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A Winding-Switching Concept for Flux Weakening in Consequent Magnet Pole Switched Flux Memory Machine

机译:磁极开关式磁通存储机中磁通减弱的绕组切换概念

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In this paper, a consequent magnet pole switched flux memory machine (CMP-SFMM) is developed to improve the torque density and simplify the mechanical manufacturing with less magnet usage compared with its hybrid magnet counterparts. Nevertheless, owing to the significant magnetic saturation, the flux-adjustable range appears to be relatively limited, which will deteriorate the flux-weakening performance. Therefore, a novel winding-switching concept is introduced to deal with its limited flux-weakening capability, i.e., the magnetizing coils will alternatively serve as the secondary armature winding after the reversal of magnetization directions of low-coercive force magnets, thus resulting in the flux-linkage cancellation within the same phase. The machine topology, flux-weakening principle, and integrated circuit design are addressed. Then, the electromagnetic characteristics of CMP-SFMM with or without winding-switching are investigated and compared, which confirms the feasibility of the flux-weakening method.
机译:在本文中,开发了一种随之而来的磁极开关式磁通存储机(CMP-SFMM),与混合磁体相比,它可以提高扭矩密度并简化机械制造,同时减少磁体的使用。然而,由于显着的磁饱和,通量可调节范围似乎相对有限,这将削弱通量减弱性能。因此,引入了一种新颖的绕组切换概念以应对其有限的弱磁通能力,即,在低矫顽力磁体的磁化方向反转之后,磁化线圈将替代地用作次级电枢绕组,从而导致同一相内的磁链消除。论述了机器拓扑,弱磁原理和集成电路设计。然后,对具有或不具有绕组开关的CMP-SFMM的电磁特性进行了研究和比较,从而证实了弱磁化方法的可行性。

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