HEV IPM机床热设计中机床布局与集成的探讨

Christian Paar, A. Muetze
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引用次数: 1

摘要

最先进的电机设计方法使用已公布的功率或扭矩与电磁和电流负载的相关性,可用于不同的冷却方法。然而,这些相关性对于混合动力汽车中使用的电机的适用性是有限的,因为它们与整个系统的集成程度不同。以集成启动发电机和电动后桥驱动为例,研究了混合动力汽车应用中的热环境,即机器外部的散热器和热源对机器热设计的影响。我们通过机器的气隙剪切应力的比例因子来量化这些影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discussion of machine placement and integration on the thermal design of HEV IPM machines
State-of-the-art design methods for electric machines use published correlations of either power or torque with electromagnetic and current loading, available for different cooling approaches. However, the applicability of these correlations for electric machines used within HEVs, with their different degrees of integration into the overall system, is limited. Using an integrated starter-generator and an electric rear axle drive as example case applications, we study the influences of the thermal environment within the hybrid electric vehicle application, i.e., heat sinks and sources external to the machine, on the thermal design of the machines. We quantify these influences by scaling factors for the air gap shear stress of the machine.
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