中国电力 ›› 2023, Vol. 56 ›› Issue (4): 175-183.DOI: 10.11930/j.issn.1004-9649.202209032

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变压器套管局部放电射频信号在外部空间的分布特征

黄辉1,2, 杨智豪1,2, 魏建国3, 邓辉1,2, 刘诣4   

  1. 1. 国网智能电网研究院有限公司, 江苏 南京 210037;
    2. 国家电网有限公司电力智能传感技术及应用联合实验室, 江苏 南京 210037;
    3. 全球能源互联网欧洲研究院, 德国 柏林 10623;
    4. 国网电力科学研究院武汉南瑞有限责任公司, 湖北 武汉 430074
  • 收稿日期:2022-09-09 修回日期:2023-01-19 发布日期:2023-04-26
  • 作者简介:黄辉(1978-),男,高级工程师(教授级),从事电力传感技术、微能量收集技术、物联网技术等研究工作,E-mail:huanghui@geiri.sgcc.com.cn;杨智豪(1991-),男,通信作者,工程师,从事电力设备状态监测方面的研究工作,E-mail:yangzhihaov5@163.com
  • 基金资助:
    国家电网有限公司科技项目(面向换流站局放射频脉冲信号检测的高速采样和即时特征辨识关键技术研究,5700-201958508A-0-0-00)

Distribution Characteristics of Partial Discharge Radio Frequency Signal in Transformer Tank and Bushing

HUANG Hui1,2, YANG Zhihao1,2, WEI Jianguo3, DENG Hui1,2, LIU Yi4   

  1. 1. State Grid Smart Grid Research Institute Co., Ltd., Nanjing 210037, China;
    2. Electric Power Intelligent Sensing Technology and Application of State Grid Corporation Joint Laboratory, Nanjing 210037, China;
    3. Global Energy Interconnection Research Institute Europe GmbH, Berlin 10623, Germany;
    4. Wuhan NARI Limited Liability Company, State Grid Electric Power Research Institute, Wuhan 43007, China
  • Received:2022-09-09 Revised:2023-01-19 Published:2023-04-26
  • Supported by:
    This work is supported by Science and Technology Project of SGCC (Research on Key Technologies of High Speed Sampling and Instant Feature Identification for Partial Discharge Detection in Converter Station, No.5700-201958508A-0-0-00).

摘要: 外置式局部放电射频检测方法适用于在运行的设备,目前已成为感知变压器与套管绝缘缺陷的重要手段之一。其检测灵敏度受到传感器安装位置与极化方向匹配的影响。为了提高外置式射频检测方法的灵敏度,研究了变压器油箱内局部放电电磁波经过套管传播至外部空间时射频信号的幅值分布特征。首先建立了套管下部局部放电电磁波的传播仿真模型;然后利用色度图展示了电磁波传播的动态过程;其次分析了套管外部典型部位的射频信号电场强度波形,以及电场强度的极化方向;最后开展了局部放电试验与射频信号测量,利用双锥天线测量结果验证了射频信号的幅值分布特征与极化特征。仿真结果表明:电磁波将以套管接地法兰、套管顶部为中心向外传播;利用双锥天线将在此2个部位附近测得较强的射频信号;当双锥天线极化方向与套管轴向平行时测得的射频信号最强。该结论对于提升变压器及套管局部放电射频检测灵敏度具有参考价值和工程意义。

关键词: 变压器, 套管, 局部放电, 射频, 双锥天线

Abstract: The external partial discharge (PD) radio frequency (RF) detection method is suitable for equipment in operation, and has become one of the important means to perceive the insulation defects of transformer and bushing. The detection sensitivity is affected by the matching of sensor installation position and polarization direction. In order to improve the sensitivity of the external RF detection method, this paper studies the amplitude distribution characteristics of the RF signal when the partial discharge electromagnetic wave in the transformer tank propagates through the bushing to the external space. Firstly, the propagation simulation model of partial discharge electromagnetic wave under bushing is established. Secondly, the dynamic process of electromagnetic wave propagation is shown by chromaticity diagram. Thirdly, the electric field intensity waveform of RF signal and the polarization direction of electric field intensity at typical locations outside the bushing are analyzed. Finally, partial discharge test and RF signal measurement are carried out, and the amplitude distribution characteristics and polarization characteristics of RF signal are verified by the measurement results of biconical antenna. The simulation results show that the electromagnetic wave propagates outward with the bushing grounding flange and the bushing top as the center; strong RF signals are measured near the two positions using the biconical antenna; the measured RF signal is the strongest when the polarization direction of the biconical antenna is parallel to the axial direction of the bushing. This conclusion is significant for improving the sensitivity of transformer and bushing partial discharge radio frequency detection.

Key words: transformer, bushing, partial discharge, radiofrequency, biconical antenna