Novel Design of Flux Barrier in IPM type BLDC motor by considering the Multi-response Taguchi Method

다특성 목적함수를 고려한 영구자석 매입형 전동기의 새로운 자속장벽 최적설계

  • 박현각 (한양대 전자전기제어계측공학과) ;
  • 양병열 (삼성전자) ;
  • 이상봉 (한양대 전자전기제어계측공학과) ;
  • 권병일 (한양대 전자전기제어계측공학과)
  • Published : 2007.03.01

Abstract

This paper proposes the novel flux barrier that built in q-axis in rotor of IPM type BLDC motor. The novel flux barrier aims to reduce the motor vibration with reduced cogging torque and lessened torque ripple by the sinusoidal waveform distribution of the flux generated in the permanent magnet. For optimization of the novel flux barrier, the Taguchi method is effectively employed which considered multiple objective quality characteristics, such as cogging torque, average torque and efficiency. The result of proposed model compare with the initial model and it is verified by 2D finite element method (FEM) results.

Keywords

References

  1. Thomas M. Johns, Wen L. Soong, 'Pulsating Torque Minimization Techniques for Permanent Magnet AC Motor Drives', IEEE Transactions on Industrial Electronics, vol. 43, pp. 321-330, April 1996 https://doi.org/10.1109/41.491356
  2. Z. Q. Zhu, S. Ruangsinchaiwanich, N. Schofield, D. Howe, 'Reduction of Cogging Torque in Interior Magnet Brushless Machines', IEEE Transactions on Magnetics, vol. 39, pp. 3228-3240, September 2003
  3. Y. Kawaguchi, T. Sato,I. Miki,M. Nakamura, 'A reduction method of cogging torque for IPMSM', Electrical Machines and Systems, 2005. ICEMS 2005 Proceedings of the Eighth International Conference on Vol. 1, pp.248-250, Sept. 2005
  4. N Bianchi, S Bolognani, 'Perfomance Analysis of An IPM Motor with Segmented Rotor for Flux Weakening Application', IEE. no. 468, pp. 49 - 53, 1999
  5. Byoung-yull Yang, Hyun-kag Park, Byung-il Kwon, 'Design of Flux Barrier for Reducing Torque Ripple and Cogging Torque in IPM type BLDC motor', Electromagnetic Field Computation, 2006 12th Biennial IEEE Conference on 2006, pp.241 - 241, May 2006
  6. Ki-Jin Han, Han-Sam Cho, Dong-Hyeok Cho, Hyun-Kyo Jung, 'Optimal core shape design for cogging torque reduction of brushless DC motor using genetic algorithm', Magnetics, IEEE vol. 36, pp.1927 - 1931, July 2000 https://doi.org/10.1109/20.877824
  7. Shao Bo, Cao Zhi-tong, Cheng Hong-ping, He Guo-guang, 'Cogging Force and its Estimation using a Neural Network Based on 2D Field Model of MLSM', Electric Machines and Drives, 2005 IEEE, pp.1243 - 1248, May 2005
  8. Chen, S.X., Low, T.S., B.Bruhl,'The Robust Design Approach For Reducing Cogging Torque In Permanent Magnet Motors', IEEE TRANSACTION ON MAGNETICS. Vol. 34, no. 4, pp.343 - 343, july 1998 https://doi.org/10.1109/20.667759
  9. Sung-Il Kim, Ji-Young Lee, et al, 'Optimization for Reduction of Torque Ripple in Interior Permanet Magnet Motor by Using the Taguchi Method,' IEEE Trans. Magn, Vol. 41, pp.1796-1799, May 2005 https://doi.org/10.1109/TMAG.2005.846478
  10. Ming-Ru Chen, Paul Chiang, Larry Lin, 'Device Robust Design Using Multiple-Response Optimization Technique,' Statistical Metrology, 5th International Workshop, pp.46 - 49, June 2000
  11. Yong-Man Kwon, Young-Nam Son. 'An Optimization Procedure using Signal-to-Noise Ratio in The Robust Parameter Design with Multiple Quality Characteristics', Journal of the Korean Data Analysis Society, Vol. 5, No.3, pp. 541-548, 2003
  12. Madhav S.Phadke, AT&T Bell Laboratories, Quality Engineering Using Robust Design. Prentice Hall PTR, 1989
  13. Genichi Taguchi, Toshiko Yokoyama, Taguchi methods : design of experiments, ASI Press, 1993
  14. Mohammad S.Islam, Sayeed Mir, Tomy Sebastian, Samuel Underwood, 'Design Considerations of Sinusoidally Exited Permanent-Magnet Machines for Low Torque Ripple Applications', IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, Vol. 41, No.4, pp.955 - 962, July 2005 https://doi.org/10.1109/TIA.2005.851026