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Analytical Model of Eddy Current Loss in Windings of Permanent-Magnet Machines Accounting for Load

机译:计及负荷的永磁电机绕组中的涡流损耗分析模型

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摘要

This paper presents an analytical model for predicting open-circuit, armature reaction and on-load resistance limited eddy current losses in the conductors of surface-mounted permanent-magnet machines, based on the subdomain field model accounting for tooth-tips. The analytical model can be applied to machines having single-layer, two-radial-layer, or two-circumferential-layer windings. The interaction between spatial harmonics is accurately accounted for in the calculation of the AC copper loss. The investigation shows that neglecting the interaction in the analytical model has negligible influence on the prediction of total AC copper loss but results in significant error in the predicted loss distribution among conductors. The influence of tooth-tip dimension, conductor segmentation, and current on the AC copper loss is also investigated by the analytical model. The finite element analysis has verified the validity of the developed analytical model.
机译:本文基于占齿尖的子域场模型,提出了一种用于预测表面安装式永磁电机导体中的开路,电枢反应和有载电阻限制的涡流损耗的分析模型。该分析模型可以应用于具有单层,两层径向或两周层绕组的电机。空间谐波之间的相互作用在交流铜损的计算中得到了准确的说明。研究表明,忽略分析模型中的相互作用对总AC铜损耗的预测影响可忽略不计,但会导致导体之间的损耗分布预测出现重大误差。解析模型还研究了齿尖尺寸,导体分段和电流对交流铜损的影响。有限元分析已经验证了所开发分析模型的有效性。

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