Effect of radial asymmetry of magnets in surface-mounted permanent magnet motors on cogging torque

Alejandro J. Pina, S. Paul, R. Islam, Longya Xu
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引用次数: 3

Abstract

During the mass production of surface-mounted permanent magnet motors the rotor and stator geometrical dimensions usually deviate from their nominal values due to manufacturing tolerances which impact machine performance. One such common tolerance can be noticed in the placement of the permanent magnets on the rotor surface which creates new orders of cogging torque. Finite element models can be used to analyze the cogging generated due to the asymmetry in the magnet placement. However, it is time consuming to study the effect of imbalance of each magnet numerically since periodicity and symmetry conditions cannot be used to reduce the model. Therefore, in this paper an analytical model is presented to study the effect of such imbalance on the cogging torque. The model is validated against a finite element model and also with experimental results.
表面贴装永磁电机磁体径向不对称对齿槽转矩的影响
在表面贴装永磁电机的批量生产过程中,由于制造公差的影响,转子和定子的几何尺寸通常会偏离其标称值,从而影响机器的性能。其中一个常见的公差可以注意到永磁体在转子表面的位置,它产生新的齿槽转矩。有限元模型可以用来分析由于磁体放置不对称而产生的齿槽。然而,由于不能使用周期性和对称性条件来简化模型,因此对各磁体不平衡的影响进行数值研究非常耗时。因此,本文提出了一种分析模型来研究这种不平衡对齿槽转矩的影响。通过有限元模型和实验结果对模型进行了验证。
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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