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Design and Analysis of a Variable-Flux Pole-Changing Permanent Magnet Memory Machine

机译:变磁极改变式永磁存储机的设计与分析

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摘要

This paper proposes a new topology of a variable-flux pole-changing permanent magnet (PM) memory machine. The fractional-slot concentrated windings are employed in the stator side, which can increase the utilization ratio of winding under different pole modes. The neodymium–iron–boron PM poles and aluminum–nickel–cobalt (AlNiCo) PM poles are hybridized in the rotor side. The proposed machine features the capability of its pole number to switch back and forth between six poles and two poles through changing the magnetization directions of AlNiCo PMs via the stator winding. Besides, the air gap flux can be flexibly adjusted by varying the amplitudes of magnetization current pulses. The topology and design principle of the machine are described in detail, and the electromagnetic characteristics, including magnetic field distributions, air-gap flux density, as well as back electromotive force (EMF), in different operation modes are computed using a finite-element method. Due to the existence of the fifth harmonic component of back EMF, the torque quality is improved through injecting the fifth harmonic current under different magnetized levels of AlNiCo PMs. Besides, the field regulation capabilities in both the pole modes are analyzed.
机译:本文提出了一种可变通量变极永久磁铁(PM)存储器的新拓扑。定子侧采用分数槽集中绕组,可以提高不同极点模式下绕组的利用率。钕铁硼永磁磁极和铝镍钴钴(AlNiCo)永磁磁极在转子侧混合在一起。拟议中的电机具有通过定子绕组改变AlNiCo PMs的磁化方向,使其极数在六极和两极之间来回切换的能力。此外,可以通过改变磁化电流脉冲的幅度来灵活地调节气隙通量。详细介绍了电机的拓扑结构和设计原理,并使用有限元计算了不同运行模式下的电磁特性,包括磁场分布,气隙磁通密度以及反电动势(EMF)。方法。由于存在反电动势的五次谐波分量,通过在不同磁化水平的AlNiCo永磁体下注入五次谐波电流,可以改善转矩质量。此外,分析了两种极点模式下的场调节能力。

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