DocumentCode
69120
Title
Optimal Design of a Novel V-Type Interior Permanent Magnet Motor with Assisted Barriers for the Improvement of Torque Characteristics
Author
Wenliang Zhao ; Fei 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 performs a study on the optimal design of V-type interior permanent magnet motors (VIPMMs), in which the rotor is equipped with assisted barriers for the improvement of average torque and torque ripple. The approach differs from the conventional interior permanent magnet motors, in which the reluctance torque due to saliency reaches a maximum value at a current phase angle located 45 electrical degrees with respect to the maximum value obtained from the magnetic torque produced by the rotor magnets. The adoption of assisted barriers is employed to improve the torque production by creating rotor asymmetry to allow the reluctance torque and the magnetic torque reach a maximum value near or at the same current phase angle. To evaluate the contribution, the frozen permeability method is utilized to segregate the torque into its reluctance and magnetic torque components. First, an iterative optimization is performed on a concept design of a 6/4 VIPMM for demonstrating the design principle based on finite element method. Then, the VIPMM is further optimized by algorithms, such as the kriging method and genetic algorithm for improving the torque characteristics and efficiency. As a result, the optimal VIPMM with assisted barriers shows the substantially improved performance compared with a conventional design.
Keywords
design engineering; finite element analysis; genetic algorithms; iterative methods; magnetic permeability; permanent magnet motors; rotors; synchronous motors; torque; VIPMM; assisted barriers; average torque improvement; current phase angle; finite element method; frozen permeability method; genetic algorithm; iterative optimization; kriging method; magnetic torque; optimal design; reluctance torque; rotor asymmetry; rotor magnets; torque characteristics improvement; torque production improvement; torque ripple improvement; v-type interior permanent magnet motors; Magnetic separation; Magnetomechanical effects; Permanent magnet motors; Reluctance motors; Rotors; Torque; Finite-element method (FEM); V-type interior permanent magnet motors (VIPMMs); frozen permeability method (FPM); genetic algorithm (GA); magnetic torque; optimal design; torque; torque ripple;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2014.2330339
Filename
6971423
Link To Document