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Transient modeling and analysis of induction motors with position effects in stator turn faults

机译:定子绕组故障中具有位置效应的感应电动机的瞬态建模与分析

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摘要

Stator turn faults are among the most common electrical faults in induction machines. They are usually caused by the short-circuit of a few turns of a stator winding, and are difficult to locate within the winding. Because of the distributed stator windings used in induction motors, motor behavior under these faults depends upon fault location and number of short-circuited turns. This paper is concerned with transient modeling of induction machines, explicitly considering both, stator fault position and extent. The model lends itself to transient and steady-state analysis, as well as to simulation. The paper introduces a method to map the positive and negative sequence stator current information onto a polar plot, which brings into focus both, the fault position and extent. This method is suitable for on-line monitoring of motor drives. The paper also provides experimental results, obtained with an intentionally faulted machine.
机译:定子转向故障是感应电机中最常见的电气故障。它们通常是由定子绕组的几匝短路引起的,并且很难定位在绕组内。由于感应电动机中使用了分布的定子绕组,因此在这些故障下的电动机行为取决于故障位置和短路匝数。本文涉及感应电机的瞬态建模,明确考虑了定子故障的位置和程度。该模型适用于瞬态和稳态分析以及仿真。本文介绍了一种将正序和负序定子电流信息映射到极坐标图的方法,该方法将故障位置和范围都作为重点。此方法适用于电动机驱动器的在线监视。本文还提供了有意故障机器获得的实验结果。

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