An approach to reduce the cogging force in tubular linear PM synchronous machines

Amal Souissi, I. Abdennadher, A. Masmoudi
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引用次数: 9

Abstract

The paper is aimed at an approach to reduce the cogging force in tubular linear permanent magnet synchronous machines (T-LPMSMs). An analytic prediction of the air gap flux density distribution is developed in a first step, considering the case of slottless machine and the case where the slotting effect is taken into consideration. The established model enables, thanks to a simple formulation, the assessment of the cogging force assuming an “infinite” length machine. Then, the influence of the end effect on the cogging force is investigated in the case of the real machine. The study is extended to a cogging force reduction approach devoted to a quasi-cancellation of the end effect. It consists in a two-step procedure, such that: (i) achieving a 2π/3-shift between the armature winding flux linkages by arranging the ratio of the stator pole pitch to the mover one, and (ii) balancing the amplitudes of these flux linkages by extending the stator magnetic circuit with teeth of appropriate dimensions. The cogging force prediction of the T-LPMSM following the quasi-cancellation of its end effect highlights the effectiveness of the proposed approach.
减小管状直线永磁同步电机齿槽力的方法
本文旨在研究减小管状直线永磁同步电机(T-LPMSMs)齿槽力的方法。首先对无开槽机和考虑开槽效应的情况下的气隙磁通密度分布进行了分析预测。由于公式简单,所建立的模型能够在假设“无限”长度的机器上评估齿槽力。然后,以实际机床为例,研究了端面效应对齿槽力的影响。该研究扩展到一种致力于拟消除末端效应的齿槽力减小方法。它由两个步骤组成,即:(i)通过安排定子极距与动子极距的比例,实现电枢绕组磁链之间的2π/3位移,(ii)通过用适当尺寸的齿延长定子磁路,平衡这些磁链的幅度。通过拟消去末端效应后的T-LPMSM齿槽力预测,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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