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首页> 外文期刊>IEEE Transactions on Industry Applications >Analysis of competing topologies of linear induction machines for high-speed material transport systems
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Analysis of competing topologies of linear induction machines for high-speed material transport systems

机译:分析用于高速物料输送系统的线性感应机的竞争拓扑

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This paper investigates longitudinal and transverse flux linear motor topologies for very high acceleration rate (3-4 g), and high speed (120 km/h), material transport systems which have significant technical and economic potential, in flexible manufacturing environments. The general topology under consideration is a double-sided, short-moving-secondary/long-fixed-primary, linear induction motor (LIM). The transport system requirements place severe demands upon the machine topology. The orientation of the magnetic flux (i.e., longitudinal versus transverse) has a significant impact upon these concerns and is thus a major analytical focus of this paper. A hybrid system topology consisting of a longitudinal-flux orientation within straight sections and a transverse-flux orientation within curvilinear sections appears to offer the best of both topologies. The intended contribution of this paper is a detailed comparison of LIM topologies leading to a better design selection for very high performance systems.
机译:本文研究了纵向和横向磁通线性电动机的拓扑结构,这些结构在极高的加速度(3-4 g)和高速(120 km / h)的情况下,在柔性制造环境中具有重大的技术和经济潜力。正在考虑的一般拓扑是双面,短运动的次级/长固定的初级线性感应电动机(LIM)。运输系统要求对机器拓扑结构提出了严格的要求。磁通量的方向(即纵向与横向)对这些问题有重大影响,因此是本文的主要分析重点。由直线部分内的纵向通量方向和曲线部分内的横向通量方向组成的混合系统拓扑似乎提供了两种拓扑中的最佳功能。本文的目的是对LIM拓扑进行详细的比较,从而为非常高性能的系统提供更好的设计选择。

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