Torque Ripple Improving and Analysis of Coil-winding Rotor of Magnetic Gear

Eui-Jong Park, Yong-Jae Kim
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引用次数: 0

Abstract

Magnetic gears have the same characteristics as mechanical gears, and each rotor does not come in contact, which is advantageous over mechanical gears in friction noise, heat generation, and maintenance. In addition, when the rotor using the coil-winding is applied, it is possible to control the output of the gear as well as to cut off its own drive in the emergency situation and to change its gear ratio. So the application of the magnetic gear is infinite. However, when the coil-winding rotor is used, cogging torque due to the attraction force between the permanent magnet and the iron core appears, which leads to an increase in the torque ripple component causing the rotor vibration. Therefore, in this paper, various shapes of the coil-winding rotor are analyzed to reduce the torque ripple of the rotor, and the optimum shape for reducing the torque ripple of the magnetic gear is presented.
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磁齿轮绕组转子转矩脉动改善及分析
磁性齿轮与机械齿轮具有相同的特性,并且每个转子都不接触,这在摩擦噪音,发热和维护方面优于机械齿轮。此外,当使用线圈绕组的转子时,可以控制齿轮的输出,并在紧急情况下切断其自身的驱动和改变其传动比。所以磁齿轮的应用是无限的。然而,当使用线圈绕组转子时,由于永磁体与铁芯之间的吸引力而产生齿槽转矩,导致转子振动的转矩脉动分量增加。因此,本文分析了线圈绕组转子的各种形状,以减小转子的转矩脉动,并提出了减小磁齿轮转矩脉动的最佳形状。
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