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Transient modeling of stator winding inter-turn short-circuits in induction motors

机译:感应电动机中定子绕组匝间短路的瞬态建模

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Induction motors plays very important part in the safe and efficient running of any industrial plant. Early detection of abnormalities in the motor would help to avoid costly breakdown. Accordingly, this paper presents an accurate mathematical model for diagnosis of stator winding faults in induction motors. This model is based on the d,q axis theory, and valid for both the transient and steady-state conditions. The proposed analysis is tested for incident faults and the 3-phase motor currents are recorded using a digital signal processing (DSP). Since the stator turn-to-turn shorts are one of the more prevalent and potentially destructive electrical faults in induction motors, a turn-to-turn fault is considered in such a study. An experimental motor is implemented and the fault is applied at typical percentages of a single phase stator winding. A reasonably close agreement between the measured and simulated results have been observed, which supports the validity of the proposed analysis.
机译:感应电动机在任何工厂的安全高效运行中都起着非常重要的作用。及早发现电动机中的异常情况将有助于避免代价高昂的故障。因此,本文提出了一种用于诊断感应电动机定子绕组故障的准确数学模型。该模型基于d,q轴理论,并且对于瞬态和稳态条件均有效。对提出的分析进行了测试,以检测故障,并使用数字信号处理(DSP)记录三相电动机电流。由于定子匝间短路是感应电动机中更普遍且具有潜在破坏性的电气故障之一,因此在此研究中考虑了匝间故障。实现了一个实验电机,并以单相定子绕组的典型百分比施加了故障。已观察到测量结果与模拟结果之间的合理接近的一致性,这支持了所提出分析的有效性。

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