Rotor design optimization of synchronous machine with two-part rotor

C. Gu, B. Chalmers, C.W. Lu
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引用次数: 10

Abstract

To achieve saliency ratio and material utilization ratio as high as possible, the main design criteria of a synchronous machine with a two-part rotor, an axially laminated anisotropic (ALA) reluctance part and a surface permanent magnet (SPM) part axially-separated on the same shaft, are explored on the basis of magnetic field analysis including consideration of the saturation effects by FEM. Numerical results show that an optimal design can be obtained, with a larger ratio of pole pitch to air-gap (>400), a proper thickness ratio of insulation layer to iron sheet (0.5-1.0) and a proper laminated pole span (120-140/spl deg/) in ALA part, and with a higher ratio of magnet height to air-gap (20-30), a proper permanent magnet pole span (130-150/spl deg/) and a shorter longitudinal length in SPM part.
双转子同步电机转子设计优化
为了尽可能地实现显著性比和材料利用率,在磁场分析的基础上,探讨了考虑饱和效应的两部分转子、轴向层压各向异性磁阻(ALA)部件和表面永磁(SPM)部件轴向分离的同步电机的主要设计准则。数值计算结果表明,优化设计的最佳方案为:ALA部分的极距气隙比(>400)、保温层与铁片的厚度比(0.5 ~ 1.0)和层压极距(120 ~ 140/spl°/);SPM部分的磁体高度与气隙比(20 ~ 30)、永磁体极距(130 ~ 150/spl°/)和纵向长度较短。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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