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Investigation of the Magnetic Circuit and Performance of Less-Rare-Earth Interior Permanent-Magnet Synchronous Machines Used for Electric Vehicles

机译:电动汽车用稀土稀土内部永磁同步电机的磁路及性能研究

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The less-rare-earth interior permanent-magnet synchronous machines (LRE-IPMSMs), which have the advantages of high power density, high efficiency, and low cost, are promising candidates for electric vehicles (EVs). In this paper, the equivalent magnetic circuit (EMC) of LRE-IPMSM is established and analyzed to investigate the machine design principles, and then the performance of an optimized machine is analyzed. Firstly, the equivalent magnetic circuits of the LRE-IPMSM are established by taking the saturation effect into consideration. Secondly, the effects of geometric parameters, such as the permanent-magnet (PM) width, the PM thickness, the flux barrier thickness, the flux barrier span angle, and the bridge width, on no-load flux, q -axis flux, and d -axis flux are investigated, respectively. The results calculated by the EMC method and finite-element analysis (FEA) are analyzed and compared, which proves the effectiveness of the EMC method. Finally, an optimized design of LRE-IPMSM obtained by the magnetic circuit analyses is proposed. The electromagnetic performances and mechanical strength of the optimized LRE-IPMSM are analyzed and verified, respectively.
机译:具有高功率密度,高效率和低成本的优点的较少稀土的内部永磁同步电机(LRE-IPMSM)是电动汽车(EV)的有希望的候选者。本文建立并分析了LRE-IPMSM的等效磁路(EMC),以研究机器的设计原理,然后分析优化的机器的性能。首先,通过考虑饱和效应来建立LRE-IPMSM的等效磁路。其次,几何参数对空载磁通,q轴磁通的影响,例如永磁体(PM)宽度,PM厚度,磁通势垒厚度,磁通势垒跨度角和电桥宽度,分别研究了d轴通量和d轴通量。通过对EMC方法和有限元分析(FEA)计算的结果进行了分析和比较,证明了EMC方法的有效性。最后,提出了通过磁路分析获得的LRE-IPMSM的优化设计。对优化的LRE-IPMSM的电磁性能和机械强度分别进行了分析和验证。

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