线性开关磁通电机推力脉动优化方法

I. Eguren, G. Almandoz, A. Egea, P. Madina, A. J. Escalada
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引用次数: 0

摘要

线性开关磁通电机由于其高推力密度和永磁体抗扰性,是一种非常有前途的技术。然而,它们通常必须处理高缓冲力和高推力波纹。在文献中,通过在机器的末端放置额外的永磁体来减少推力波动。然而,这种磁铁的加入可能会带来更大的缓冲力涟漪。本文提出了一种末端磁体尺寸确定的新方法。磁体的位置和大小通过遗传算法进行优化。结果表明,采用这种新方法,基本开关磁通机的推力脉动减小了64%,峰对峰抑制力减小了65%,末端磁体体积减小了66%。
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THRUST RIPPLE OPTIMISATION METHOD FOR LINEAR SWITCHED-FLUX MACHINES
Linear switched-flux machines are a very promising technology thanks to their high thrust density and permanent magnet immunity. However, they usually have to deal with a high detent force and a high thrust force ripple. The thrust force ripple has been reduced in the literature by placing additional permanent magnets in the ends of the machine. Nevertheless, this addition of magnets may bring an increased detent force ripple. In this paper, a new approach for the sizing of the end magnets is presented. The position and size of the magnets are optimised with a genetic algorithm. The results show that with this new approach, the thrust ripple of a basic switched-flux machine can be reduced in 64 %, while also lowering the peak to peak detent force in 65 % and the volume of the end magnets in 66 %.
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