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Design of Ladder-Slit Secondaries and Performance Improvement of Linear Induction Motors for Urban Rail Transit

机译:城市轨道交通梯形缝辅助设计及直线感应电动机性能改进

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摘要

In order to improve the performance of linear induction motors for urban rail transit, the ladder-slit secondary is designed, and the performance of linear induction motors with the ladder-slit and flat-solid secondary is calculated and compared. First, for the ladder-slit secondary, the slot combination, widths of the secondary conductor, and side bar are designed. Second, the finite-element model of the linear induction motor with the ladder-slit secondary is developed, and the influence of vertical forces on widths of secondary conductors is presented. Third, the eddy current and the transversal air-gap flux density are compared when the ladder-slit and flat-solid secondaries are applied, respectively. Finally, experiments are carried out by test lines to validate the calculated results of the force and efficiency. It shows that the ladder-slit secondary can reduce the edge effect and improve the performance.
机译:为了提高城市轨道交通用直线感应电动机的性能,设计了梯形狭缝二次绕组,并比较了梯形狭缝和扁平实心二次直线感应电动机的性能。首先,对于梯形切口的次级,设计缝隙组合,次级导体的宽度和侧杆。其次,建立了带有阶梯狭缝的直线感应电动机的有限元模型,并提出了垂直力对次级导体宽度的影响。第三,分别比较了梯形狭缝和平面固体二次绕组时的涡流和横向气隙通量密度。最后,通过测试线进行实验以验证力和效率的计算结果。结果表明,梯形缝次级可以减少边缘效应,提高性能。

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