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Integrated Diagnosis Techniques of High Voltage Induction Machine with Rotor Winding Faults

机译:转子绕组故障的高压感应电动机综合诊断技术

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This paper analyzes the novel techniques adopted to diagnose machine rotor winding fault. In order to accurately extract the fault characteristic in stator-steady current, frequency subdivision is used to enhance the frequency resolution of the signal and self-adapting filtering is used to enhance the magnitude resolution of the signal. Particular frequency component in the starting current is used for fault diagnosis, this greatly simplify the fault diagnosing technique based on starting current and make it applicable. Residual voltage after AC dump of the stator winding is used for fault diagnosis, this can effectively eliminate the effects caused by unsymmetrical source, load fluctuation, and iron saturation. The application of all these techniques can effectively diagnose the incipient faults of high voltage induction machine. Finally this paper introduces the basic structure and the main performance of the realized high voltage machine fault diagnosis system.
机译:本文分析了用于诊断电机转子绕组故障的新技术。为了准确地提取定子稳定电流中的故障特征,使用了细分技术来增强信号的频率分辨率,并使用自适应滤波来增强信号的幅度分辨率。起动电流中的特定频率分量用于故障诊断,这大大简化了基于起动电流的故障诊断技术,并使其适用。定子绕组交流突降后的残留电压用于故障诊断,可有效消除电源不对称,负载波动和铁饱和引起的影响。所有这些技术的应用可以有效地诊断高压感应电机的早期故障。最后,介绍了已实现的高压电机故障诊断系统的基本结构和主要性能。

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