Adaptive Finite Element Method for Shape Modification in Optimization of Electric Machines
Author:
Affiliation:
1. Dept. of Electrical, Electronics and Computer Engineering, Chiba Institute of Technology
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology
Link
https://www.jstage.jst.go.jp/article/ieejpes/127/8/127_8_882/_pdf
Reference5 articles.
1. (2) Z. J. Cendes and D. N. Shenton: “Adaptive mesh refinement in the finite element computation of magnetic field”, IEEE, Trans. Magnetics, Vol. 21, No. 5, pp. 1811-1816 (1985)
2. (3) O. C Zienkiewicz and J. Z. Zhu: “A simple error estimator and adaptive procedure for practical engineering analysis”, Int. J. Numerical Method in Engineerings, Vol. 24, pp. 337-357 (1987)
3. (4) K. Yamazaki, S. Watari, T. Saeki, and Y. Sugiura: “Adaptive finite element meshing at each iterative calculation for electromagnetic field analysis of rotating machines”, IEEJ Trans. IA, Vol. 125, No. 3, pp. 259-269 (2005-3) (in Japanese)
4. (6) K. Yamazaki and A. Abe: “Loss analysis of IPM motors considering carrier harmonics—Calculation of eddy current loss in permanent magnet using 3-D finite element method”, IEEJ Trans. IA, Vol. 127, No. 1, pp. 87-94 (2007-1) (in Japanese)
5. (7) K. Yamazaki, S. Ohki, A. Nezu, and T. Ikemi: “Development of interior permanent magnet motor reducing harmonic iron losses under field weakening control”, IEEJ Trans. IA, Vol. 127, No. 8, (2007-8) (in Japanese) (in press)
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1. A study of mesh deformation methods for magnetic field analysis;IEEJ Transactions on Electrical and Electronic Engineering;2011-05-26
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