Title :
Frequency-domain digital simulation of synchronous generators operating under faulted conditions
Author :
El-Kateb, M.M.T. ; Johns, A.T.
Author_Institution :
GEC Measurements Ltd., St. Leonards Works, Stafford, UK
fDate :
3/1/1977 12:00:00 AM
Abstract :
The paper details a method by which the equations describing a 3-phase synchronous machine may be transformed into the frequency domain to provide a means of digitally simulating faults at the generator terminals. Evaluation of the Fourier integrals involved in determining the machine response is achieved by means of the fast-Fourier-transform algorithm, and numerical results are presented together with the criteria necessary to achieve an accuracy comparable with that attainable using direct-phase quantities. The methods provide a basis for combining synchronous sources with transmission lines having frequency-variant parameters, and which are not therefore amenable to simulation using other than frequency-domain techniques. Studies using the new method indicate that, when predetermining the armature currents of a faulted machine, considerable economies in computing time may be effected, and the possibility of improving the simulation to simulate more accurately rotor eddycurrent effects by utilising the direct- and quadrature-axis frequency response emerges.
Keywords :
digital simulation; electric machine analysis computing; fast Fourier transforms; frequency-domain analysis; synchronous generators; transient response; Fourier integrals; armature currents; digital simulation; economies in computing time; fast Fourier transform algorithm; frequency domain analysis; rotor eddy current effects; synchronous generators operating under faulted conditions;
Journal_Title :
Electrical Engineers, Proceedings of the Institution of
DOI :
10.1049/piee.1977.0041