DocumentCode :
1536374
Title :
High-grade control of switched reluctance machines
Author :
Kjaer, Philip C. ; Gribble, Jeremy J. ; Miller, Timothy J E
Author_Institution :
Dept. of Electron. & Electr. Eng., Glasgow Univ., UK
Volume :
33
Issue :
6
fYear :
1997
Firstpage :
1585
Lastpage :
1593
Abstract :
This paper formulates the objectives associated with high-grade torque control of switched reluctance motors (SRMs). Low torque ripple is a natural outcome of high bandwidth torque control. Smooth torque operation is only uniquely defined together with a secondary objective, such as maximum efficiency, maximum torque-speed capability, maximum power factor, etc., as the SRM does not enjoy the inherent distribution between phases that characterizes AC drives. By introduction of the flux-angle parameter, operation at any point between maximum torque-current ratio and maximum torque-flux ratio is possible. A systematic approach to waveform design is developed and is evaluated using both simulation and experimental testing of a SRM servo-drive system. This approach, which can be regarded as a functional equivalent of AC vector control, starts from machine parameters and gives smooth torque operation with maximized torque-speed range and/or efficiency. Excellent dynamic performance is obtained for speed and position control, together with optimized low torque ripple operation
Keywords :
angular velocity control; machine control; magnetic flux; position control; reluctance motor drives; servomotors; torque control; AC vector control; SRM servo-drive system; dynamic performance; flux-angle parameter; high bandwidth torque control; high-grade torque control; low torque ripple; maximum torque-current ratio; maximum torque-flux ratio; optimized low torque ripple operation; position control; smooth torque operation; speed control; switched reluctance motors; Bandwidth; Brushless DC motors; Commutation; Industry Applications Society; Inverters; Machine vector control; Production; Reluctance machines; Reluctance motors; Torque control;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.649972
Filename :
649972
Link To Document :
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