DocumentCode
1136098
Title
Characteristic Analysis of Multilayer-Buried Magnet Synchronous Motor Using Fixed Permeability Method
Author
Kwak, Sang-Yeop ; Kim, Jae-Kwang ; Jung, Hyun-Kyo
Author_Institution
Sch. of Electr. Eng., Seoul Nat. Univ., South Korea
Volume
20
Issue
3
fYear
2005
Firstpage
549
Lastpage
555
Abstract
The direct (d)- and quadrature (q)-axis inductance characteristics of the interior permanent-magnet synchronous motor (IPMSM) are presented, with an emphasis on the cross-coupling effects. Nonlinear variation of phase inductance is investigated, according to the rotor position on entire stator current excitations. We also propose a new analytical method, called the fixed permeability method (FPM). We applied this method (FPM) to steel-cored permanent-magnet linear synchronous motors for large powered linear motional applications. Experimental data were found to corroborate the findings obtained by the FPM method. We also used FPM to analyze magnetic saturation characteristics of the prototype IPMSM, and compared the air-gap flux density and
- and
-axis inductance with the conventional finite element analysis results.
- and
-axis inductance with the conventional finite element analysis results.Keywords
air gaps; cores; finite element analysis; linear motors; permanent magnet motors; permeability; rotors; stators; synchronous motors; air gap flow density; finite element analysis; fixed permeability method; interior PM synchronous motors; large powered linear motional applications; magnetic saturation; multilayer-buried magnet synchronous motor; q-axis inductance; stator current excitations; steel-cored permanent magnet linear synchronous motor; Air gaps; Inductance; Magnetic analysis; Magnetic flux; Permeability; Prototypes; Rotors; Saturation magnetization; Stators; Synchronous motors; Cross-magnetization effect; finite-element method (FEM); inductance; interior permanent-magnet synchronous motor (IPMSM); magnetic saturation;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/TEC.2005.847973
Filename
1495526
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