IEC 60507―1991 Artificial pollution tests on high voltage insulators to be used on AC systems[S]. 1991.
[2]
张智涛,于 龙,陈唐龙,等. 基于灰关联分析的接触网绝缘子污秽研究[J]. 电瓷避雷器,2013(6):1-9. ZHANG Zhitao,YU Long,CHEN Tanglong,et al. A study on the contamination overhead contact line system insulators based on grey relational analysis[J]. Insulators and Surge Arresters,2013(6):1-9.
[3]
KIMOTO I,KITO K,TAKATORI T. Anti-pollution design criteria for line and station insulators[J]. IEEE Transactions on Power Apparatus and Systems,1972,PAS-91(1):317-327.
[4]
GB/T 4585―2004 交流系统用高压绝缘子的人工污秽试验[S].2004. GB/T 4585―2004 Artificial pollution tests on high voltage insulators to be used on AC systems[S]. 2004.
[5]
NAITO K,KAWAGUCHI T,ITO M,et al. Influence of fog parameters on withstand voltage of contaminated insulators[J]. IEEE Trans. on Power Apparatus and Systems,1983,PAS-102(9):729-736.
[6]
ARAI N. AC fog withstand test on contaminated insulators by steam fog[J]. IEEE Trans. on Power Apparatus and Systems,1982,PAS-101(11):4316-4323.
[7]
CASALE E P,SEBO S A. Polymer insulator fog chamber project: Data acquisition system development[C]//IEEE 1996 Annual Report of the Conference on Electrical Insulation and Dielectric Phenomena. [S.l.]:IEEE,1996:447-450.
[8]
关志成. 绝缘子及输变电设备外绝缘[M]. 北京:清华大学出版社,2002.
[9]
张仁豫. 绝缘污秽放电[M]. 北京:水利电力,1994.
[10]
蒋兴良,舒立春,孙才新. 电力系统污秽与覆冰绝缘[M].北京:中国电力出版社,2009.
[11]
李立?,蒋兴良,孙才新,等. ±800 kV直流复合绝缘子短样人工污秽闪络特性研究[J]. 中国电机工程学报,2007,27(10):14-19. LI Licheng,JIANG Xingliang,SUN Caixin,et al. Study on pollution flashover performance of short sample of ±800 kV UHV DC composite insulators[J]. Proceedings of the CSEE,2007,27(10):14-19.
[12]
GUAN Zhicheng,CUI Guoshun. A study on the leakage current along the surface of polluted insulator[C]//Proceedings of the 4th International Conference on Properties and Applications of Dielectric Materials.Brisbane,Australia:[s.n.], 1994:495-498.
[13]
项 阳,郭 洁,雒 铮. 覆有不均匀污层线路悬式绝缘子表面电场分布计算[J]. 南方电网技术,2011,5(5):72-76. XIANG Yang,GUO Jie,LUO Zheng. Calculation on the surface electric field distribution of suspension-type insulators covered with nonuniform surface pollution[J]. Southern Power System Technology,2011,5(5):72-76.
[14]
梅红伟,毛颖科,卞星明,等. 相对湿度对绝缘子泄漏电流最大值的影响[J]. 高电压技术,2010,36(3):627-631. MEI Hongwei,MAO Yingke,BIAN Xingming,et al. Effect of relative humidity on the maximum leakage current of insulators[J]. High Voltage Engineering,2010,36(3):627-631.
[15]
舒印彪. 我国特高压输电的发展与实施[J]. 中国电力,2005,38(11):1-8. SHU Yinbiao. Development and execution of UHV power transmission in China[J]. Electric Power,2005,38(11):1-8.
[16]
李明翔,高国强,冯艳双,等. 高速气流场下列车车顶绝缘子积污特性研究[J]. 电瓷避雷器,2013(1):1-6. LI Mingxiang,GAO Guoqiang,FENG Yanshuang,et al.Contamination characteristics of electric locomotive roof insulator in high speed airflow field[J]. Insulators and Surge Arresters,2013(1):1-6.
[17]
胡文歧,井 谦,彭 静. 接触角法表征复合绝缘子用硅橡胶材料表面憎水性的研究[J]. 电瓷避雷器,2013(2):5-10. HU Wenqi,JING Qian,PENG Jing. Study on surface hydrophobicity of silicone rubber materials for composite insulator characterized by contact angle method[J]. Insulators and Surge Arresters,2013(2):5-10.
[18]
TAKASU K,ARAI N,IMANO Y,et al. AC flashover characteristics of long air gaps and insulator strings under fog conditions[J]. IEEE Trans. on Power Apparatus and Systems,1981,PAS-100(2):639-645.