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Cogging force computation for permanent magnet linear motor using numerical Schwarz-Christoffel mapping

机译:基于数值Schwarz-Christoffel映射的永磁直线电机齿槽力计算

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摘要

We present an effective method based on Schwarz-Christoffel (SC) mapping for computing the cogging force of a permanent magnet linear motor (PMLM). The permanent magnets (PMs) are substituted by equivalent line currents at Gaussian integration points. Using numerical SC mapping, one pole-pair of the PMLM is mapped to a configuration where the magnetic field can be solved analytically. The cogging force due to the slotting effect is computed by the Maxwell stress tensor (MST) method. The results are verified with the finite element method (FEM).
机译:我们提出了一种基于Schwarz-Christoffel(SC)映射的有效方法,用于计算永磁直线电机(PMLM)的齿槽力。永磁体(PM)在高斯积分点处被等效线电流代替。使用数值SC映射,将PMLM的一个磁极对映射到一种可以解析地解决磁场的配置。由于开槽效应而产生的齿槽力是通过麦克斯韦应力张量(MST)方法计算的。使用有限元方法(FEM)验证了结果。

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