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Analysis of a Novel Hybrid-PM Variable-Flux Machine Using New Magnet Material CeFeB

机译:新型永磁材料CeFeB的新型混合PM变通量电机的分析

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摘要

Electric vehicle (EV) is a promising technology for saving fossil energy and reducing pollution. Hybrid-permanent-magnet (PM) variable-flux machine is a competitive candidate for EV propulsion since it has wide speed range and high efficiency at high-speed region. A novel hybrid-PM variable-flux machine with magnetic barriers is proposed in this paper, and a new magnet material CeFeB is used. The structure and operating principle are introduced, and different magnetization states of the machine are analyzed. The equivalent magnetic circuit model of the machine is established considering the influence of magnetic barriers, and the model is proven with good precision for the calculation of air gap flux density and PM operating point. The electromagnetic performances are analyzed, and compared with a traditional variable-flux machine. It is verified that the added magnetic barriers improve the distribution of air gap flux and load magnetization performance of the machine. The no-load back electromotive force, electromagnetic torque, speed range, and load magnetization ratio of the proposed scheme are all improved.
机译:电动汽车(EV)是节省化石能源和减少污染的有前途的技术。混合永磁(PM)可变磁通机是电动汽车推进技术的有力竞争者,因为它在高速区域具有较宽的速度范围和较高的效率。提出了一种新型的带有磁障的混合永磁变通量机,并使用了一种新型的磁性材料CeFeB。介绍了其结构和工作原理,并分析了电机的不同磁化状态。建立了电机的等效磁路模型,并考虑了磁障的影响,该模型已被证明具有很高的精度,可用于计算气隙磁通密度和PM工作点。分析了电磁性能,并与传统的可变磁通机进行了比较。可以证明,增加的磁障改善了气隙磁通的分布和机器的负载磁化性能。所提方案的空载反电动势,电磁转矩,速度范围和负载磁化率均得到改善。

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