DocumentCode :
837957
Title :
Multiobjective design optimization of air-core linear permanent-magnet synchronous motors for improved thrust and low magnet consumption
Author :
Vaez-Zadeh, Sadegh ; Isfahani, A. Hassanpour
Author_Institution :
Dept. of Electr. & Comput. Eng., Tehran Univ., Iran
Volume :
42
Issue :
3
fYear :
2006
fDate :
3/1/2006 12:00:00 AM
Firstpage :
446
Lastpage :
452
Abstract :
Although air-core linear permanent-magnet (PM) synchronous motors are widely used in precision applications because of their advantages such as fast dynamics, lack of detent force, and negligible iron loss, they basically suffer from low developed thrust, thrust ripple, and excessive use of permanent-magnet materials, all of which lead to undesirable performance and high production cost. In this paper, we analyze performance characteristics of an air-core linear PM synchronous motor by varying motor design parameters in a layer model and a d-q model of the machine. We propose a multiobjective design optimization to improve thrust, thrust ripple, and consumed magnet volume independently and simultaneously by defining a flexible objective function. A genetic algorithm is employed to search for optimal designs. The results confirm that desirable thrust mean and substantial reduction in magnet volume and thrust ripple can be achieved. We draw several design conclusions from the motor analysis and design optimization. Finally, we carry out a time-stepping finite-element analysis to evaluate the effectiveness of the machine models and the optimization method.
Keywords :
electromagnetic devices; genetic algorithms; linear motors; magnetic cores; permanent magnet motors; synchronous motors; air-core; electromagnetic devices; finite-element analysis; genetic algorithm; linear permanent-magnet synchronous motors; machine d-q model; machine layer model; machine models; magnet consumption; magnet volume; motor design optimization; multiobjective design optimization; permanent magnet materials; thrust ripple; Costs; Design optimization; Iron; Magnetic analysis; Magnetic materials; Performance analysis; Performance loss; Permanent magnet motors; Production; Synchronous motors; Electromagnetic devices; finite-element analysis; linear synchronous motor; modeling; optimization; permanent-magnet motors;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2005.863084
Filename :
1597438
Link To Document :
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