nan
nan
nan
Damper 2 winding resistance.
nan
nan
nan
Damper 1 winding leakage reactance.
nan
nan
nan
Damper 2 winding leakage reactance.
nan
nan
nan
Magnetizing reactance.
nan
nan
nan
Behaviour is based on a proprietary model as opposed to a detailed model.
true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributes
false = user-defined model is explicitly defined in terms of control blocks and their input and output signals.
Behaviour is based on a proprietary model as opposed to a detailed model.
true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributes
false = user-defined model is explicitly defined in terms of control blocks and their input and output signals.
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.
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.
The name is any free human readable and possibly non unique text naming the object.
Static var compensator whose behaviour is described by reference to a standard model <font color="#0f0f0f">or by definition of a user-defined model.</font>
No Additional PropertiesUsed in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.
Behaviour is based on a proprietary model as opposed to a detailed model.
true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributes
false = user-defined model is explicitly defined in terms of control blocks and their input and output signals.
Function block used indicator.
true = use of function block is enabled
false = use of function block is disabled.
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.
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.
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.
The name is any free human readable and possibly non unique text naming the object.
HVDC whose behaviour is described by reference to a standard model <font color="#0f0f0f">or by definition of a user-defined model.</font>
No Additional PropertiesUsed in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.
Behaviour is based on a proprietary model as opposed to a detailed model.
true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributes
false = user-defined model is explicitly defined in terms of control blocks and their input and output signals.
Behaviour is based on a proprietary model as opposed to a detailed model.
true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributes
false = user-defined model is explicitly defined in terms of control blocks and their input and output signals.
Function block used indicator.
true = use of function block is enabled
false = use of function block is disabled.
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.
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.
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.
The name is any free human readable and possibly non unique text naming the object.
Voltage compensator function block whose behaviour is described by reference to a standard model <font color="#0f0f0f">or by definition of a user-defined model.</font>
No Additional PropertiesThe 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.
Behaviour is based on a proprietary model as opposed to a detailed model.
true = user-defined model is proprietary with behaviour mutually understood by sending and receiving applications and parameters passed as general attributes
false = user-defined model is explicitly defined in terms of control blocks and their input and output signals.
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.
Used in RAVENS Schema to identify the corresponding CIM Object Type of the JSON object.
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.
The name is any free human readable and possibly non unique text naming the object.
Function block used indicator.
true = use of function block is enabled
false = use of function block is disabled.
<font color="#0f0f0f">Resistive component of compensation of a generator (<i>Rc</i>) (>= 0).</font>
nan
nan
nan
<font color="#0f0f0f">Time constant which is used for the combined voltage sensing and compensation signal (<i>Tr</i>) (>= 0).</font>
nan
nan
Time, in seconds
<font color="#0f0f0f">Reactive component of compensation of a generator (<i>Xc</i>) (>= 0).</font>
nan
nan
nan
<font color="#0f0f0f">Time constant which is used for the combined voltage sensing and compensation signal (<i>Tr</i>) (>= 0).</font>
nan
nan
Time, in seconds