Detection and identification of stator inter-turn faults in three-phase induction motor in presence of supply unbalance condition

N. R. Devi, D. Sarma, P. Rao
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引用次数: 2

Abstract

Induction machines play a vital role in process industries due to their low cost, ruggedness and low maintenance. Even though the induction machine is very reliable, many failures can occur due to their non-ideal operating conditions. Literature survey reveals that stator faults occupy a prominent place among the reasons for such failures. In particular, an undetected stator inter-turn fault may progressively lead to a permanent damage of the machine. Hence, early detection of stator inter-turn faults is essential for preventing damage to the adjacent coils and the core of the stator. Also, detection of stator inter-turn faults in the presence of supply unbalance is another challenging task. This paper proposes a new adaptive approach based on wavelet multi-resolution analysis for detecting and identifying the stator inter-turn faults. A fault index is defined based on the slope of detail coefficients to compare with an adaptive threshold for setting the flags. A fault is detected when the flag count reaches 6 over a moving window of 10 samples. Severity of the fault is identified by defining a sensitivity index based on the three phase energies of 4th level approximate coefficients. The proposed method is verified by using experimental data considering supply unbalance as well. Results indicate the effectiveness of the proposed method.
供电不平衡情况下三相异步电动机定子匝间故障的检测与识别
感应电机由于其低成本,耐用性和低维护在过程工业中起着至关重要的作用。尽管感应电机非常可靠,但由于其不理想的运行条件,可能会发生许多故障。文献调查表明,定子故障在此类故障的原因中占有突出的地位。特别是,未检测到的定子匝间故障可能逐渐导致机器的永久损坏。因此,早期检测定子匝间故障对于防止相邻线圈和定子铁芯损坏至关重要。此外,在供电不平衡的情况下,检测定子匝间故障是另一项具有挑战性的任务。提出了一种基于小波多分辨分析的自适应定子匝间故障检测与识别方法。基于细节系数的斜率定义了故障索引,并与自适应阈值进行比较。当标志计数在10个样本的移动窗口中达到6时,检测到故障。通过定义基于4级近似系数三相能量的灵敏度指标来识别故障的严重程度。在考虑供给不平衡的情况下,用实验数据对该方法进行了验证。结果表明了该方法的有效性。
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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