DocumentCode :
1536026
Title :
Characterization, numerical analysis, and design of switched reluctance motors
Author :
Tang, Yifan
Author_Institution :
US Electr. Motors, St. Louis, MO, USA
Volume :
33
Issue :
6
fYear :
1997
Firstpage :
1544
Lastpage :
1552
Abstract :
Material productivity, design preciseness, and time to market are becoming critical in motor manufacturing and can be improved by detailed system design analysis and simulation within manufacturing tolerance. Design by analysis and simulation of switched reluctance motor (SRM) systems and the development method of a new design software are the subjects of this paper, with a focus on the main difficulties. The modeling of geometric, electromagnetic, control, mechanical, and thermal concerns is presented. The electromagnetic approaches include lumped-parameter analysis, finite-element analysis, and boundary-element analysis. The aspects of the study include the following: magnetization curves; controller characterization; system simulation; performance prediction; control system dynamics; vibration modes and frequencies; radial magnetic forces, stresses, and vibrations; and dynamic heat distribution and transfer
Keywords :
boundary-elements methods; electric machine CAD; electromagnetic forces; finite element analysis; heat transfer; machine theory; magnetisation; reluctance motors; thermal analysis; boundary-element analysis; control aspects modeling; control system dynamics; controller characterization; design preciseness; design software; dynamic heat distribution; dynamic heat transfer; electromagnetic aspects modeling; finite-element analysis; geometric aspects modeling; lumped-parameter analysis; magnetization curves; manufacturing tolerance; material productivity; mechanical aspects modeling; performance prediction; radial magnetic forces; radial magnetic stresses; radial magnetic vibrations; switched reluctance motors design; system simulation; thermal aspects modeling; vibration frequencies; vibration modes; Analytical models; Control system synthesis; Electromagnetic analysis; Electromagnetic forces; Force control; Magnetic analysis; Numerical analysis; Reluctance motors; Stress control; Virtual manufacturing;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.649967
Filename :
649967
Link To Document :
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