利用磁体形状减小轴向伺服电机电流密度和转矩脉动的研究

Junho Kang, Hyunwoo Kim, D. Jung, Chang-Sung Jin, S. Won, Ju Lee
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引用次数: 1

摘要

永磁同步电机广泛应用于工业、军事、医疗等精密控制领域。轴向磁通驱动的轴向电机与径向电机相比具有较高的功率密度和几何优势。然而,轴向电机的缺点是有一个大的转矩脉动。因此,轴向电机在要求高精度的领域,例如伺服电机,可能是不利的。本文是关于轴向型伺服电机的改进设计。一般来说,由于电流密度与热损失成正比,所以有必要减小它。通过增大电机直径选择高磁负载,可以降低电流密度。但转矩脉动随直径增大而增大。为此,提出了一种给永磁体施加极比和采用哈尔巴赫结构来减小转矩脉动的方法。通过比较两种方法的输出特性,设计出性能更好的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study on Axial Type Servo Motor for Current Density and Torque Ripple Reduction through Magnet Shape
PMSM is used in various fields such as industry, military, and precision control like medical. Axial type motors driven through axial magnetic flux have high power density and geometrical advantages differentiated from radial type motors. However, the axial type motor has the disadvantage of having a large torque ripple. Therefore, the axial type motor may be disadvantageous in a field requiring high precision, such as a servo motor. This paper is about the improved design of the axial type servo motor. In general, since the current density is proportional to the heat loss, it is necessary to reduce it. Selecting a high magnetic load by increasing the motor diameter, the current density can be lowered. However, the torque ripple tends to increase cause to diameter. Therefore, to reduce torque ripple, a methods of giving a pole ratio to a permanent magnet and applying halbach structure are presented. And by comparing the output characteristic according to the two methods, the design was carried out through a structure with better performance.
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