Modelica.Magnetic.FundamentalWave.BaseClasses

Base classes of fundamental wave machines

Information

This package contains partial models based on interface models and physical equations.

Extends from Modelica.Icons.BasesPackage (Icon for packages containing base classes).

Package Content

Name Description
Modelica.Magnetic.FundamentalWave.BaseClasses.Machine Machine Base model of machines

Modelica.Magnetic.FundamentalWave.BaseClasses.Machine Modelica.Magnetic.FundamentalWave.BaseClasses.Machine

Base model of machines

Information

This partial model for induction machines contains elements common in all machine models.

Extends from Modelica.Electrical.Machines.Icons.FundamentalWaveMachine.

Parameters

NameDescription
mNumber of stator phases
JrRotor inertia [kg.m2]
useSupportEnable / disable (=fixed stator) support
JsStator inertia [kg.m2]
useThermalPortEnable / disable (=fixed temperatures) thermal port
pNumber of pole pairs (Integer)
fsNominalNominal frequency [Hz]
effectiveStatorTurnsEffective number of stator turns
powerBalancePower balance
thermalAmbient 
thermalPortThermal port of induction machines
internalThermalPort 
Operational temperatures
TsOperationalOperational temperature of stator resistance [K]
Nominal resistances and inductances
RsStator resistance per phase at TRef [Ohm]
TsRefReference temperature of stator resistance [K]
alpha20sTemperature coefficient of stator resistance at 20 degC [1/K]
LssigmaStator stray inductance [H]
LszeroStator zero inductance [H]
L0Salient inductance of an unchorded coil
Losses
frictionParametersFriction loss parameter record
statorCoreParametersStator core loss parameter record; all parameters refer to stator side
strayLoadParametersStray load loss parameter record

Connectors

NameDescription
flangeShaft
supportSupport at which the reaction torque is acting
plug_spPositive plug of stator
plug_snNegative plug of stator
thermalPortThermal port of induction machines
internalThermalPort 
internalSupport 
Automatically generated Thu Oct 1 16:07:50 2020.