A new wideband transformer partial discharge online monitoring system

Tian Ye, Cheng Yangchun, W. Dada, Zhang Shaoquan
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引用次数: 1

Abstract

This paper introduces a wideband transformer partial discharge (PD) online monitoring system which can be used under the substation environment. It consists of wideband current sensors, amplifiers, filters, a digital oscilloscope and a computer. The wideband current sensors' measuring ranges from 20kHz to 40MHz; the signal amplifiers' frequency bandwidth is 0 ~ 100MHz, the signal gain of it can reach 100 times; the digital oscilloscope is used to acquire and display the PD pulse signal, the sampling rate is set to 100Msps, and the data length is 100M; the computer controls the whole data collection process, and the software platform was written using the Labview. Use a power frequency cycle (20 ms) as a unit for data acquisition. The data collected by the oscilloscope gets into the computer through the USB interface, after filtering, pulse extraction, pulse equivalent time-frequency parameter calculation and other processes, and then conducts the next data collection cycle. After the acquisition of data from 50 power frequency cycles, doing pulse clustering analysis based on the pulse of the equivalent time-frequency parameters. After the completing of pulse clustering analysis, conducts the same kind of pulse of statistical analysis, exclusion of pulse disturbance and fault diagnosis. It can effectively reflect the internal PD change rule under the actual working state of the transformer, can judge the severity of the transformer internal discharge to determine whether maintenance or not, then effectively improve the capacity of safe operation and reduce the maintenance costs.
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一种新型宽带变压器局部放电在线监测系统
本文介绍了一种可在变电站环境下使用的宽带变压器局部放电在线监测系统。它由宽带电流传感器、放大器、滤波器、数字示波器和计算机组成。宽带电流传感器的测量范围从20kHz到40MHz;信号放大器的频率带宽为0 ~ 100MHz,其信号增益可达100倍;采用数字示波器采集并显示PD脉冲信号,采样率设置为100Msps,数据长度为100M;计算机控制整个数据采集过程,软件平台采用Labview编写。使用一个工频周期(20毫秒)作为数据采集的单位。示波器采集到的数据通过USB接口进入计算机,经过滤波、脉冲提取、脉冲等效时频参数计算等过程,再进行下一个数据采集周期。采集50个工频周期的数据后,根据等效时频参数的脉冲进行脉冲聚类分析。在完成脉冲聚类分析后,对同类脉冲进行统计分析、排除脉冲干扰和故障诊断。它能有效反映变压器实际工作状态下内部PD的变化规律,能判断变压器内部放电的严重程度,判断是否需要维护,进而有效提高安全运行的能力,降低维护成本。
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