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Influence of Edge Permanent-Magnet Shape on the Performance of an Arc-Linear Permanent-Magnet Synchronous Machine

机译:边缘永磁体形状对电弧线性永磁同步电机性能的影响

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摘要

A kind of arc-linear permanent-magnet synchronous machine (AL-PMSM) used for scanning system, which requires high positioning accuracy, high response performance, and wide scanning range, is proposed and researched. Due to the finite length of stator core and rotor core, the AL-PMSM suffers from stator end effect and rotor end effect. The cogging torque caused by stator end effect can be reduced significantly by stator length optimization, PM shape optimization, and so on. The cogging torque caused by rotor end effect is mainly analyzed and reduced in this paper. The rotor end effect occurs when the rotor end region is close to the stator end region and the influence of rotor end effect is mainly two pole pitches. In order to reduce the cogging torque caused by rotor end effect, shape optimization of the edge permanent magnets, especially the first edge PM and second edge PM, is researched and compared. After optimization, the smooth scanning range is improved from ±47.8° to ±56.2° by 17.6% with the peak-to-peak value of cogging torque less than 0.19 Nm. The effectiveness of the optimization method is verified by the finite-element method.
机译:提出并研究了一种定位精度高,响应性能好,扫描范围宽的用于扫描系统的弧线永磁同步机(AL-PMSM)。由于定子铁心和转子铁心的长度有限,AL-PMSM受到定子端效应和转子端效应的困扰。通过定子长度优化,PM形状优化等,可以显着降低由定子端效应引起的齿槽转矩。本文主要分析和减小了由转子末端效应引起的齿槽转矩。当转子端部区域靠近定子端部区域时发生转子端部效应,并且转子端部效应的影响主要是两个极距。为了减小由转子端效应引起的齿槽转矩,研究并比较了边缘永磁体的形状优化,尤其是第一边缘PM和第二边缘PM。经过优化后,齿槽转矩的峰-峰值小于0.19 Nm,平滑扫描范围从±47.8°提高到±56.2°17.6%。通过有限元方法验证了该优化方法的有效性。

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