Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors

Aiming at the problems in the design of permanent magnet synchronous motor for vehicles, taking the 8-pole 48-slot and 8-pole 36-slot interior permanent synchronous motors as subject, the influence of different pole-slot combinations on the electromagnetic performance and vibration noise of permanen...

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Main Authors: Guohao LI, Hongbin YIN, Yigang SUN, Zhe ZHANG, Xiangjun BI, Wenjing HU
Format: Article
Language:zho
Published: Hebei University of Science and Technology 2025-02-01
Series:Journal of Hebei University of Science and Technology
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Online Access:https://xuebao.hebust.edu.cn/hbkjdx/article/pdf/b202501002?st=article_issue
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author Guohao LI
Hongbin YIN
Yigang SUN
Zhe ZHANG
Xiangjun BI
Wenjing HU
author_facet Guohao LI
Hongbin YIN
Yigang SUN
Zhe ZHANG
Xiangjun BI
Wenjing HU
author_sort Guohao LI
collection DOAJ
description Aiming at the problems in the design of permanent magnet synchronous motor for vehicles, taking the 8-pole 48-slot and 8-pole 36-slot interior permanent synchronous motors as subject, the influence of different pole-slot combinations on the electromagnetic performance and vibration noise of permanent magnet synchronous motor for vehicles were researched. Firstly, the torque ripples and no-load back electromotive forces of the permanent synchronous motor with different pole-slot combinations were comparatively analyzed in order to investigate the influence of different pole-slot combinations on the electromagnetic performance of the motor. Secondly, the analytical model of electromagnetic force wave was deduced based on Maxwell stress tensor method, and the spatial order and frequency characteristics of the electromagnetic force wave of the motor with different pole-slot combinations were analyzed by the analytical model and the finite element model, respectively. Finally, a multi-physical field coupling model of the motor was established to investigate the effects of different pole-slot combinations on the vibration noise of the permanent magnet synchronous motor. The results show that the 8-pole 36-slot motor is significantly better than the 8-pole 48-slot motor in terms of torque ripple, no-load back electromotive force, and other electromagnetic performances. However, due to the existence of lower spatial non-zero electromagnetic force waves, it is more likely to trigger resonance and generate vibration noise. The analytical results reveal the effects of different pole-slot combinations on the electromagnetic performance and vibration noise of permanent magnet synchronous motors, and provide theoretical references for the selection of pole-slot combinations and subsequent optimization of motor design.
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spelling doaj-art-dde0bdc1bd5f4784bdb9b105e801a2142025-01-17T06:48:05ZzhoHebei University of Science and TechnologyJournal of Hebei University of Science and Technology1008-15422025-02-0146182010.7535/hbkd.2025yx01002b202501002Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motorsGuohao LI0Hongbin YIN1Yigang SUN2Zhe ZHANG3Xiangjun BI4Wenjing HU5School of Traffic and Vehicle Engineering, Shandong University of Technology, Zibo, Shandong 255049, ChinaSchool of Traffic and Vehicle Engineering, Shandong University of Technology, Zibo, Shandong 255049, ChinaSchool of Traffic and Vehicle Engineering, Shandong University of Technology, Zibo, Shandong 255049, ChinaSchool of Traffic and Vehicle Engineering, Shandong University of Technology, Zibo, Shandong 255049, ChinaSchool of Traffic and Vehicle Engineering, Shandong University of Technology, Zibo, Shandong 255049, ChinaSchool of Traffic and Vehicle Engineering, Shandong University of Technology, Zibo, Shandong 255049, ChinaAiming at the problems in the design of permanent magnet synchronous motor for vehicles, taking the 8-pole 48-slot and 8-pole 36-slot interior permanent synchronous motors as subject, the influence of different pole-slot combinations on the electromagnetic performance and vibration noise of permanent magnet synchronous motor for vehicles were researched. Firstly, the torque ripples and no-load back electromotive forces of the permanent synchronous motor with different pole-slot combinations were comparatively analyzed in order to investigate the influence of different pole-slot combinations on the electromagnetic performance of the motor. Secondly, the analytical model of electromagnetic force wave was deduced based on Maxwell stress tensor method, and the spatial order and frequency characteristics of the electromagnetic force wave of the motor with different pole-slot combinations were analyzed by the analytical model and the finite element model, respectively. Finally, a multi-physical field coupling model of the motor was established to investigate the effects of different pole-slot combinations on the vibration noise of the permanent magnet synchronous motor. The results show that the 8-pole 36-slot motor is significantly better than the 8-pole 48-slot motor in terms of torque ripple, no-load back electromotive force, and other electromagnetic performances. However, due to the existence of lower spatial non-zero electromagnetic force waves, it is more likely to trigger resonance and generate vibration noise. The analytical results reveal the effects of different pole-slot combinations on the electromagnetic performance and vibration noise of permanent magnet synchronous motors, and provide theoretical references for the selection of pole-slot combinations and subsequent optimization of motor design.https://xuebao.hebust.edu.cn/hbkjdx/article/pdf/b202501002?st=article_issueelectrical machinery; permanent magnet synchronous motor; pole-slot combination; electromagnetic performance; vibration noise; electromagnetic force wave
spellingShingle Guohao LI
Hongbin YIN
Yigang SUN
Zhe ZHANG
Xiangjun BI
Wenjing HU
Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors
Journal of Hebei University of Science and Technology
electrical machinery; permanent magnet synchronous motor; pole-slot combination; electromagnetic performance; vibration noise; electromagnetic force wave
title Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors
title_full Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors
title_fullStr Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors
title_full_unstemmed Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors
title_short Multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors
title_sort multi physics field simulation analysis of different pole slots combined with automotive permanent magnet motors
topic electrical machinery; permanent magnet synchronous motor; pole-slot combination; electromagnetic performance; vibration noise; electromagnetic force wave
url https://xuebao.hebust.edu.cn/hbkjdx/article/pdf/b202501002?st=article_issue
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