Modelica.Magnetic.FundamentalWave.Types

Definition of salient types

Information


This package provides types for modeling anisotropic saliency effects in electric machines. These saliencies are usually considered by a d- (direct) and q-axis (quadrature) components in the respective axis (of the rotor).

Extends from Modelica.Icons.Package (Icon for standard packages).

Package Content

NameDescription
Modelica.Magnetic.FundamentalWave.Types.Salient Salient Base record of saliency with d and q component
Modelica.Magnetic.FundamentalWave.Types.SalientCurrent SalientCurrent Salient current
Modelica.Magnetic.FundamentalWave.Types.SalientVoltage SalientVoltage Salient voltage
Modelica.Magnetic.FundamentalWave.Types.SalientInductance SalientInductance Salient inductance
Modelica.Magnetic.FundamentalWave.Types.SalientReluctance SalientReluctance Salient reluctance
Modelica.Magnetic.FundamentalWave.Types.SalientResistance SalientResistance Salient resistance


Modelica.Magnetic.FundamentalWave.Types.Salient

Base record of saliency with d and q component

Information


Definition of saliency with respect to the orthogonal d- and q-axis. Saliency, however, refers to different properties in d- and q-axis and thus considers the anisotropic behavior.

See also

SalientCurrent, SalientVoltage, SalientInductance, SalientReluctance, SalientResistance

Modelica definition

record Salient "Base record of saliency with d and q component"
  Real d "Component of d (direct) axis, aligned to real part";
  Real q "Component of q (quadrature) axis, aligned to imaginary part";
end Salient;

Modelica.Magnetic.FundamentalWave.Types.SalientCurrent

Salient current

Information


Type representing the d- and q-axis of a current phasor.

See also

Salient, SalientVoltage, SalientInductance, SalientReluctance, SalientResistance

Extends from Salient (Base record of saliency with d and q component).

Modelica definition

record SalientCurrent = Salient (
  redeclare Modelica.SIunits.Current d,
  redeclare Modelica.SIunits.Current q) "Salient current";

Modelica.Magnetic.FundamentalWave.Types.SalientVoltage

Salient voltage

Information


Type representing the d- and q-axis of a voltage phasor.

See also

Salient, SalientCurrent, SalientInductance, SalientReluctance, SalientResistance

Extends from Salient (Base record of saliency with d and q component).

Modelica definition

record SalientVoltage = Salient (
  redeclare Modelica.SIunits.Voltage d,
  redeclare Modelica.SIunits.Voltage q) "Salient voltage";

Modelica.Magnetic.FundamentalWave.Types.SalientInductance

Salient inductance

Information


Type representing the d- and q-axis of an inductance with respect to the fundamental wave.

See also

Salient, SalientCurrent, SalientVoltage, SalientReluctance, SalientResistance

Extends from Salient (Base record of saliency with d and q component).

Modelica definition

record SalientInductance = Salient (
  redeclare Modelica.SIunits.Inductance d,
  redeclare Modelica.SIunits.Inductance q) "Salient inductance";

Modelica.Magnetic.FundamentalWave.Types.SalientReluctance

Salient reluctance

Information


Type representing the d- and q-axis of an reluctance with respect to the fundamental wave.

See also

Salient, SalientCurrent, SalientVoltage, SalientInductance, SalientResistance

Extends from Salient (Base record of saliency with d and q component).

Modelica definition

record SalientReluctance = Salient (
  redeclare Modelica.SIunits.Reluctance d,
  redeclare Modelica.SIunits.Reluctance q) "Salient reluctance";

Modelica.Magnetic.FundamentalWave.Types.SalientResistance

Salient resistance

Information


Type representing the d- and q-axis of an resistance with respect to the fundamental wave.

See also

Salient, SalientCurrent, SalientVoltage, SalientInductance, SalientReluctance

Extends from Salient (Base record of saliency with d and q component).

Modelica definition

record SalientResistance = Salient (
  redeclare Modelica.SIunits.Resistance d,
  redeclare Modelica.SIunits.Resistance q) "Salient resistance";

Automatically generated Fri Nov 12 16:30:03 2010.