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A novel variable flux memory machine with series hybrid magnets

机译:带有串联混合磁体的新型可变磁通存储机

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This paper proposes a novel variable flux memory (VFM) machine, in which the “constant” permanent magnet (PM) (CPM) with high coercive force and the “variable” PM (VPM) with low coercive force are alternatively located in the interior-PM (IPM) rotor. Thus, the VPMs and CPMs are magnetically connected in series, with which the CPMs can assist the VPMs to withstand the unintentional demagnetization caused by armature reaction. Therefore, a high armature current can be applied to the machine. Meanwhile, the reluctance torque is retrieved. Thus, a high torque density can be obtained. Based on two-dimensional (2-D) finite element (FE) analysis, the electromagnetic performance of the proposed VFM machine in two extreme magnetization states is firstly evaluated in detail. Then, the demagnetization and re-magnetization characteristics are investigated, in which the working points of VPMs are illustrated. Furthermore, the advantages of improved efficiency of the proposed VFM machine are demonstrated. A prototype machine is manufactured and tested to validate the predictions.
机译:本文提出了一种新颖的可变磁通记忆(VFM)机器,其中高矫顽力的“恒定”永磁体(PM)(CPM)和低矫顽力的“可变” PM(VPM)交替放置在内部-PM(IPM)转子。因此,VPM和CPM串联磁连接,借助CPM,CPM可以帮助VPM承受电枢反应引起的意外退磁。因此,可以向电机施加高电枢电流。同时,检索磁阻转矩。因此,可以获得高转矩密度。基于二维(2-D)有限元(FE)分析,首先详细评估了所提出的VFM机器在两种极端磁化状态下的电磁性能。然后,研究了退磁和复磁特性,其中说明了VPM的工作点。此外,证明了所提出的VFM机器的效率提高的优点。制造并测试了原型机,以验证预测结果。

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