[1] 张搏宇,苏宁,吕雪斌,等. 交直流避雷器耐污秽能力研究[J].电瓷避雷器,2014(1):79-84. ZHANG Boyu, SU Ning, LYU Xuebin, et al . Research on the pollution-resistant capacity of AC/DC MOA[J]. Insulators and Surge Arresters, 2014(1): 79-84. [2] 张搏宇,李光范,张翠霞,等. 污秽条件下避雷器的内部温升研究[J]. 高电压技术,2011,37(8):2065-2072. ZHANG Boyu, LI Guangfan, ZHANG Cuixia, et al . Internal temperature rise of MOA under pollution condition[J]. High Voltage Engineering, 2011, 37(8): 2065-2072. [3] 宋辉,盛戈嗥,王传庆,等. 基于无线同步的避雷器阻性电流测量系统[J]. 高压电器,2012,48(5)49-55. SONG Hui, SHENG Gehao, WANG Chuanqing, et al . Arrester resistive current measuring system based on wireless synchronization [J]. High Voltage Apparatus, 2012, 48(5): 49-55. [4] 邵涛,周文俊,闫华光,等. 电压谐波对金属氧化物避雷器泄漏电流及其阻性分量的影响[J]. 电网技术,2004,28(8):55-59. SHAO Tao, ZHOU Wenjun, YAN Huaguang, et al . Influence of voltage harmonics on leakage current and its resistive component of MOA [J]. Power System Technology,2004, 28(8): 55-59. [5] 高峰,郭洁,徐欣,等. 交流金属氧化物避雷器受潮与阻性电流的关系[J]. 高电压技术,2009,35(11):2629-2633. GAO Feng, GUO Jie, XU Xin, et al . Relation between resistive current and MOA affected with damp[J]. High Voltage Engineering, 2009, 35(11): 2629-2633. [6] 蔡晓波,石佳,陈小毓. 基于数学形态学的金属氧化物避雷器泄漏电流在线检测方法[J]. 高压电器,2010,46(1):99-102. CAI Xiaobo, SHI Jia, CHEN Xiaoyu. A on-line measurement method of leakage current of metal-oxide surge arresters based on mathematical morphology[J]. High Voltage Apparatus, 2010, 46(1): 99-102. [7] 万四维. 金属氧化物避雷器缺陷与阻性电流关系的分析探讨[J]. 电瓷避雷器,2007(5):31-34. WAN Siwei. Approach to correlation of MOA defaults with its resistive current [J]. Insulators and Surge Arresters, 2007(5): 31-34. |