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Suppression of the Electromagnetic Vibration in Line-Start Permanent Magnet Synchronous Motor

机译:抑制线启动永磁同步电动机中的电磁振动

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摘要

The electromagnetic vibration of machines is mainly generated by radial electromagnetic force acting on the stator core inner surface. The line-start permanent magnet synchronous motor (LSPMSM) has slots on both stator and rotor sides, and the variation of electromagnetic force distribution when rotor rotates is very complex. Aiming at establishing the relationship between electromagnetic force and tooth width on both stator and rotor sides, this paper induced the analytical expression of electromagnetic force distribution in LSPMSM with stator teeth pairing. The electromagnetic vibration response of the main low-order electromagnetic force is calculated by the mechanical impedance method, and the frequency of the low-order electromagnetic force which plays a major role in the electromagnetic vibration response is obtained. Finally, the above electromagnetic force is suppressed by optimizing stator teeth pairing width. The finite element method (FEM) is utilized to verify the effectiveness of the method.
机译:机器的电磁振动主要由作用在定子芯内表面上的径向电磁振动产生。线路启动永磁体同步电动机(LSPMSM)在定子和转子侧具有槽,当转子旋转时,电磁力分布的变化非常复杂。旨在建立在两个定子和转子侧对两个定子和转子侧的电磁力和齿宽之间的关系,涉及具有定子齿配对的LSPMSM中电磁力分布的分析表达。通过机械阻抗方法计算主低位电磁力的电磁振动响应,并获得在电磁振动响应中起主要作用的低阶电磁力的频率。最后,通过优化定子齿配对宽度来抑制上述电磁力。有限元方法(FEM)用于验证该方法的有效性。

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