Influence of Phase Angle for Low-order Harmonics on Vibration of an Induction Traction Motor

Yangbo Kou, Fei Xiong
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引用次数: 1

Abstract

The vibration and noise problem of induction traction motor has been widely concerned and studied in recent years. This paper focuses on the influence of low-order harmonics phase on electromagnetic force of induction motor. Firstly, the relationship between stator and rotor current phase with harmonics is analyzed qualitatively by equivalent circuit. Then, the electromagnetic force of an induction traction motor is studied. Using two-dimensional Fourier analysis, the main spatial order and frequency of electromagnetic force wave can be calculated. The variation of three main electromagnetic force waves with harmonic phases are analyzed. Finally, the vibration under different harmonic phases is obtained by finite element simulation. The results show that the relationship between electromagnetic force and motor vibration with harmonic phase is basically consistent under low spatial order.
低次谐波相位角对感应牵引电动机振动的影响
近年来,感应牵引电动机的振动和噪声问题受到了广泛的关注和研究。本文主要研究了低次谐波相位对感应电动机电磁力的影响。首先,利用等效电路定性分析了定子和转子电流相位差与谐波的关系。然后,对感应牵引电动机的电磁力进行了研究。利用二维傅里叶分析,可以计算出电磁力波的主要空间阶数和频率。分析了三种主要电磁力波的谐波相位变化规律。最后通过有限元仿真得到了不同谐波相位下的振动。结果表明:在低空间阶次下,电磁力与谐波相位下电机振动的关系基本一致;
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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