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Analysis of Zeroth-Mode Slot Frequency Vibration of Integer Slot Permanent-Magnet Synchronous Motors

机译:整数槽永磁同步电动机的零模式槽频振动分析

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摘要

For the integer slot permanent-magnet (PM) driving synchronous motor, the zeroth-mode slot frequency vibration and noise play a significant vibroacoustic role in the low-frequency domain. For conventional analysis in literature, it is usually assumed that the zeroth-mode vibration is caused by the zeroth-order radial force harmonic. But in this paper, the genuine reason for zeroth-mode vibration is proposed and discussed in detail, which is different from the conventional analysis. The teeth chopping effect is proposed and demonstrates that the slot number order radial force is the root of the zeroth-mode vibration of the motor. After the analysis of the zeroth-mode vibration in existing research work is presented, the teeth chopping effect is introduced and described. The amplitudes of the zeroth-order and slot number order forces are compared with an analytical method, while their amplitudes and caused deformations of these forces are calculated with the finite-element method (FEM). Finally, to validate the analytical and FEM results, a 6-pole 36-slot PM driving motor is manufactured and tested, and the results are in good agreement with those of the FEM results.
机译:对于驾驶同步电动机的整数插槽永磁体(PM),零模式槽频率振动和噪声在低频域中发挥了显着的纵传作用。对于文献中的常规分析,通常假设Zeroth模式振动是由零级径向力谐波引起的。但本文提出并详细讨论了Zeroth模式振动的真正原因,这与传统分析不同。提出了牙齿切碎效果,并表明槽位径向力是电动机的零模式振动的根。在提出了现有研究工作中的零模式振动的分析之后,介绍并描述了牙齿切碎效果。将零顺序和槽位顺序力的幅度与分析方法进行比较,而它们的幅度和引起这些力的变形是用有限元方法(FEM)计算的。最后,为了验证分析和有限元件,制造和测试6极36槽PM驱动电动机,结果与FEM结果的结果吻合良好。

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