采用有限元法和实验方法对多相无刷永磁(BPM)电机进行评价

S. Waikar, T. Gopalarathnam, H. Toliyat, J. Moreira
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引用次数: 17

摘要

本文分析了2相、3相和5相无刷永磁(BPM)电机在适当的变速驱动器供电时的性能。目的是评估这些BPM电机在不同应用中的适用性。采用非线性有限元法研究了电机各点的磁通密度,并计算了发展的静转矩。研究了相数对转矩的产生以及后铁齿和定子齿内磁链分布的影响。研究了不同励磁波形对2相、3相和5相BPM电机在满载时产生的发展电磁转矩的影响。在此基础上,采用动态仿真方法预测了BPM电机的转矩脉动。通过两相和三相BPM电机的实验结果验证了仿真结果。结果表明,对于相同数量的铜损耗,两相BPM电机更具成本效益,因为它提供更高的平均扭矩和峰值扭矩。但是,在开发转矩中产生更深的缺口,铁利用率在5相BPM电机中更好。峰值后铁磁通密度与2相和3相BPM电机相同。
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Evaluation of multiphase brushless permanent magnet (BPM) motors using finite element method (FEM) and experiments
This paper analyzes the behavior of 2-phase, 3-phase, and 5-phase brushless permanent magnet (BPM) motors when supplied by suitable variable speed drives. The objective is to evaluate the suitability of these BPM motors for different applications. Nonlinear finite element method (FEM) is used for studying the flux density at various points of the machines and for calculating the developed static torque. The effect of the number of phases on the developed torque and the flux distribution in the back-iron and stator teeth is studied. Also, the effect of different current excitation waveforms on the developed electromagnetic torque generated in 2-phase, 3-phase, and 5-phase BPM motors at full load is studied. Further, dynamic simulation is used to predict the torque ripple in these BPM motors. Simulation results are verified by experimental results obtained from 2-phase and 3-phase BPM motors. It is shown that for the same amount of copper loss, the 2-phase BPM motor is more cost effective as it gives higher average torque as well as peak torque. However, it generates deeper notches in the developed torque, Iron utilization is better in the 5-phase BPM motor. The peak back-iron flux density remains the same as in the 2-phase and 3-phase BPM motors.
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