The effect of asymmetry on torque in permanent magnet motors

S. Salon, K. Sivasubramaniam, L. T. Ergene
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引用次数: 10

Abstract

Electronically controlled permanent magnet motors are increasing in popularity due to high efficiency and power density. The noise and vibration issues in permanent magnet motors have not been studied extensively. This paper presents a general purpose method to understand the sources of torque pulsation in permanent magnet motors. This method is based on the analysis of the traveling wave components of the radial and tangential air gap flux. These flux densities are obtained from time domain finite element solutions which are then analyzed to find the time and frequency Fourier components. The harmonic components in the cogging torque can then be attributed to specific air gap flux harmonics. A surface mounted brushless DC motor is used as a case study to analyze the effect of rotor asymmetry on torque pulsation. Several guidelines relating to the finite element modeling of the machine are given concerning grid generation and the inclusion of external circuit connections. The effect of magnet imbalance, static rotor eccentricity, dynamic eccentricity, and combined static and dynamic eccentricity are investigated. Load cases are also studied. These results are then related to the expected frequency components in the torque ripple. The authors conclude the paper with overall comments on the modeling and a discussion of the suitability of these motors for low vibration applications.
永磁电机不对称对转矩的影响
电子控制永磁电机因其高效率和功率密度高而越来越受欢迎。永磁电机的噪声和振动问题还没有得到广泛的研究。本文提出了一种了解永磁电机转矩脉动来源的通用方法。该方法基于对径向和切向气隙磁通行波分量的分析。这些磁通密度由时域有限元解得到,然后分析得到时间和频率傅里叶分量。齿槽转矩中的谐波分量可以归结为特定的气隙磁通谐波。以表面贴装无刷直流电动机为例,分析了转子不对称对转矩脉动的影响。给出了与机器的有限元建模有关的几个准则,包括网格生成和外部电路连接。研究了磁不平衡、转子静态偏心、动态偏心以及动静混合偏心对电机的影响。负载情况也进行了研究。然后将这些结果与转矩脉动中的预期频率分量相关。作者总结了对建模的总体评论,并讨论了这些电机在低振动应用中的适用性。
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