DocumentCode :
1177041
Title :
On the Use of Pulse Width Modulation Method for the Elimination of Flux Density Harmonics in the Air-Gap of Surface PM Motors
Author :
Chaithongsuk, S. ; Takorabet, N. ; Meibody-Tabar, F.
Author_Institution :
INPL-GREEN, Nancy Univ., Vandoeuvre les Nancy
Volume :
45
Issue :
3
fYear :
2009
fDate :
3/1/2009 12:00:00 AM
Firstpage :
1736
Lastpage :
1739
Abstract :
This paper presents a novel design for the elimination of radial air-gap flux density harmonics of surface mounted permanent magnet (PM) motors by using the pulse width modulation (PWM) method. Instead of conventional full arc-shape magnets, the block magnets are configured to have a shape similar to PWM signals used in power electronics in order to achieve a quasi sinusoidal radial magnetic flux density in the air-gap. Then the obtained electromotive force does not contain the low order harmonics and is almost sinusoidal. The computation of the block magnet sizes is performed by solving a constrained optimization problem. All important variable parameters and constraints are carefully considered in the design process. The solutions are achieved with an optimal design method based on finite element analysis and Matlab optimization toolbox. The effect of different PWM segmented configurations on the flux density waveforms illustrates a high improvement in the quality of the back-EMF as well as the torque.
Keywords :
air gaps; electric potential; finite element analysis; magnetic flux; mathematics computing; optimisation; permanent magnet motors; power electronics; pulse width modulation; Matlab optimization toolbox; arc-shape magnets; block magnets; electromotive force; finite element analysis; flux density harmonic elimination; power electronics; pulse width modulation; quasisinusoidal radial magnetic flux density; radial air-gap; surface mounted permanent magnet motors; Cogging torque; constrained optimization; pulse width modulation (PWM); radial air-gap flux density;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2009.2012801
Filename :
4787406
Link To Document :
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