Detection of Broken Rotor Bar Faults and Effects of Loading in Induction Motors during Rundown

R. Supangat, J. Grieger, N. Ertugrul, W. Soong, D. Gray, C. Hansen
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引用次数: 17

Abstract

The detection of broken rotor bar faults based on the common steady-state Fourier transform technique is known to be dependent on the loading condition and the quality of the supply. This paper attempts to minimise these issues by utilising the induced voltage in the stator windings after supply disconnection. When the supply is disconnected, the stator current rapidly drops to zero and the only source of the stator induced voltage an instant after the supply disconnection is due to currents in the rotor. The rotor currents are sensitive to broken rotor bar faults and directly affect the rundown induced voltage in the stator windings. The performance of two different broken rotor bar detection techniques, based on the Fourier transform and the wavelet transform, are investigated over a wide range of loading conditions.
感应电动机转子断条故障的检测及负荷对故障的影响
基于常用稳态傅里叶变换技术的转子断条故障检测依赖于负载条件和电源质量。本文试图通过在电源断开后利用定子绕组中的感应电压来尽量减少这些问题。当电源断开时,定子电流迅速降至零,并且在电源断开后瞬间定子感应电压的唯一来源是转子中的电流。转子电流对断条故障很敏感,直接影响定子绕组的击穿感应电压。研究了基于傅里叶变换和小波变换的两种转子断条检测技术在大范围加载条件下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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