DocumentCode :
69688
Title :
Comparative Study on Novel Dual Stator Radial Flux and Axial Flux Permanent Magnet Motors With Ferrite Magnets for Traction Application
Author :
Wenliang Zhao ; Lipo, Thomas A. ; Byung-il Kwon
Author_Institution :
Dept. of Electron. Syst. Eng., Hanyang Univ., Ansan, South Korea
Volume :
50
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
1
Lastpage :
4
Abstract :
This paper proposes two novel traction motors with ferrite magnets for hybrid electric vehicles (HEVs), which have competitive torque density and efficiency as well as operating range with respect to a referenced rare earth magnet motor employed in the third-generation Toyota Prius, a commercialized HEV. The two proposed traction motors, named as dual stator radial flux permanent magnet motor (DSRFPMM) and dual stator axial flux permanent magnet motor (DSAFPMM), adopt the same design concept, which incorporates the unaligned arrangement of two stators together with the use of spoke-type magnet array and phase-group concentrated-coil windings for the purpose of increasing torque density and reducing torque ripple. A finite element method is utilized for predicting the main characteristics, such as back electromotive force, cogging torque, electromagnetic torque, iron loss, and efficiency in both of the proposed motors. Moreover, a comparative study between the proposed DSRFPMM and DSAFPMM is performed under the same operating condition. As a result, it is demonstrated that both of the proposed ferrite permanent magnet motors could be good alternatives for traction application, replacing the rare earth magnet motors.
Keywords :
electric potential; finite element analysis; hybrid electric vehicles; machine windings; permanent magnet motors; stators; traction; DSAFPMM; DSRFPMM; back electromotive force; cogging torque; commercialized HEV; dual stator axial flux permanent magnet motor; dual stator radial flux permanent magnet motor; electromagnetic torque; ferrite permanent magnet motors; finite element method; hybrid electric vehicles; iron loss; phase-group concentrated-coil windings; rare earth magnet motor; spoke-type magnet array; third-generation Toyota Prius; torque density; torque ripple; traction application; traction motors; Ferrites; Permanent magnet motors; Reluctance motors; Stator windings; Torque; Traction motors; Axial flux permanent magnet motor (AFPMM); dual stator; ferrite permanent magnet motors; finite element method (FEM); hybrid electric vehicles (HEVs); radial flux permanent magnet motor (RFPMM); torque density; traction motors;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2329506
Filename :
6971469
Link To Document :
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