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A Novel Stator Flux-Concentrated Hybrid Permanent Magnet Memory Machine

机译:一种新型定子磁通集中式混合磁体存储器

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摘要

This article proposes a novel stator flux-concentrated hybrid permanent magnet memory machine (SFC-HPM-MM), which features that its armature windings, magnetizing coils, and U-shaped hybrid PMs are all located in stationary side. Besides, the salient rotor pole exhibits high robustness and simple manufacturing. The low-coercive-force (LCF) PM magnetization state (MS) can be regulated by temporarily applying a current pulse in magnetizing coils, which means that online magnetization variability can be achieved. Due to the consequent-pole hybrid PM arrangement, this new topology exhibits reduced required magnetization current level, good flux concentrated effect, and increased torque capability. The machine topology and operating principle are introduced first. Subsequently, the multi-objective genetic algorithm is adopted to optimize the design parameters of the proposed machine on the basis of optimizing rotor pole number. Finally, the electromagnetic performance of the machine is investigated by finite-element (FE) analysis, which confirms the feasibility of the proposed design.
机译:本文提出了一种新型定子芯浓缩混合磁体存储器(SFC-HPM-MM),其具有其电枢绕组,磁化线圈和U形杂交PMS的特征是固定侧。此外,突出的转子杆表现出高稳健性和简单的制造。通过临时施加磁化线圈中的电流脉冲来调节低矫顽力(LCF)PM磁化状态(MS),这意味着可以实现在线磁化变异性。由于杆式杂交PM布置,这种新拓扑结构表现出降低所需的磁化电流水平,良好的助熔剂浓缩效果,以及增加的扭矩能力。首先介绍机器拓扑和操作原理。随后,采用多目标遗传算法在优化转子极数的基础上优化所提出的机器的设计参数。最后,通过有限元(Fe)分析来研究机器的电磁性能,这证实了所提出的设计的可行性。

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