DocumentCode
1081385
Title
Effects of forced power transfer on high speed generator-load systems
Author
Arkadan, A.A. ; VanderHeiden, R.H. ; Defenbaugh, J.F.
Author_Institution
Dept. of Electr. & Comput. Eng., Marquette Univ., Milwaukee, WI, USA
Volume
11
Issue
2
fYear
1996
fDate
6/1/1996 12:00:00 AM
Firstpage
344
Lastpage
352
Abstract
A computer-aided method for investigating disturbances due to the forced paralleling of out of phase high speed salient pole AC generator systems feeding isolated loads is presented. The method is used to predict the system performance including the reverse voltage across the rotating bridge rectifier of the field exciter. This paper presents the fundamentals and the modeling approach used in the development of this method. In addition, the results of using this approach to compute the machine parameters under different load conditions including saturation effects due to magnetic material nonlinearities and space harmonics effects due to machine geometry and winding layouts are presented. The computed parameters are validated by comparison to test data. These parameters form the main data for simulating the forced paralleling of out of phase high speed salient pole AC generator systems feeding isolated loads. Further, the results of using this modeling approach in a case study to predict the system performance due to forced power transfer are summarized and are shown to be in good agreement with test data
Keywords
AC generators; AC-DC power convertors; bridge circuits; electric machine analysis computing; load flow; matrix algebra; power system analysis computing; rectifying circuits; computer simulation; disturbances; field exciter; forced power transfer; high speed generator-load systems; magnetic material nonlinearities; performance; reverse voltage; rotating bridge rectifier; salient pole AC generator; saturation effects; space harmonics; AC generators; Bridge circuits; Computational geometry; Concurrent computing; Machine windings; Magnetic materials; Power generation; Rectifiers; System performance; Voltage;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/60.507645
Filename
507645
Link To Document