DocumentCode :
72991
Title :
Design, Analysis, and Prototyping of an Axial-Flux Permanent Magnet Motor Based on Genetic Algorithm and Finite-Element Analysis
Author :
Mahmoudi, Ali ; Kahourzade, Solmaz ; Rahim, N.A. ; Hew, Wooi Ping
Author_Institution :
UM Power Energy Dedicated Adv. Centre (UMPEDAC), Univ. of Malaya, Kuala Lumpur, Malaysia
Volume :
49
Issue :
4
fYear :
2013
fDate :
Apr-13
Firstpage :
1479
Lastpage :
1492
Abstract :
This paper presents an axial-flux permanent magnet motor optimized by the genetic algorithm (GA)-based sizing equation and the finite-element analysis (FEA). The designed slotted TORUS motor produces sinusoidal back-EMF waveform, maximum power density, and reduced cogging torque. The GA obtained the dimensions of motors with different numbers of slots and the highest possible power density. Electromagnetic field analysis of the candidate motors obtained from GA with various dimensions is subjected through FEA to obtain the motors´ characteristics. Based on the GA and FEA results, a candidate motor design is introduced and subjected to FEA for reoptimization and finalization of the motor design. Techniques like modifying winding configuration and permanent magnet skewing are investigated to attain the most sinusoidal back-EMF waveform and reduced cogging torque. FEA and GA simulation results are compared and agreed well to the flux density in various areas of the designed motor at no-load condition. The final designed motor (1 kW, 50 Hz, four poles) is fabricated and tested. Experimental results agree with those of the simulation, both satisfying the desired technical specifications.
Keywords :
electric potential; electromagnetic fields; finite element analysis; genetic algorithms; machine windings; permanent magnet motors; FEA simulation; GA simulation; axial-flux permanent magnet motor; cogging torque reduction; electromagnetic field analysis; finite-element analysis; flux density; frequency 50 Hz; genetic algorithm; maximum power density; permanent magnet skewing; power 1 kW; reoptimization; sinusoidal back-EMF waveform; sizing equation; slotted TORUS motor; winding configuration; Air gaps; Genetic algorithms; Mathematical model; Optimization; Permanent magnet motors; Stators; Windings; Axial-flux permanent magnet motor; TORUS; finite-element analysis (FEA); genetic algorithm (GA); sizing equation;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2012.2228213
Filename :
6357308
Link To Document :
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