Evaluation of Contamination Levels of Outdoor Insulators Based on the Principal Components Analysis of Leakage Current Pulses
Mao Yingke1, 2, Guan Zhicheng1, Wang Liming1, Ma Yi3, Wen Hua3, Li Ruihai3
1. Tsinghua University Shenzhen 518055 China 2. Tsinghua University Beijing 100084 China 3. Yunnan Electric Power Test & Research Institute Group Co., Ltd. Kunming 650051 China
Abstract:Evaluation of contamination levels of outdoor insulators is very necessary to prevent the pollution flashover accidents. Artificial pollution tests were carried out on a kind of widely used glass insulator. Leakage current waveform in different equivalent salt deposit density (ESDD) and different relative humidity (RH) were recorded by a leakage current monitoring system. 80 levels of leakage current pulses were picked out from it. Principle components including most information of the pulses were extracted by using principal components analysis (PCA). The results of the cluster analysis and comprehensive principal components analysis show that the principal components of the leakage current pulses are tightly relative to the contamination levels. They provide a good approach to evaluate the contamination levels.
毛颖科, 关志成, 王黎明, 马仪, 文华, 李锐海. 基于泄漏电流脉冲主成分分析的外绝缘污秽状态评估方法[J]. 电工技术学报, 2009, 24(8): 39-45.
Mao Yingke, Guan Zhicheng, Wang Liming, Ma Yi, Wen Hua, Li Ruihai. Evaluation of Contamination Levels of Outdoor Insulators Based on the Principal Components Analysis of Leakage Current Pulses. Transactions of China Electrotechnical Society, 2009, 24(8): 39-45.
[1] 关志成, 等. 绝缘子及输变电设备外绝缘[M]. 北京:清华大学出版社, 2006. [2] Ramos N G, Campillo R M T, Naito K. A study on the characteristics of various conductive contaminants accumulated on high voltage insulators[J]. IEEE Transactions on Power Delivery, 1993, 8(4): 1842- 1850. [3] 关志成, 张仁豫, 等. 自然污秽可溶盐构成及其对污闪电压值的影响[J]. 电磁避雷器, 1989(6): 13-18. [4] Sundararajan R, Gorur R S. Role of non-soluble contaminants on the flashover voltage of porcelain insulators[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 1996, 3(1): 113-118. [5] Matsuoka R, Kondo K, Naito K, et al. Influence of nonsoluble contaminants on the flashover voltage of artificially contaminated insulators[J]. IEEE Transactions on Power Delivery, 1996, 11(1): 420-425. [6] 李治, 王永江, 王黎明, 等. 绝缘子泄漏电流和放电现象的初步研究[J]. 高电压技术, 2002, 28(增): 1-2. [7] Guan Zhicheng, Zhang Renyu. Calculation of DC and AC flashover voltage of polluted insulators[J]. IEEE Transactions on Electrical Insulation, 1990, 5(4): 723-729. [8] 张仁豫. 绝缘污秽放电[M]. 北京: 水利水电出版社, 1994. [9] Zhang Renyu, Guan Zhicheng, Xue Jiaqi, et al. Discharge along a contaminated dielectric surface[J]. Progress in Natural Science, 1995, 5(4): 395-404 [10] 崔国顺. 高压绝缘子污秽度测量方法的研究[D]. 北京: 清华大学, 1994. [11] 毛颖科, 关志成, 王黎明, 等. 污秽实验室泄漏电流测量系统的研制[J]. 高压电器, 2007, 43(2): 94-96. [12] 薛薇. 统计分析与SPSS的应用[M]. 北京:中国人民大学出版社, 2001. [13] 林海明, 张文霖. 主成分分析与因子分析的异同和SPSS软件[J]. 统计研究, 2005(3): 65-69. [14] 刑德海, 董旭源. 基于主成分分析法的高校EHR系统[J]. 计算机工程, 2006, 32(19): 57-59. [15] 刘玉玫, 张芃. 经济全球化程度的量化研究[J]. 统计研究, 2003(12):13-18.