同步磁阻电机:理论、设计和在牵引应用中的潜在应用

B. Ban, S. Stipetić, Mario Klanac
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引用次数: 12

摘要

永磁体价格的波动提高了汽车行业寻找替代电机设计的兴趣。提出的替代方案是同步磁阻电机(SyRM)及其衍生产品,辅助同步磁阻电机(PMASR)。这些解决方案依赖于高磁阻转矩,因此理论上转子结构中不需要磁铁材料。本文涵盖磁阻电机的理论背景、转子参数化、设计方案、结构分析和优化。商业上可用的牵引磁阻电机的应用进行了研究。船舶和货运牵引和商用车动力起飞被选为应用领域。最后,比较了理想SyRM、铁氧体和钕PMASR在不同显着率下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronous Reluctance Machines: Theory, Design and the Potential U se in Traction Applications
The volatilities in the permanent magnet price have raised interest within the automotive industry for finding substitute electric machine designs. The proposed alternatives are synchronous reluctance machines (SyRM) and its derivatives, assisted synchronous reluctance (PMASR) machines. These solutions rely on high reluctance torque thus theoretically needing no magnet material in the rotor structure. This paper covers reluctance machine theoretical background, rotor parametrization, design alternatives, structural analysis, and optimization. Commercially available traction reluctance machines applications have been investigated. Marine and freight traction and commercial vehicle power take-off have been selected as application niches. Finally, a performance comparison for different saliency ratios of the ideal SyRM, ferrite and neodymium PMASR has been conducted.
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