DocumentCode
1270741
Title
A vehicle electric power generation system with improved output power and efficiency
Author
Liang, Feng ; Miller, John M. ; Xu, Xingyi
Author_Institution
Sci. Res. Lab., Ford Motor Co., Dearborn, MI, USA
Volume
35
Issue
6
fYear
1999
Firstpage
1341
Lastpage
1346
Abstract
This paper presents a vehicle electric power generation system with improved output and efficiency. At low speed, the output power of the system is maximized by using a controllable rectifier to optimize the operating conditions of the alternator. The controllable rectifier is synchronized with the alternator based on the zero-crossing information of the third harmonic voltage. The output power is controlled by shifting the phase voltage with respect to the third harmonic voltage. At high speed, the system output power and efficiency are increased by changing the number of turns of the alternator stator windings. Winding reconfiguration is realized by winding taps and use of two rectifiers and two switches. A proof-of-concept system has been built and tested in the laboratory. The test data show that the new system can increase the output power significantly at both low and high speed. In the present range in which the alternator is operated most of the time, the winding reconfiguration increases both the output power and efficiency. For the same output power as a production alternator, the winding reconfiguration unit improves the efficiency by 21% (from 47% up to 57%)
Keywords
AC-DC power convertors; alternators; automotive electronics; machine testing; machine theory; rectifying circuits; stators; 57 percent; alternator; alternator stator winding turns; controllable rectifier; efficiency improvement; output power improvement; synchronisation; third harmonic voltage; vehicle electric power generation; winding reconfiguration; zero-crossing information; Alternators; Control systems; Electric vehicles; Power generation; Power system harmonics; Rectifiers; Stator windings; Switches; System testing; Voltage control;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/28.806048
Filename
806048
Link To Document