Axial eccentric SynRel and SPM motors analytical models validation using 3D finite element

H. Mahmoud, A. Al-Timimy, M. Degano, M. Di Nardo, N. Bianchi, C. Gerada
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Abstract

This paper deals with the uniform and non-uniform axial eccentricity analyses of the surface mounted permanent magnet and synchronous reluctance machines. The analyses are carried out using an analytical model for each considered machine. Being the axial eccentricity a 3D physical phenomenon, the standard sliding approach used in the analytical models has been validated through accurate 3D FE simulations. The results presented in this paper verify the effectiveness of the analytical approaches quantifying the results deviations respect to the computational expensive 3D FE simulations. The results also confirms that synchronous reluctance machines show higher radial forces compared to the surface permanent magnet machines for the same eccentricity level, main geometry and operating condition.
轴向偏心SynRel和SPM电机的三维有限元分析模型验证
本文对表面贴装永磁和同步磁阻电机的均匀和非均匀轴向偏心进行了分析。对每个考虑的机器使用分析模型进行分析。由于轴向偏心是一种三维物理现象,分析模型中采用的标准滑动方法已通过精确的三维有限元模拟得到验证。本文的结果验证了分析方法的有效性,量化了计算昂贵的三维有限元模拟的结果偏差。结果还证实,在相同的偏心水平、主要几何形状和运行条件下,同步磁阻电机比表面永磁电机表现出更高的径向力。
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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