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非接触式电场测量法中杆塔影响的分析 被引量:4

Analysis of the Influence of Tower on the Non-touch Electric Field Mapping Method
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摘要 根据模拟电荷法(CSM)建立三相高压绝缘子与杆塔的等效模型,在每相绝缘子串附近一定距离设置几个测量点(110kV,每相3个点),根据杆塔塔架对测量点影响的大小简化杆塔结构。采用PMM8053_EHP50B型工频电磁场测量探头测量各测量点的电场强度,逆向应用CSM并结合遍历的搜索方法搜索计算各相绝缘子片的实际电位分布值。将其与绝缘子串正常电位分布值比较,可判断是否存在劣质绝缘子及其位置。该法的优点是可实现一定距离的非接触式测量,对110kV三相猫头型铁塔系统,测量最大距离可达2.5m。 According to the charge simulation method and the induced charges on the surface of the insulators and the tower, an equivalent model of the insulators and the tower can be set up. Several measuring points are set up near the insulators of each phase, for the system of three-phase 110 kV three points is enough, then the electric field produced by the induced charges of the tower, is computed and the influence to the electric field of the measuring points produced by the induced charges of the tower is analyzed, finally the tower is simplified. By measuring the electric field of a few points near the insulators. The practical distribution of the voltage on the surface of the insulators can be got using the simulation charge method and searching all one by one. Moreover the practical distribution of voltage on insulators and defective insulators can be estimated by comparing it with the standard distribution of the voltage on the insulators.
出处 《高电压技术》 EI CAS CSCD 北大核心 2005年第9期11-13,33,共4页 High Voltage Engineering
关键词 模拟电荷法 劣质绝缘子 杆塔 影响 电位分布 charge simulation method defective insulator pole influence distribution of the voltage
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  • 1成永红.电力设备绝缘检测与诊断[M].北京:电力出版社,1984.. 被引量:4
  • 2杨帆,何为,姚德贵,李家祥.应用模拟电荷法在线检测劣质绝缘子的研究[J].高电压技术,2003,29(12):24-25. 被引量:8
  • 3安玲,江秀臣,朱宇,韩振东,陈亚珠,程剑.检测劣质绝缘子的新方法——敏感绝缘子法[J].中国电机工程学报,2002,22(9):108-112. 被引量:42
  • 4Vailancourt G H, Bellerive J P, St-Jean M, et al. New live line tester for porcelain suspension insulators on high-voltage power lines [J]. IEEE Trans on Power Delivery, 1994, 9(1): 208-219. 被引量:1
  • 5Paul Bipul Chandra, Satyam M, Selvarajan A. A novel method of optical detection using a capacitive device[J]. IEEE Trans on Electron Devices,1999, 31: 324-328. 被引量:1
  • 6Birlasekaran S, I.i H J. Detection of faulty insulators on power transmission line[J]. IEEE Trans J Magn, 2000, 4:2 817-2 821. 被引量:1
  • 7Kaana-Nkusi S, Alexander P H, Haekam R. Potential and electric field distributions at a high voltage insulator shed[J]. IEEE Trans on Electrical Insulation, 1988, 23(2): 307-318. 被引量:1
  • 8Dhalaan S M AI, Elhirbawy M A. Simulation of voltage distribution calculation methods voer a string of suspension insulators[C]. 2003 IEEE Transmission and Distribution Conference and Exposition.[s. 1. ], 2003:909-914. 被引量:1
  • 9Weiguo Que, Sebo S A. Electric field and potential distributions along dry and clean nonceramic insulators[C]. 2001 Electrical Insulation Conference and Electrical Manufacturing & Coil Wading Conf. [s. 1.], 2001 : 437-440. 被引量:1
  • 10Jermendy I., Fogarasi I. Detection of insulator ageing[C]. Power Tech Budapest '99, International Conference on Electric Power Engineering.[s. 1. ], 1999: 128. 被引量:1

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