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Modeling and Experimental Investigation of Stator Winding Faults in Induction Motors

机译:异步电动机定子绕组故障的建模与实验研究

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摘要

Induction motors play a vital role in industrial applications. Early detection of abnormalities in the motor would help to avoid costly breakdowns. Realizing a versatile modeling of motor winding faults is essential for developing and evaluating protection functions. Accordingly, this article presents an accurate mathematical model for stator winding faults in induction motors for both transient and steady-state analysis. This model is based on the d-q-axis theory and is valid for pliase-to-ground, phase-to-phase, and turn-to-turn faults. These turn-to-turn shorts arise as one of the most prevalent and potentially destructive electrical faults in induction motors. For investigating the performance of the proposed modeling, an experimental setup is structured with a 0.5-HP, 2-pole, 380/220-V squirrel-cage induction motor. The motor stator winding was rewound for enabling a turn-to-turn fault application. The digital signal processing board (DS1003) is employed for data acquisition and recording purposes. A reasonably close agreement between the measured and simulated results has been observed, which supports the validity of the proposed analysis.
机译:感应电动机在工业应用中起着至关重要的作用。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。实现电动机绕组故障的通用建模对于开发和评估保护功能至关重要。因此,本文为瞬态和稳态分析提供了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,适用于对地,相间和匝间故障。这些匝间短路是感应电动机中最普遍和最具破坏性的电气故障之一。为了研究所建议模型的性能,使用了0.5-HP,2极380 / 220-V鼠笼式感应电动机的实验装置。重绕电机定子绕组以实现匝间故障应用。数字信号处理板(DS1003)用于数据采集和记录。已观察到测量结果与模拟结果之间的合理接近一致,这支持了所提出分析的有效性。

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