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A Novel Asymmetric Interior Permanent Magnet Synchronous Machine

机译:一种新型不对称内部永磁同步机

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摘要

In this paper, a novel asymmetric interior permanent magnet (AIPM) synchronous machine is proposed. Its asymmetric rotor topology, designated as 1.5-layer permanent magnet (PM) structure, features an asymmetric arrangement of the V-shape PMs and the spoke PMs, together with an asymmetric flux barrier located near the rotor surface in each pole. They are employed to utilize the magnetic-fieldshifting (MFS) effect for torque enhancement by reducing the current angle difference between peak PM and reluctance torque components. Effects of geometric parameters of the 1.5layer rotor design, namely asymmetry and pole arc of V-shape cavity as well as position and dimensions of flux barrier, on maximum torque and air-gap field are investigated. Three machines, i.e. the proposed 1.5-layer AIPM, a 1.5-layer symmetrical rotor topology IPM-I and a conventional single layer V-shape benchmark IPM-II are designed using the same stator, rotor diameters and PM usage by global parametric optimization. Their electromagnetic performance is compared. It confirms that the proposed AIPM has the highest maximum torque. It is also revealed that the torque enhancement is achieved by both 1.5-layer structure and MFS effect.
机译:在本文中,一种新颖的非对称内部永磁体(AIPM)同步机提出。其不对称转子拓扑结构,指定为1.5层永磁铁(PM)的结构,采用了V形的PM和轮辐PM的非对称布置,与位于各极的转子表面附近的非对称磁通屏障在一起。它们采用通过降低峰PM和磁阻转矩分量之间的当前角度差利用扭矩增强磁fieldshifting(MFS)的效果。所述1.5layer转子设计的几何参数,即不对称和V形空腔的极弧以及位置和磁通屏障的尺寸,在最大扭矩和气隙磁场的影响进行了研究。三台机器,即所提出的1.5层AIPM,1.5层对称的转子拓扑IPM-I和传统的单层V形基准IPM-II使用相同的定子,转子的直径和PM使用由全局参数优化设计的。它们的电磁性能进行了比较。它证实,所提出的AIPM具有最高的最大扭矩。它也表明,扭矩增强是通过两个1.5层结构和MFS效应来实现的。

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