基于有限元分析的分槽永磁机床在弱磁工况下的铁损研究

A. Masmoudi
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引用次数: 6

摘要

铁损的预测对交流电机特别是永磁无刷电机具有重要意义。当处理分数槽PM机(FSPMM)时,这种说法进一步得到证实,因为可以实现很宽的速度范围。本文研究了定子和转子轭以及12槽/10极FSPMM中的铁损耗。在有限元分析的基础上,研究的重点是在熔剂减弱范围内铁损失的评估,因为它们的增加可能是一个关键问题。有限元后处理得到了考虑低速和高速的铁损密度图。此外,还对铁损随转速的变化进行了分析。结果表明,在磁链减弱范围内,由于永磁涡流损耗的显著增加,电机的工作效率受到很大影响。为了克服这一局限,提出了永磁材料径向分割的方法,并分析了径向分割对铁损的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FEA-based investigation of the iron loss of fractional slot PM machines under flux weakening operation
The prediction of iron losses is of great importance in AC machines especially in PM brushless ones. This statement is further confirmed when dealing with fractional slot PM machines (FSPMM) since a wide speed range can be achieved. The paper is devoted to an investigation of the iron loss in both stator and rotor yoke as well as in a 12 slot/10 pole FSPMM. Based on FEA, the investigation focuses on the assessment of iron loss in the flux weakening range in so far as their increase could be a critical issue. The FEA post-processing has led to the iron loss density maps considering low and high speeds. Moreover, an analysis of the variation of the iron loss with respect to speed has been carried out. It has been found that the efficiency of the machine is greatly affected in the flux weakening range which is due to the remarkable increase of the PM eddy current loss. In order to overcome this limitation, radial segmentation of the PMs is proposed and its effect on the iron loss is analyzed.
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