Design, Analysis, and Comparison of Permanent Magnet Claw Pole Motor with Concentrated Winding and Double Stator

IF 2.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Chengcheng Liu, Hongming Zhang, Shaoheng Wang, Shiwei Zhang, Youhua H. Wang
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引用次数: 0

Abstract

Permanent magnet motors have become an important component of industrial production, transportation, and aerospace due to their advantages of high torque density, high power density, high reliability, low losses, and high efficiency. Permanent magnet claw pole motor (PMCPM) is a special type of transverse flux motor which has a higher torque density compared to traditional permanent magnet motors. Due to the absence of winding ends, its axial space utilization is high, and the usage of windings is greatly reduced, reducing the cost and weight of the motor. PMCPM has the advantages of small space, a light weight, a high torque density, a high efficiency, and simple production, which have potential for use in the field of electric vehicles. The double-stator structure design can improve the torque density, efficiency, and radial space utilization of PMCPM, which helps to expand their applications in the field of electric vehicles. This article designs two PMCPM with concentrated winding while different rotor structures (PMCPM1 and PMCPM2) and a three-dimensional finite element method is employed to compare and analyze the performance of PMCPM1 and PMCPM2 and the traditional PMCPM (TPMCPM). Multiphysics analysis is carried out for PMCPM1 and PMCPM2. The stress of the inner and outer stators during interference assembly are analyzed. In this paper, a hybrid material core design is proposed, in which the stator yoke is rolled by silicon steel material and the stator claw pole is pressed by the SMC die method. The multiphysics simulation performance of the PMCPM1 and PMCPM2 with hybrid cores is analyzed.
集中绕组双定子永磁爪极电机的设计、分析与比较
永磁电机由于具有高转矩密度、高功率密度、高可靠性、低损耗、高效率等优点,已成为工业生产、交通运输、航空航天等领域的重要组成部分。永磁爪极电机(PMCPM)是一种特殊类型的横向磁通电机,与传统永磁电机相比,它具有更高的转矩密度。由于没有绕组端部,其轴向空间利用率高,大大减少了绕组的使用,降低了电机的成本和重量。PMCPM具有空间小、重量轻、扭矩密度高、效率高、制作简单等优点,在电动汽车领域具有应用潜力。双定子结构设计可以提高PMCPM的转矩密度、效率和径向空间利用率,有助于扩大其在电动汽车领域的应用。本文设计了两种集中绕组、不同转子结构的PMCPM1和PMCPM2,并采用三维有限元法对PMCPM1和PMCPM2与传统PMCPM (TPMCPM)的性能进行了比较分析。对PMCPM1和PMCPM2进行了多物理场分析。分析了干涉装配过程中内外定子的应力。本文提出了一种采用硅钢材料轧制定子磁轭,采用SMC模压法压制定子爪极的混合材料铁芯设计方案。分析了混合核PMCPM1和PMCPM2的多物理场仿真性能。
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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来源期刊
World Electric Vehicle Journal
World Electric Vehicle Journal Engineering-Automotive Engineering
CiteScore
4.50
自引率
8.70%
发文量
196
审稿时长
8 weeks
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