Optimal rotor shape with third harmonic for maximizing torque and minimizing torque ripple in IPM motors

K. Wang, Z. Zhu, G. Ombach, W. Chlebosz
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引用次数: 38

Abstract

This paper presents optimal rotor shape design to increase the torque capability in IPM machines by introducing optimal 3rd harmonic to the inverse cosine shaped rotor. The impact of the optimal 3rd harmonic to the rotor shape on the electromagnetic performance is investigated by finite element method. It is demonstrated that under the same amount of permanent magnets as the inverse cosine shaped IPM machine, the average torque for the machine of inverse cosine with optimal 3rd harmonic shaped rotor can be improved by >;5% while the torque ripple can be maintained almost the same. In addition, the inductance saliency ratio is also improved, which increases the average torque further. The impact of 3rd harmonic on stator and rotor iron and rotor eddy current magnet losses is also compared with the machine without 3rd harmonic in the rotor shape, which shows that the iron loss increases slightly. All results have been verified with finite element method.
基于三次谐波的IPM电机转矩最大化和转矩脉动最小化的最佳转子形状
本文通过在逆余弦型转子中引入最优三次谐波,提出了一种提高IPM电机转矩能力的转子形状优化设计方法。采用有限元法研究了转子形状最优三次谐波对电磁性能的影响。结果表明,在与反余弦型IPM电机相同永磁体数量的情况下,优化三次谐波转子的反余弦型IPM电机的平均转矩可提高> 5%,而转矩脉动基本保持不变。此外,还提高了电感显着比,进一步提高了平均转矩。对比了三次谐波对定子和转子铁损及转子涡流磁体损耗的影响,发现转子形状与无三次谐波的电机相比,铁损略有增加。所有结果都用有限元法进行了验证。
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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