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Permanent Magnet Volume Minimization in Permanent Magnet Assisted Synchronous Reluctance Motors

机译:永磁体积最小化永磁体辅助同步磁阻电动机

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In the recent years the study on new motor topologies for automotive applications has found an increasing interest. The environmental impact of conventional internal combustion engine, together with the increasing demand and the cost of the oil, are two of the main reasons that makes electric motors an attractive alternative. Machines that employ interior permanent magnet configurations are widely recognized as good performance motors for traction applications. On the other hands, the exponential increase of the price of rare earths magnets in the last years, is making rare earth motors a very expensive solution. This encourage the research of low cost, rare earth free alternatives, represented by the permanent magnet assisted synchronous reluctance machines. Three different magnet dimension configurations have been considered. This research highlights the influence and benefits of the insertion of ferrite on the machine performance, emphasizing the importance of a careful evaluation of the magnet quantity in order to optimize the performance and reduce the total cost.
机译:近年来,对汽车应用的新电机拓扑的研究发现了越来越兴趣。传统内燃机的环境影响与越来越多的需求和石油成本,是推动电动机有吸引力的替代品的两个主要原因。采用内部永磁结构的机器被广泛认为是用于牵引应用的好性能电机。另一方面,过去几年稀土磁铁价格的指数增加,正在制作稀土电机是非常昂贵的解决方案。这促进了由永磁辅助同步磁阻机器代表的低成本,稀土自由替代品的研究。已经考虑了三种不同的磁尺寸配置。该研究突出了铁氧体对机器性能的影响和益处,强调了仔细评估磁体量的重要性,以优化性能并降低总成本。

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