基于封闭解析方程的多相绕组的毫米波谐波分析

Xiang Ren, Dawei Li, R. Qu, Jian Li
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引用次数: 3

摘要

分数槽集中绕组和双槽节距集中绕组等新型绕组形式由于具有绕组端部短、易于制造等优点而受到广泛关注。然而,与常规整数槽分布绕组相比,这些绕组结构的磁动势谐波含量要高得多,且其磁动势波形与正弦波相差甚远,这导致现有的正则整数和分形槽分布绕组的磁动势分析方程不适用于这些新颖的绕组结构,特别是对于相数不是三的多相绕组。本文提出了预测任何多相绕组谐波阶数的一般方程。推导了具有最高基频的多相绕组结构的相带、分布和槽距因子。基于该方程,可以对包括规则三相绕组在内的多相绕组的谐波阶数和谐波含量等关键电磁性能进行高效、有效的预测和计算。最后,建立了几个有限元模型来验证这些方程。
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MMF harmonic analysis of polyphase windings based on the closed-form analytical equation
The several new winding configurations, such as fractional slot concentrated winding and concentrated winding with two slot pitches, have been attracted lots of attentions due to their inherent advantages such as short ending winding, easy manufacture and so on. However, these winding configurations are always suffer from much richer magneto motive force(MMF) harmonic contents and their MMF waveforms are far from sinusoidal waves compared to regular integer slot winding, and this leads to that the existing the MMF analysis equations built for regular integer and factional slot distribution windings do not work well for these novel winding configurations, especially for poly-phase windings, whose phase number is not three. This paper proposes general equations for predicting the harmonic order for any poly-phase windings. The phase belt, distribution and slot pitch factors for multiphase winding configuration with highest fundamental are derived. Based on the proposed equations, the key electromagnetic performances of multiphase winding including regular three phase winding, such as harmonic orders and contents, can be efficiently and effectively predicted and calculated. Finally, Several FEA models are built to verify these equations.
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