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首页> 外文期刊>Electric Power Applications, IET >Comparative study of the electromagnetic performance of switched flux permanent magnet machines
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Comparative study of the electromagnetic performance of switched flux permanent magnet machines

机译:开关磁通永磁电机电磁性能的比较研究

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摘要

Switched flux permanent magnet (SFPM) machines have significant potential for many industrial applications because of their doubly salient structure, similar to switched reluctance machines. In recent years, several novel SFPM machine topologies, such as multi-tooth, E-core and C-core, have been developed to reduce the usage of permanent magnet materials without sacrificing the torque capability. A comparative study of the electromagnetic performance of these topologies, together with conventional SFPM machines having different stator/rotor pole combinations, that is, 12/10, 12/13 and 12/14, is presented. In addition to open circuit and electromagnetic torque performance, their torque–speed characteristics are investigated and compared. It is found that for conventional SFPM machines, the higher the rotor pole number, the better the flux-weakening capability, and higher maximum speed can be achieved. In contrast, owing to high -axis inductance in the multi-tooth, E-core and C-core machines, infinite maximum speed can be obtained. Moreover, among all these machines, the multi-tooth machine has the highest flux-weakening factor, while the E-core machine exhibits the largest power capability. In addition to two-dimensional (2D) finite-element analysis (FEA), 3D-FEA is also performed accounting for the end effect. Finally, the torque–speed characteristics of prototype SFPM machines are measured to verify the FEA.
机译:开关磁通永磁体(SFPM)电机具有双重凸极结构,与开关磁阻电机类似,在许多工业应用中具有巨大的潜力。近年来,已经开发了几种新颖的SFPM机器拓扑,例如多齿,E型芯和C型芯,以在不牺牲扭矩能力的情况下减少永磁材料的使用。提出了对这些拓扑的电磁性能以及具有不同定子/转子磁极组合(即12 / 10、12 / 13和12/14)的常规SFPM机器的比较研究。除了开路和电磁转矩性能外,还研究并比较了它们的转矩-速度特性。可以发现,对于传统的SFPM机器,转子磁极数越高,磁通减弱的能力越好,并且最大转速也可以实现。相比之下,由于多齿,E芯和C芯机床中的高轴电感,可以获得无限的最大速度。此外,在所有这些机器中,多齿机器具有最高的磁通弱化系数,而E芯机器则具有最大的功率能力。除了二维(2D)有限元分析(FEA)外,还考虑了最终效果而执行3D-FEA。最后,对原型SFPM机器的扭矩-速度特性进行了测量,以验证FEA。

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