变压器绕组脉冲响应在匝间短路检测中的应用

Mozon Shadid, N. Harid, B. Barkat, A. Manjunath
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摘要

目前有几种技术用于监测电力变压器的内部缺陷。这些对于降低故障率和延长变压器的使用寿命是非常有用的。其中最灵敏的技术之一是频率响应分析方法,该方法将扫频交流信号注入变压器绕组,并分析被测输出信号与基准参考信号之间的差异。本文将冲击电压法应用于变压器绕组内匝间短路故障的诊断。输入信号是一组不同形状的脉冲电压,而不是标准的变频交流信号。与标准扫频法相比,该方法的优点是测试时间和信号分析时间更短。对输出结果进行处理,生成绕组的频率响应图。在一台小型试验变压器上的测量结果表明,所得结果与扫频法所得结果非常接近。在这个初步的研究中,脉冲电压被用来模拟电力系统中自然发生的瞬态,如开关事件和分接开关操作。通过应用统计技术解释不同频段的测量频率响应,验证了该方法的灵敏度。
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Application of the Impulse Response of Transformer Winding for Detection of Internal Turn-to-Turn Short Circuits
Several techniques are currently used to monitor internal defects in power transformers. These are very useful for reducing failure rates and extending the service life of transformers. One of the most sensitive techniques is the frequency response analysis method that injects a swept frequency ac signal into the transformer winding and analyses differences between the measured output signal and a benchmark reference signal. This paper applies the impulse voltage method for the diagnosis of turn-to-turn short circuit faults inside a transformer winding. The input signals are a set of impulse voltages of different shapes instead of the standard ac signals of variable frequency. The merits of this method compared with the standard swept frequency method are a shorter time for testing and for signal analysis. The output results are processed to produce a frequency response plot of the winding. Measurement results on a small test transformer show that the plots are closely similar to those obtained using the swept frequency method. In this initial study, impulse voltages are used to emulate the naturally occurring transients in power systems such as switching events and tap changer operations. The sensitivity of the method is verified by applying statistical techniques to interpret the measured frequency response in different frequency bands.
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