modelVoltageRegulatorExcitationStabilization

Simple Voltage Controller with PT1-dynamics of excitation and stabilization by feedback

Extends from TransiEnt.Components.Electrical.Machines.ExcitationSystemsVoltageController.PartialExcitationSystem.

Information

1. Purpose of model

Voltage Control

2. Level of detail, physical effects considered, and physical insight

L2E only transfer functions with PT1-elements

3. Limits of validity

No PSS

4. Interfaces

epp (ComplexPowerPort) for Voltage measurement and real output

5. Nomenclature

(no elements)

6. Governing Equations

(no equations)

7. Remarks for Usage

simple voltage controller for many applications

8. Validation

(no validation or testing necessary)

9. References

[1] E. Handschin, “Elektrische Energieübertragungssysteme”, Dr. Alfred Hüthig Verlag Heidelberg, 2nd edition , 1987, p. 255

10. Version History

Created by Jan-Peter Heckel (jan.heckel@tuhh.de), Apr 2018

Parameters

TypeNameDefaultDescription
SI.Voltagev_nsimCenter.v_nNominal Voltage
RealTA0.1Time constant of Controller
RealKA70Gain of Controller
RealTE1Time constant of Exciter
RealKE0.5Gain of Exciter
RealTr2Time constant of machine
RealKr1Gain of machine
RealTST1Time constantb of stabilization loop
RealKST0.5Gain of stabilization loop

Connectors

TypeNameDefaultDescription
Modelica.Blocks.Interfaces.RealOutputy (from PartialExcitationSystem)Output for electric potential
Basics.Interfaces.Electrical.ActivePowerPortepp1 (from PartialExcitationSystem)

Components

TypeNameDefaultDescription
TransiEnt.SimCentersimCenter (from PartialExcitationSystem)
Modelica.Blocks.Continuous.FirstOrderfirstOrder
Modelica.Blocks.Continuous.FirstOrderfirstOrder1
Modelica.Blocks.Continuous.FirstOrderfirstOrder2
Modelica.Blocks.Math.Feedbackfeedback
Modelica.Blocks.Sources.RealExpressionrealExpression1
Modelica.Blocks.Continuous.Derivativederivative
Modelica.Blocks.Math.Feedbackfeedback1
Sensors.ElectricVoltageComplexelectricVoltageComplex