DocumentCode
1181786
Title
Capacitance Requirements of a Three-Phase Induction Generator Self-Excited with a Single Capacitance and Supplying a Single Phase Load
Author
Chan, T. F. ; Lai, L. L.
Author_Institution
The Hong Kong Polytechnic University, Kowloon, Hong Kong; City University
Volume
22
Issue
2
fYear
2002
Firstpage
58
Lastpage
58
Abstract
This paper presents a practical method for computing the minimum capacitance required to initiate voltage build-up in a three-phase induction generator self-excited with a single capacitance and supplying a single-phase load. Attention is focused on the Steinmetz connection, which gives superior performance over the plain single-phasing mode of operation. From a consideration of the input impedance of the induction generator and the self-excitation conditions, two nonlinear equations are obtained. Solution of one equation using the Secant method enables the excitation frequency to be determined, and the minimum excitation capacitance can be calculated from the second equation. This solution technique is subsequently employed in an iterative procedure for computing the capacitance required to maintain the terminal voltage at a preset value when the generator is supplying load. Experimental results obtained on a 2-kW induction machine are presented to verify the theoretical analysis where possible.
Keywords
AC machines; Capacitance; Circuit simulation; Induction generators; Induction machines; Induction motors; Nonlinear equations; Power system modeling; Steady-state; Voltage; Induction generator; Secant method; Steinmetz connection; capacitance requirement;
fLanguage
English
Journal_Title
Power Engineering Review, IEEE
Publisher
ieee
ISSN
0272-1724
Type
jour
DOI
10.1109/MPER.2002.4311985
Filename
4311985
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