Torque ripple reduction of a modular-stator outer-rotor flux-switching permanent-magnet motor

Jing Zhao, Yun Zheng, Congcong Zhu, Hao Chen, Liu Yang
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Abstract

In order to reduce the permanent magnet (PM) volume and combine the advantages of in-wheel motor, a novel modular-stator outer-rotor flux-switching permanent-magnet motor (MSOR-FSPM) whose PM volume is half of that in conventional outer-rotor flux-switching permanent-magnet (COR-FSPM) motor is proposed. However, cogging torque and torque ripple of MSOR-FSPM motor are especially worse due to the inherent double salient effect and the back-EMF harmonics caused by module stator structure. In this paper, structure and operation principle of MSOR-FSPM motor are described simply. Secondly, cogging torque and torque ripple are reduced by using traditional rotor two-step skewing method, but the result is unsatisfactory. Thirdly, a new rotor two-step skewing method is adopted since the ratio of back-EMF period to cogging torque period is the odd. Compared with traditional rotor step skewing method, the new method eliminates the even harmonics of back-EMF and remains the amplitude of fundamental waveform; the odd harmonics of cogging torque and electromagnetic torque are eliminated. Finally, the results of the new rotor step skewing method is verified by 3D finite element method (FEM) and further improved by embedding non-magnetic blocks in the middle of the stator and rotor.
模定子-外转子磁通开关永磁电机转矩脉动抑制
为了减小永磁体积,结合轮式电机的优点,提出了一种新型模块定子外转子磁通开关永磁电机(MSOR-FSPM),其永磁体积是传统外转子磁通开关永磁电机(co - fspm)的一半。然而,由于固有的双凸极效应和模块定子结构产生的反电动势谐波,MSOR-FSPM电机的齿槽转矩和转矩脉动尤为严重。本文简要介绍了MSOR-FSPM电机的结构和工作原理。其次,采用传统的转子两步偏斜法减小齿槽转矩和转矩脉动,但效果不理想。再次,由于反电动势周期与齿槽转矩周期的比值为奇数,采用了一种新的转子两步偏斜方法。与传统的转子阶跃偏斜方法相比,该方法消除了反电动势的均匀次谐波,保持了基波的幅值;消除了齿槽转矩和电磁转矩的奇次谐波。最后,采用三维有限元法验证了该方法的结果,并通过在定子和转子中间嵌入非磁性块进一步改进了该方法。
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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