首页> 外文会议>11th International Conference on Electrical Machines and Systems(第11届国际电机与系统会议)论文集 >Novel Force Ripple Reduction Method for a Moving-Magnet Linear Synchronous Motor with a Segmented Stator
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Novel Force Ripple Reduction Method for a Moving-Magnet Linear Synchronous Motor with a Segmented Stator

机译:分段定子的动磁直线同步电动机降力纹波的新方法

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This paper concerns the analysis of and force ripple reduction method for a moving-magnet linear motor with a segmented stator. The system consists of multiple individually excited three-phase stator segments with an iron core and coils with concentrated windings and one translator with permanent magnets. Because of the segmentation of the stator, the translator experiences force ripples when it moves from one stator segment to the next. A segment of the structure, consisting of one stator segment and one translator, has been analyzed using 2D and 3D FEM and the sources of the force ripples have been identified. A novel commutation algorithm, which calculates the threephase currents based on the EMF waveforms, to compensate the force ripples has been implemented, experimentally verified, and compared to a traditional (dq0-based) commutation algorithm.
机译:本文研究了分段定子动磁直线电动机的分析和力纹减小方法。该系统由具有铁芯的多个单独励磁的三相定子线段和带有集中绕组的线圈以及一个带有永磁体的变压器组成。由于定子的分段,当转换器从一个定子段移动到另一个定子段时,它会经历力波动。已使用2D和3D有限元分析了该结构的一部分,该部分由一个定子部分和一个转换器构成,并且已识别出力波动的来源。一种新颖的换向算法已实现,通过实验验证并与传统的(基于dq0的)换向算法进行了比较,该换向算法可基于EMF波形计算三相电流,以补偿力纹波。

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