Analysis of Rotor Shapes for Double-Sided Axial-Flux Interior Permanent Magnet Machine

Omolbanin Taqavi, Seyyed Mehdi Mirimani
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引用次数: 1

Abstract

The recent increases in the consumption of permanent magnet machines emphasizes the importance of designing the ones with interior permanent magnet (IPM) structures that have enhanced performances. This study designed and analyzed the rotor shapes of IPM machines. In this regard, six types of magnets for dual rotor axial-flux permanent magnet (AFPM) were modeled and analyzed using 3D finite element method (FEM). In order to minimize the number of variables of this study, all of the parameters including the size of the stators, machine’s height, diameter, and so on are considered to be fixed and only the magnet shapes were modified to compare the machine’s characteristics. When the machine’s performances were compared as a function of rotor shape, the machine with sector-like magnet demonstrated the best results in terms of electromagnetic torque, torque ripple, air-gap flux density, and back electromotive force (EMF), as well as total harmonic distortion (THD).
双面轴向磁通内插永磁电机转子形状分析
近年来永磁电机消费的增加,强调了设计具有增强性能的内部永磁(IPM)结构的重要性。本文对IPM机床的转子形状进行了设计和分析。为此,采用三维有限元法对六种双转子轴向磁通永磁(AFPM)磁体进行了建模和分析。为了使本研究的变量数量最小化,所有的参数包括定子的尺寸、机器的高度、直径等都被认为是固定的,只修改磁体的形状来比较机器的特性。当机器的性能作为转子形状的函数进行比较时,扇形磁铁的机器在电磁转矩、转矩脉动、气隙磁通密度、反电动势(EMF)和总谐波失真(THD)方面表现出最好的效果。
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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