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Performance comparison of partitioned stator machines with NdFeB and ferrite magnets

机译:带有NdFeB和铁氧体磁体的分区定子电机的性能比较

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Partitioned stator (PS) machines employ two separate stators to accommodate armature windings and permanent magnets (PMs) respectively, alleviating the stator space conflict in stator-PM machines and hence significantly boosting the torque density. However, the PM usage volume of PS machines is relatively large and the cost is high, which is undesirable for cost sensitive applications. In this paper, a PS machine employing ferrite PMs is presented, which can take the advantage of large space for PMs in PS machines as well as balance the performance and cost. The electromagnetic characteristics of an optimized ferrite PS machine and an optimized NdFeB PS machine are compared, together with a classic Prius2010 interior-PM (IPM) machine as a baseline for comparison. In addition, the economic issues are considered as well. The predicted results reveal that the NdFeB PS machine can produce much higher torque density but is more expensive than the Prius2010 IPM machine, whilst the ferrite PS machine can significantly reduce the cost and still exhibit comparable performance as the Prius2010 IPM machine and the highest torque per cost. The demagnetization behavior of ferrite PS machine is evaluated and a method to improve the demagnetization withstand capability is proposed. A pair of scaled prototypes are manufactured to validate the finite element predictions.
机译:分段定子(PS)电机采用两个单独的定子来分别容纳电枢绕组和永磁体(PM),从而减轻了定子-PM电机中的定子空间冲突,从而显着提高了转矩密度。然而,PS机器的PM使用量相对较大并且成本很高,这对于成本敏感的应用是不希望的。在本文中,提出了一种采用铁氧体永磁体的PS机器,该机器可以利用PS机器中PM的较大空间,并在性能和成本之间取得平衡。比较了优化的铁氧体PS机器和优化的NdFeB PS机器的电磁特性,并将经典的Prius2010内部PM(IPM)机器作为比较的基准。另外,还考虑经济问题。预测结果表明,NdFeB PS机器可产生更高的扭矩密度,但比Prius2010 IPM机器更昂贵,而铁氧体PS机器则可显着降低成本,并且仍具有与Prius2010 IPM机器相当的性能,并且每转最高扭矩成本。对铁氧体PS机的退磁性能进行了评估,并提出了一种提高其抗退磁能力的方法。制造了一对比例缩放的原型以验证有限元预测。

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