Comparative analysis and optimization design of dual-side-permanent-magnet Halbach array vernier machine for high torque density

COMPEL Pub Date : 2024-08-09 DOI:10.1108/compel-03-2024-0149
He Cheng, Fandi Lin, Jing Wu, Tong Zhang
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Abstract

Purpose

The purpose of this paper is to introduce and analyze a dual-side-permanent-magnet Halbach array vernier (DSPMHV) machine and to propose methods for achieving high torque density.

Design/methodology/approach

Flux harmonics and torque characteristics are analyzed by using finite element analysis. First, a suitable pole-slot combination is selected by comparison. Second, field modulation processes of DSPMHV machine are analyzed to identify the reason for high torque density. And it is compared with dual-side-PM (DSPM) machine to analyze flux harmonic and verify the flux concentrating effect of the Halbach array.

Findings

The permanent magnet (PM) field of the DSPM machine is approximately equal to the superposition of stator-PM field and rotor-PM field, which is the reason for high torque density. And the Halbach array can reduce flux leakage and increase the amplitude of main flux harmonics, then further improves torque. Improvement of torque can be achieved by choosing right pole-slot combination, adopting DSPM machine structure, reducing flux leakage and adopting field modulation principle.

Originality/value

The DSPMHV machine with split-tooth is proposed in this paper by combining the Halbach array with DSPM structure. This paper analyzes the bidirectional field modulation process, the reason for high torque density of the DSPM machine is obtained. Comparison with the DSPM machine verifies the flux concentrating effect of Halbach array. To alleviate the magnetic saturation in part of stator teeth, this paper proposes an improved DSPMHV machine with shaped auxiliary magnet.

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用于高扭矩密度的双侧永磁哈尔巴赫阵列游标机械的比较分析和优化设计
本文旨在介绍和分析双侧永磁哈尔巴赫阵列游标(DSPMHV)机器,并提出实现高扭矩密度的方法。首先,通过比较选择合适的极槽组合。其次,分析 DSPMHV 机器的场调制过程,找出高转矩密度的原因。研究结果 DSPM 机器的永磁(PM)磁场近似等于定子-PM 磁场和转子-PM 磁场的叠加,这是产生高转矩密度的原因。而哈尔巴赫阵列可以减少磁通泄漏,增加主磁通谐波的幅值,从而进一步提高转矩。通过选择正确的磁极-槽组合、采用 DSPM 机器结构、减少磁通泄漏和采用磁场调制原理,可实现转矩的改善。 原创性/价值 本文通过将哈尔巴赫阵列与 DSPM 结构相结合,提出了具有分齿的 DSPMHV 机器。本文分析了双向场调制过程,得出了 DSPM 机器转矩密度高的原因。与 DSPM 机器的比较验证了哈尔巴赫阵列的磁通集中效应。为了缓解部分定子齿的磁饱和,本文提出了一种带有异形辅助磁铁的改进型 DSPMHV 机器。
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