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Design Space Methodology and Its Application in Interior Permanent Magnet Motor Design

  • Fan, Tao (Institute of Electrical Engineering of Chinese Academic of Science, Key Laboratory of Power Electronics Drive) ;
  • Li, Qi (Graduate University of Chinese Academy of Science P.R.China) ;
  • Wen, Xuhui (Institute of Electrical Engineering of Chinese Academic of Science, Key Laboratory of Power Electronics Drive) ;
  • Xu, Longya (The Ohio State University Columbus)
  • 발행 : 2012.09.01

초록

An innovative interpretation of the per-unit interior permanent magnet (IPM) machine model known as Design Space is presented in this paper. Based on the proposed Design Space formulation, an effective computation method to predict IPM machine performance factors, such as the current and power factor in a full range of speeds, is proposed. A systematic methodology is summarized, which translates the full speed range machine design procedure into the region determination on the so-called Design Space. The effect of dc-link voltage is also analyzed in a similar manner with the current and power factor. A series of IPM motors have been designed, and a preferred motor is selected with the help of the proposed Design Space Methodology (DSM), which has the best tradeoff between the nominal voltage and the dropped voltage condition. Experiment results show that the selected motor satisfies the machine requirements and all the design constrains, such as the current and back-EMF limitations.

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참고문헌

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