modelAVRTypeII_discrete

Discretized PSAT Exciter Type 2
Diagram of AVRTypeII_discrete

Information

This AVR model is supposed to represent the Type 2 from PSAT. However, differently from the model that is found in the main body of the library, this AVR has a discrete implementation.

Parameters

TypeNameDefaultDescription
Realvrmin0Minimum regulator voltage, p.u
Realvrmax7.57Maximum regulator voltage, p.u
RealKa7.04Amplifier gain, p.u/p.u
RealTa0.4Amplifier time constant, s
RealKf1Stabilizer gain, p.u/p.u
RealTf0.05Stabilizer time constant, s
RealKe1Field circuit integral deviation, p.u/p.u
RealTe0.4Field circui time constant, s
RealTr0.05Measurement time constant, s
RealAe01st ceiling coefficient
RealBe02nd ceiling coefficient
Realv01Initialization
Realvref01.9832Initialization
Realvf01.0442Initialization
Realvm0v0Initialization
Realvr10Ka*(vref0 - vm0 - vr20 - vf0*Kf/Tf)Initialization
Realvr20-vf0*Kf/TfInitialization
RealeModelica.Constants.e

Connectors

TypeNameDefaultDescription
Modelica.Blocks.Interfaces.RealInputvrefConnector of clocked, Real input signal
Modelica.Blocks.Interfaces.RealInputvConnector of clocked, Real input signal
Modelica.Blocks.Interfaces.RealOutputvf

Components

TypeNameDefaultDescription
RealSe
Realvm
Realvr1
Realvr2
Realvr