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Reduction of the Cogging Force at the Outlet Edge of a Stationary Discontinuous Primary Linear Synchronous Motor

机译:减少固定式不连续初级直线同步电动机出口边缘的齿槽力

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摘要

Recently, permanent-magnet-type linear synchronous motors (PM-LSMs) have been used as a driving source of transportation systems, to satisfy requirements such as speeding up of transportation systems and also to simplify maintenance. The authors' laboratory has proposed a stationary discontinuous primary PM-LSM in which the primary is engaged only when accelerated and decelerated operation is necessary, in order to resolve the problem of higher costs, when PM-LSM is used with long-distance transportation systems in factories. However, the stationary discontinuous primary PM-LSM contains the outlet edges which always exist as a result of the discontinuous arrangement of the primary. These edges become a problem, because the cogging force that they exert influences the controllability of the motor. This paper presents the results of an experimental examination and three-dimensional (3-D) numerical analysis by the finite-element method (FEM) of the cogging force exerted by the outlet edge. Moreover, we deformed the shape of the primary to decrease the cogging force at the outlet edge, and the results are examined using 3-D numerical analysis by the FEM
机译:近年来,永磁型线性同步电动机(PM-LSM)已经用作运输系统的驱动源,以满足诸如加速运输系统的要求并且还简化了维护。作者的实验室提出了一种固定的不连续初级PM-LSM,其中只有在需要加速和减速操作时才啮合初级PM-LSM,以解决当PM-LSM与长途运输系统一起使用时较高的成本问题。在工厂。但是,固定的不连续初级PM-LSM包含出口边缘,由于初级的不连续布置,出口边缘始终存在。这些边缘成为问题,因为它们施加的齿槽力影响电动机的可控制性。本文介绍了通过有限元方法(FEM)对出口边缘施加的齿槽力进行的实验检查和三维(3-D)数值分析的结果。此外,我们变形了原边的形状以减小出口边缘的齿槽力,并通过有限元法使用3-D数值分析来检验结果

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