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Reduction of Cogging Force in a Linear Flux-Switching Permanent-Magnet Brushless AC Machine for Direct-Drive Applications

机译:降低用于直接驱动应用的线性磁通开关永磁无刷交流电机中的齿槽效应

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摘要

The linear flux-switching permanent-magnet (LFSPM) machine is a novel linear brushless ac machine with magnets and armature windings in the short mover, which is a competitive candidate for direct-drive applications due to the inherent sinusoidal back-electromotive force and high force capability. However, the resulting cogging force is serious because of the double salient structure. In this paper, a one-tooth model for the cogging force mechanism and a method for cogging force analysis are introduced. Moreover, an optimization method for minimizing the cogging force and an optimized design for the LFSPM machine are proposed. Both the finite-element analysis and the test measurement verify that the analytical method and the optimization technique are correct and effective, and these methods can be applied to cogging force analysis in the other double salient permanent-magnet machines.
机译:线性磁通量开关永磁(LFSPM)电机是一种新型的线性无刷交流电机,在短动子中具有磁体和电枢绕组,由于其固有的正弦反向电动势和高的正弦波功率,因此它是直接驱动应用的竞争者。力量能力。但是,由于具有双重凸部结构,因此产生的齿槽力严重。本文介绍了齿槽力机构的单齿模型和齿槽力分析方法。此外,提出了一种用于最小化齿槽力的优化方法以及针对LFSPM机器的优化设计。有限元分析和试验测量都证明了该分析方法和优化技术是正确有效的,这些方法可用于其他双凸极永磁电机的齿槽力分析。

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