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A stator turn fault tolerant strategy for induction motor drives in safety critical applications

机译:安全关键应用中的感应电动机驱动器的定子变阻策略

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A turn fault in the stator windings of an induction motor (IM) causes a large circulating current to flow in the shorted turns and generates excessive heat. Without limiting the heat, which is proportional to the square of the circulating current, the fault generally develops into catastrophic phase. In this paper, it is shown that the circulating current in the shorted turns is strongly related to the stator line-neutral voltage. Also, it is observed that with an appropriate adjustment to the rotating magnetic flux, the stator line-neutral voltage can be reduced, resulting in a significant reduction in the circulating current. Based on these principles, a stator turn fault tolerant strategy for IM drives is proposed. This strategy does not require any change in the standard drive configuration and most importantly, does not result in the complete loss of availability of an IM drive in the presence of a stator turn fault. Simulation and experimental results are provided to validate the proposed strategy.
机译:感应电动机(IM)的定子绕组中的转闭故障导致大的循环电流以在短路转动中流动并产生过多的热量。在不限制与循环电流的平方成比例的热量,故障通常发展成灾难性相位。在本文中,示出了短路转弯中的循环电流与定子线 - 中性电压强烈相关。而且,观察到,通过适当调整旋转磁通量,可以减小定子线中性电压,导致循环电流显着降低。基于这些原理,提出了一种用于IM驱动器的定子转差耐受策略。该策略不需要标准驱动器配置的任何变化,最重要的是,在存在定子转过故障时,不会导致IM驱动器的可用性完全丢失。提供了模拟和实验结果以验证拟议的策略。

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