modelSaliencyCageWinding

Rotor cage with saliency in d- and q-axis

Extends from Magnetic.QuasiStatic.FundamentalWave.Interfaces.TwoPortExtended (Partial two port for graphical programming with additional variables).

Information

The salient cage model is a two axis model with two phases. The electromagnetic coupling therefore is also two phase coupling model. The angles of the two orientations are 0 and . This way an asymmetrical rotor cage with different resistances and stray inductances in d- and q-axis can be modeled.

See also

SymmetricPolyphaseWinding, Magnetic.FundamentalWave.BasicMachines.Components.SymmetricPolyphaseCageWinding Magnetic.FundamentalWave.BasicMachines.Components.RotorSaliencyAirGap

Parameters

TypeNameDefaultDescription
BooleanuseHeatPortfalseEnable / disable (=fixed temperatures) thermal port
Magnetic.FundamentalWave.Types.SalientResistanceRRefSalient cage resistance
SI.TemperatureTRefReference temperature of winding
Modelica.Electrical.Machines.Thermal.LinearTemperatureCoefficient20alpha20Temperature coefficient of winding at 20 degC
SI.LinearTemperatureCoefficientalphaRefModelica.Electrical.Machines.Thermal.convertAlpha(alpha20, TRef, 293.15)Temperature coefficient of winding at reference temperature
SI.TemperatureTOperationalOperational temperature of winding
Magnetic.FundamentalWave.Types.SalientInductanceLsigmaSalient cage stray inductance
RealeffectiveTurns1Effective number of turns

Connectors

TypeNameDefaultDescription
FundamentalWave.Interfaces.PositiveMagneticPortport_p (from TwoPortElementary)Positive quasi-static magnetic port of fundamental wave machines
FundamentalWave.Interfaces.NegativeMagneticPortport_n (from TwoPortElementary)Negative quasi-static magnetic port of fundamental wave machines
Modelica.ComplexBlocks.Interfaces.ComplexOutput[2]ielectroMagneticConverter.iCage currents
Modelica.Blocks.Interfaces.RealOutputlossPowersum(resistor.resistor.LossPower)Damper losses
Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_aheatPortWindingHeat ports of winding resistor

Components

TypeNameDefaultDescription
SI.AngularVelocityomega (from TwoPortElementary)der(port_p.reference.gamma)Reference angular velocity (= der(port_p.reference.gamma))
SI.ComplexMagneticPotentialDifferenceV_m (from TwoPortExtended)port_p.V_m - port_n.V_mComplex magnetic potential difference
SI.MagneticPotentialDifferenceabs_V_m (from TwoPortExtended)Modelica.ComplexMath.abs(V_m)Magnitude of complex magnetic potential difference
SI.Anglearg_V_m (from TwoPortExtended)Modelica.ComplexMath.arg(V_m)Argument of complex magnetic potential difference
SI.ComplexMagneticFluxPhi (from TwoPortExtended)port_p.PhiComplex magnetic flux
SI.MagneticFluxabs_Phi (from TwoPortExtended)Modelica.ComplexMath.abs(Phi)Magnitude of complex magnetic flux
SI.Anglearg_Phi (from TwoPortExtended)Modelica.ComplexMath.arg(Phi)Argument of complex magnetic flux
Magnetic.QuasiStatic.FundamentalWave.Components.PolyphaseElectroMagneticConverterelectroMagneticConverter
Modelica.Electrical.QuasiStatic.Polyphase.Basic.Resistorresistor
Modelica.Electrical.QuasiStatic.Polyphase.Basic.Starstar
Modelica.Electrical.QuasiStatic.SinglePhase.Basic.Groundground
Modelica.Thermal.HeatTransfer.Components.ThermalCollectorthermalCollectorConnector of thermal rotor resistance heat ports
Magnetic.QuasiStatic.FundamentalWave.Components.ReluctancestrayReluctanceStray reluctance equivalent to ideally coupled stray inductances