永磁电机可以在不改变绕组连接的情况下换极,效率高

K. Sakai, K. Matsuda, N. Yuzawa
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引用次数: 6

摘要

为了实现电器和电动汽车的节能,必须降低电机变速运行的功耗。我们开发了一种技术,改变永磁体(PM)电机的两极取决于速度。在这里,我们提出了一种新型永磁电机,在不改变绕组连接的情况下改变极数,并讨论了其基本结构和原理。利用所提出的电机的d轴电流进行磁化来实现变极。我们的分析结果证实,与传统的永磁电机相比,变极永磁电机减少了36%的铁损失,并在很宽的速度范围内提高了效率。因此,所提出的电机适用于变速驱动系统,以实现高性能和高效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Permanent magnet motors capable of pole-changing without changing the connection of the windings for high efficiency
To realize energy saving in electrical appliances and electric vehicles, it is necessary to reduce the power consumption of motors operating at variable speeds. We developed a technique that changes the poles of a permanent magnet (PM) motor depending on the speed. Here, we propose a novel PM motor that changes the number of poles without changing the winding connections and discuss its basic configurations and principles. Pole-changing is accomplished using the d-axis current of the proposed motor for magnetization. Our analysis results confirm that the pole-changing PM motor reduces iron loss by 36% over a conventional PM motor and increases efficiency over a wide range of speeds. Hence, the proposed motor is suitable for use in variable-speed drive systems to achieve high performance and efficiency.
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