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An improved detection technique for measurement and analysis of partial discharges

机译:一种改进的局部放电测量和分析检测技术

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The measurement of partial discharges may be achieved using very different detection techniques. In classical systems, based on band pass filtering, there is a lack of very important information: the value of the applied voltage which induce the discharge and the time instant in which it occurs. A different approach is based on separation of the partial discharge signal from the main frequency by a notch filter. This particular instrumentation devoted to the measurement of partial discharge, is able to detect, measure and store in a large size memory the apparent charge of every single pulse, the corresponding value of the applied voltage and the time instant in which it occurs. It is so possible to track the real-time evolution of partial discharge. This paper presents both a theoretical analysis and an experimental evaluation which validate the results obtained from such a system. The practical difficulty in achieving an integrator for very sharp pulses in the nanosecond range, minimizing error and noise typical of real systems is shown. The interest of such an approach to the problem is confirmed by experimental results.
机译:局部放电的测量可以使用非常不同的检测技术来实现。在经典系统中,基于带通滤波,缺少非常重要的信息:引起放电的施加电压的值以及发生放电的时间。一种不同的方法是基于陷波滤波器将部分放电信号与主频率分离。这种专门用于局部放电测量的仪器能够检测,测量并在大容量存储器中存储每个单个脉冲的视在电荷,所施加电压的相应值及其发生的瞬间。因此可以跟踪局部放电的实时演变。本文介绍了理论分析和实验评估,它们验证了从这种系统获得的结果。展示了在纳秒范围内获得非常尖锐的脉冲的积分器,最大程度地减小实际系统中典型的误差和噪声的实际困难。实验结果证实了这种解决该问题的方法的兴趣。

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