DocumentCode :
69218
Title :
Design and Magnetic Noise Reduction of the Surface Permanent Magnet Synchronous Machine Using Complex Air-Gap Permeance
Author :
Fakam, Mathias ; Hecquet, Michel ; Lanfranchi, Vincent ; Randria, Andry
Author_Institution :
Lille Lab. of Electr. Eng. & Power Electron., Ecole Centrale de Lille, Villeneuve d´Ascq, France
Volume :
51
Issue :
4
fYear :
2015
fDate :
Apr-15
Firstpage :
1
Lastpage :
9
Abstract :
Nowadays, developing electric motorization for land vehicles is essential owing to the crucial need to save energy. This paper presents the development of a tool used in optimal acoustic and electromechanical modeling whose highly accurate calculations and speed of resolution make it stand out from standard analytical and finite element (FE) models. By coupling an analytical model with static FE simulations, our hybrid model calculates a complex global air-gap permeance per area unit, to take into account magnetic wedge permeability, preslot height, and rotor shape. An unparalleled level of precision and speed of resolution is obtained for the computation of air-gap magnetic pressures. Several results of comparisons between acoustic measurements and simulations on a concentrated winding motor for different speeds are presented.
Keywords :
finite element analysis; magnetic noise; magnetic permeability; permanent magnet machines; permanent magnets; rotors; synchronous machines; air-gap magnetic pressure computation; analytical model; calculations; complex global air-gap permeance; concentrated winding motor; electric motorization; electromechanical modeling; land vehicles; magnetic noise reduction; magnetic wedge permeability; optimal acoustic modeling; preslot height; resolution speed; rotor shape; static finite element simulations; surface permanent magnet synchronous machine; unparalleled precision level; Air gaps; Atmospheric modeling; Computational modeling; Harmonic analysis; Numerical models; Rotors; Stators; Air-gap permeance; Maxwell pressures; distributed and concentrated windings; magnetic noise; permanent magnets (PMs); pulse-width modulation (PWM); vibrations;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2360315
Filename :
7109971
Link To Document :
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