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Verification of the outlet edge cogging force at the Permanent Magnet Linear Synchronous Motor for long-distance transportation system

机译:验证长距离运输系统中的永磁直线同步电动机的出口边缘齿槽效应

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Recently, in order to resolve the problem of high cost, we have proposed the stationary discontinuous armature Permanent Magnet Linear Synchronous Motor (PM-LSM) in which the armature is engaged only when accelerated and decelerated operations are necessary, when PM-LSM is used with long-distance transportation systems in factories. However, the stationary discontinuous armature PM-LSM contains the outlet edges which always exist as a result of the discontinuous arrangement of the armature. For this reason, cogging force generated between the “entrance end” and the “exit end” has become a problem. Therefore, we have examined the outlet edge cogging force by deforming the shape of the outlet edge at the armature and installing the auxiliary pole at the mover in order to minimize the cogging force generated when the armature is arranged discontinuously. This paper presents the results of 2-D numerical analysis by FEM of the cogging force exerted by the outlet edge.
机译:近来,为了解决高成本的问题,我们提出了一种固定式不连续电枢永磁直线同步电动机(PM-LSM),其中,当使用PM-LSM时,仅当需要加速和减速操作时才啮合电枢。在工厂设有长途运输系统。但是,固定的不连续电枢PM-LSM包含由于电枢的不连续布置而总是存在的出口边缘。因此,在“入口端”和“出口端”之间产生的齿槽力成为问题。因此,我们通过使电枢上的出口边缘的形状变形并在动子上安装辅助极来检查出口边缘的齿槽效应,以使电枢不连续地布置时产生的齿槽力最小化。本文介绍了通过有限元法对出口边缘施加的齿槽力进行二维数值分析的结果。

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