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Improving design of HEV traction motor for high power density

机译:改进高功率密度HEV牵引电动机设计

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This paper dealt with design to improve power density of the permanent magnet synchronous motor (PMSM) for the hybrid electric vehicle (HEV) and to reduce mass of permanent magnet (PM). It can be achieved from guaranteeing Q-axis flux path which is related to the increase of reluctance torque and from increasing turns of stator winding from introducing closed slot design. Also, power density is advanced from decreasing stacking length. The permanent magnet is designed considering heat generated by losses and reaction field of D-axis because motor in HEV is placed with an engine which generates the high heat. This paper is verified by comparisons between existing model and modified model based on analysis and experiments.
机译:本文处理了设计,提高了用于混合动力电动车(HEV)的永磁同步电动机(PMSM)的功率密度,并减小永磁体(PM)的质量。 可以通过保证Q轴磁通路径来实现与磁阻扭矩的增加以及增加定子绕组的匝数引入闭合槽设计。 此外,功率密度从降低堆叠长度提前。 考虑到D轴的损耗和反应场产生的热磁铁设计,因为HEV的电动机被放置有发动机,该发动机产生高热量。 本文通过基于分析和实验的现有模型和修改模型的比较来验证。

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