Improved analytical modeling of commutation losses including space harmonic effects in permanent magnet brushless DC motors

Fang Deng
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引用次数: 18

Abstract

The discrete or hopping nature of magnetic field, produced by the nonsinusoidal square-wave stator currents of permanent magnet brushless DC motors, gives rise to eddy current losses in the rotor magnets and core. These losses, referred to as commutation losses, can be substantial in large propulsion motors. This paper presents a further refinement in the analytical model derived and presented in an earlier paper. The improved model is able to account for the space harmonic effect of the stator resultant magnetomotive force (MMF) on commutation losses and consequently can lead to a more accurate prediction of the commutation loss. The model was verified by comparing its results with those obtained using the finite element method at several operating speeds and current levels. The results show good improvement (an average value of 6.8% for the total losses) compared with the earlier model (an average value of 11.7%).
改进的含空间谐波效应的永磁无刷直流电动机换相损耗分析模型
永磁无刷直流电动机的非正弦方波定子电流产生的离散或跳变磁场,在转子磁体和铁芯中产生涡流损耗。这些损耗被称为换相损耗,在大型推进发动机中可能是相当大的。本文提出了进一步细化的分析模型推导和提出在较早的论文。改进后的模型能够考虑定子合磁动势(MMF)对换相损耗的空间谐波效应,从而能够更准确地预测换相损耗。通过与有限元法在不同运行速度和电流水平下的计算结果进行比较,验证了模型的正确性。结果表明,与较早的模型(平均损失为11.7%)相比,该模型有较好的改善(总损失的平均值为6.8%)。
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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