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Effect of Stator Winding Connection on Performance of Five-Phase Linear Induction Machines

机译:定子绕组连接对五相线性感应机器性能的影响

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In electric traction, Linear Induction Motors (LIMs) have become a competitive alternative, especially for low speed applications where machines with short stators are commonly used. Due to driving dynamics tolerances, LIMs are characterized by their relatively high magnetizing current. Employing multiphase stator winding design may be a viable technique to reduce the current per phase, which reduces the stress on the power electronics converter. Moreover, due to the open-ended construction of the linear motors, the phase currents in LIM experience a notable degree of unbalance even under a balanced supply. Therefore, the additional degrees of freedom offered by multiphase systems can be exploited to ensure balanced stator currents, which expectedly improves the overall machine performance. In the available literature and for rotary induction motors, the stator winding connection of a multiphase machine has shown a notable impact on the machine performance under fault conditions. In this paper, the effect of stator connection on the performance of a five-phase LIM is investigated. A five-phase prototype LIM is designed and simulated using 2D finite element simulations. Experimental verification is also provided to validate the theoretical findings. The introduced study compares two connections, namely, star and pentagon connections under both healthy and open-phase cases.
机译:在电动牵引力中,线性感应电动机(LIMS)已成为竞争的替代品,特别是对于常用具有短定子的机器的低速应用。由于驱动动力学公差,LIMS的特征在于它们相对高的磁化电流。采用多相定子绕组设计可以是可行的技术,以减少每相电流,这降低了电力电子转换器上的应力。此外,由于线性电动机的开放式结构,即使在平衡供应下,LIM中的相电流也会经历显着的不平衡程度。因此,可以利用多相系统提供的额外自由度以确保平衡定子电流,预期改善整体机器性能。在可用的文献和旋转感应电动机中,多相机的定子绕组连接对故障条件下的机器性能显示出显着的影响。本文研究了定子连接对五相LIM的性能的影响。使用2D有限元模拟设计和模拟五相原型LIM。还提供了实验验证以验证理论发现。引入的研究比较了两个连接,即明星和五角大楼在健康和开放式阶段的情况下的连接。

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