内表面永磁牵引机设计的比较研究

Rong Yang, N. Schofield, A. Emadi
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引用次数: 13

摘要

内部永磁(IPM)无刷(同步)电机是商用混合动力或全电动汽车(hev / ev)的一种流行技术选择,例如丰田普锐斯、通用雪佛兰Volt、雷克萨斯LS、日产Leaf。与具有表面安装永磁体的无刷电机相比,IPM拓扑结构具有显著的扭矩贡献、最小的磁体质量、抗退磁、广泛的磁弱能力和高的运行效率。本文介绍了一项比较研究的结果,该研究评估了在日产Leaf EV中实施的示例IPM机器的设计和性能属性,并将其与在主要日产Leaf机器尺寸限制内设计的表面永磁(SPM)机器进行了比较。日产Leaf IPM牵引机已被广泛分析,并且有许多公共领域的数据可用于该机器。因此,选择此机器作为评估SPM机器的代表性基准设计。通过有限元分析(FEA)对日产Leaf机器进行了分析,并通过公布的实验测试数据证实了结果。然后将该程序应用于SPM设计并对结果进行比较。该研究说明并得出结论,IPM和SPM拓扑都具有非常相似的功能,在设计选项之间只有细微的差异。结果突出了有趣的制造选择和材料使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study between interior and surface permanent magnet traction machine designs
Interior permanent magnet (IPM) brushless (sychronous) machines are a popular technology choice in commercial hybrid- or all-electric vehicles (HEVs/EVs), such as the Toyota Prius, GM Chevy Volt, Lexus LS, Nissan Leaf, for example. Much is claimed of IPM topologies in terms of their saliency torque contribution, minimum magnet mass, demagnetisation withstand, wide flux-weakening capability and high operational efficiencies when compared to brushless machines having surface mounted permanent magnets. This paper presents the findings of a comparative study assessing the design and performance attributes of an example IPM machine implemented in the Nissan Leaf EV, when compared to a surface permanent magnet (SPM) machine designed within the main Nissan Leaf machine dimensional constraints. The Nissan Leaf IPM traction machine has been widely analysed and there is much public domain data available for the machine. Hence, this machine is chosen as a representative benchmark design against which the SPM machine is assessed. The Nissan Leaf machine is analysed via finite element analysis (FEA) and the results confirmed via published experimental test data. The procedure is then applied to a SPM design and results compared. The study illustrates and concludes that both the IPM and SPM topologies have very similar capabilities with only subtle differences between the design options. The results highlight interesting manufacturing options and materials usage.
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