Influence of magnet pole arc variation on the performance of external rotor permanent magnet synchronous machine based on finite element analysis

P. Ling, D. Ishak, T. Tiang
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引用次数: 5

Abstract

Cogging torque is a common design issue in Permanent Magnet Synchronous Machines (PMSMs). Altering the magnet shape is one of the solutions in reducing the cogging torque. This paper addresses the variation in the rotor magnet pole arc which would affect the cogging torque of the external rotor permanent magnet synchronous motor (ERPMSM). Analytical calculations to design a three-phase, 12slot/8pole (12s/8p) ERPMSM with consideration of major parameters and material properties are presented. A two-dimensional (2D) layout of the ERPMSM is constructed and analysed. The variation in reducing the magnet pole arc is modelled and simulated in a commercial finite element software i.e. OPERA 2D, to illustrate its effects on the cogging torque generated in the machine. After which, the paper describes the possible reasons behind the trend of the changing cogging torque exhibited by variation of the magnet pole arc, and its effects on the phase-back electromotive force (EMF) produced by the ERPMSM.
基于有限元分析的外转子永磁同步电机磁极弧变化对其性能的影响
齿槽转矩是永磁同步电机(PMSMs)中常见的设计问题。改变磁体形状是减小齿槽转矩的解决方法之一。本文研究了转子磁极弧的变化对外转子永磁同步电动机齿槽转矩的影响。给出了考虑主要参数和材料性能的三相12槽/8极(12s/8p) ERPMSM的解析计算方法。构造并分析了ERPMSM的二维布局。减少磁极弧的变化在商业有限元软件中进行建模和模拟,即OPERA 2D,以说明其对机器中产生的齿槽转矩的影响。分析了磁极弧变化导致齿槽转矩变化趋势的可能原因及其对电永磁同步电机反相电动势的影响。
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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