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Partial Discharge Detection and Discharge Type Identification of Gas Insulated Switchgear Based on Photoelectric Detection

机译:基于光电检测的气体绝缘开关装置的局部放电检测和放电型识别

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摘要

Gas insulated switchgear (GIS) is a relatively common high-voltage substation equipment. Due to the internal complex structure and integrated switch, it is easy to cause insulation defects, burrs and partial discharge of metal particles, thereby reducing the insulation of equipment performance, which has attracted the attention of many researchers. In this study, aiming at the problem of partial discharge in GIS, a detection device of partial discharge based on photomultiplier instrument is proposed. In this device, Zemax software is used to simulate a front-end optical signal receiving module that enhances the photosensitive surface and enhances the optical signal aggregation effect. In terms of signal processing, the output voltage signal of the photomultiplier instrument is filtered, and the corresponding signal is extracted for amplification. The partial discharge detecting device designed in the experiment is used to judge the internal insulation defects of the GIS, and to discriminate the metal protrusion defects, the metal particle defects on the insulator surface, the free metal particle defects, and the air gap defects between the insulator and the high voltage conductor, respectively. The partial discharge signal phi-u-v spectra of different defect models are constructed. Through the image simulation of partial discharge signals corresponding to defects, it is verified that the detection device can distinguish the partial discharge caused by different defects, which is helpful to prevent the occurrence of malignant discharge accidents and maintain the stable operation of GIS equipment.
机译:气体绝缘开关设备(GIS)是一种相对普遍的高压变电站设备。由于内部复杂结构和集成开关,易于引起绝缘缺陷,毛刺和金属颗粒的局部放电,从而降低了设备性能的绝缘,这引起了许多研究人员的注意。在本研究中,提出了基于光电倍增器仪器局部放电的问题。在该设备中,Zemax软件用于模拟前端光信号接收模块,该模块增强光敏表面并增强光信号聚集效果。在信号处理方面,过滤光电倍增器仪器的输出电压信号,并提取相应的信号进行放大。在实验中设计的局部放电检测装置用于判断GIS的内部绝缘缺陷,并鉴别金属突出缺陷,绝缘体表面上的金属颗粒缺陷,自由金属颗粒缺陷和空气间隙缺陷之间绝缘体和高压导体分别。构造不同缺陷模型的局部放电信号PHI-U-V光谱。通过对应于缺陷的局部放电信号的图像模拟,验证检测装置可以区分由不同缺陷引起的局部放电,这有助于防止恶性放电事故并保持GIS设备的稳定运行。

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