电力变压器绝缘内部缺陷的检测与定位

J. Fuhr, M. Haessig, P. Boss, D. Tschudi, R. King
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引用次数: 76

摘要

随着快速、低成本的模数转换器(adc)和用于波形描述的新数学程序的发展,如时间编码信号处理和识别(TESPAR),如果满足以下要求,检测和定位电力变压器绝缘内部缺陷的新方法变得可行:已知适用于上升时间约为10ns的快速局部放电(PD)信号的绝缘系统等效电路;在信号分接点(即套管)处计算或测量至少在每个绕组的三个不同位置(顶部、中心、底部)注入的绝缘系统对PD信号的响应;并且存在所有计算或测量信号的模式矩阵:例如,以TESPAR为参考的编码和信号处理。对电力变压器内部缺陷的准同时检测和定位,考察了上述要求。将该方法应用于电力变压器局部放电的测量。>
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Detection and location of internal defects in the insulation of power transformers
With the development of fast, and low-cost analog-digital converters (ADCs) and new mathematical procedures for waveform description, e.g., time encoded signal processing and recognition (TESPAR), novel approaches to detect and locate internal defects in the insulation of power transformers become feasible if the following requirements are fulfilled: the equivalent circuit of the insulating system, suitable for the fast partial discharge (PD) signals with risetimes of approximately 10 ns, is known; the response of the insulating system to PD signals injected at least at three different sites of each winding (top, center, bottom) is calculated, or measured at the signal tap-off points (i.e., bushings); and the pattern matrix of all calculated or measured signals exists: e.g., encoded and signal processes with TESPAR as a reference. The above mentioned requirements are examined for quasi-simultaneous detection and location of internal defects in power transformers. The method is applied to PD measurements on power transformers. >
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