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An Induction Motor FEM-Based Comparative Study: Analysis of Two Topologies

机译:基于电动机对比的比较研究:两个拓扑分析

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The most important component of electric traction chain is the traction motor, especially the Induction Motor 'IM' type for its multiple advantages such as the best reliability, reduced cost maintenance, ruggedness, higher efficiency reduced starting time compared to thermal motor traction and high starting torque. Rotor slot design of the IM for electric vehicle drives is investigated in this paper because improper rotor slot design will lead to bad torque performance of the IM. Calculations, using Finite Element Method 'FEM' analysis, for magnetic field density and magnetic flux are carried, by simulation using FEMM software in order to identify the IM parameters allowing the diagnostic of its defaults. In this paper, we present a comparative study of the two design structures of IM by varying the shape slots based on FEM. Simulation results prove that the optimal form of rotor slots is the round shape since the gain in torque ripple peak to peak may reach 40% compared to rectangular one.
机译:电动牵引链最重要的成分是牵引电机,特别是感应电机'IM'类型,其多种优点,如最佳可靠性,降低成本维护,坚固性,更高的起始时间与热电电机牵引和高启动相比扭矩。本文研究了电动车驱动器的IM的转子槽设计,因为转子槽设计不当会导致IM的扭矩性能差。通过使用FEMM软件进行仿真,使用有限元方法对FEM'分析进行磁场密度和磁通量的计算,以识别允许诊断其默认值的IM参数。在本文中,我们通过改变基于FEM的形状槽来介绍IM的两个设计结构的比较研究。仿真结果证明了转子槽的最佳形式是圆形,因为与矩形的扭矩脉动峰的增益可以达到40%。

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