[1] 冯秀宾. 智能变电站的涵义及发展探讨[J]. 高压电器,2013,49(2):116-119. FENG Xiu-bin. Discussion on intelligent substation[J]. High Voltage Apparatus, 2013, 49(2): 116-119. [2] 王海柱,蔡泽祥,邵向潮,等. 智能变电站过程层网络关键对象建模与仿真[J]. 中国电力,2013,46(6):80-84. WANG Hai-zhu, CAI Ze-xiang, SHAO Xiang-chao, et al . Key object modeling and performance simulation of process level networks in smart substation [J]. Electric Power, 2013, 46(6): 80-84. [3] 于振,朱朝阳,房殿阁. 变电站作业智能监控防护系统研究[J].中国电力,2013,46(2):72-75. YU Zhen, ZHU Chao-yang, FANG Dian-ge. A study of intelligent monitoring and protection system for substation operating worker[J]. Electric Power, 2013, 46(2): 72-75. [4] 赵琳,刘振,任雁铭,等. 220 kV数字化变电站测控保护一体化的实现方式[J]. 中国电力,2010,43(4):38-40. ZHAO Lin, LIU Zhen, REN Yah-ruing, et al . Realization of integrated devices of automation and protection in 220 kV digital substation [J]. Electric Power, 2010, 43(4): 38-40. [5] 李宝聚,周浩,等. 1 000 kV同塔双回线路感应电压和电流的计算分析[J]. 电网技术,2011,35(3):14-19. LI Bao-ju, ZHOU hao. Calculation and analysis on ind-uced voltage and current of 1 000 kV transmission line adopting structure of double circuit on the same tow-er[J]. Power System Technology, 2011, 35(3): 14-19. [6] 韩彦华,黄晓民,杜秦生. 同杆双回线路感应电压和感应电流测量与计算[J]. 高电压技术,2007,33(1):140-142. HAN Yan-hua, HUANG Xiao-min, DU Qin-sheng. Induced voltage and current on double circuits with same tower[J]. High Voltage Engineering, 2007, 33(1): 140-142. [7] 胡丹晖,涂彩琪,蒋伟,等. 500 kV同杆并架线路感应电压和电流的计算分析[J]. 高电压技术,34(9):116-119. HU Dan-hui, TU Cai-qi, JIANG Wei, et al , Calculation of in-ductive voltage and current for 500 kV double circu-its transmission lines on single tower[J]. High Voltage Engineering,2008, 34(9): 116-119. [8] 师宝安,李倩. 500 kV同塔四回输电线路的感应电压和感应电流[J]. 电力建设,2012,33(9):31-34. SHI Bao-an, LI Qian. Induced voltage and current of transmission Line of 500 kV quadruple-circuit in one tower[J]. Electric Power Construction, 2012, 33(9): 31-34. [9] 汪晶毅,李志泰,潘春平. 同塔多回输电线路感应电压和感应电流的研究[J]. 电力建设,2011,32(3):56-60. WANG Jing-yi, LI Zhi-tai, PAN Chun-ping. Research on induced voltage and current of multi-circuit on the same tower [J]. Electric Power Construction, 2011, 32(3): 56-60. [10] 赵志斌,董松昭,谢辉春. 特高压交流同塔双回输电线路邻近建筑物时畸变电场研究[J]. 高电压技术,2012,38(9):2171-2177. ZHAO Zhi-bin, DONG Song-zhao, XIE Hui-chun. Distorted electric field of the building near UHVAC double circuit transmission lines on the same tower[J]. High Voltage Engineering, 2012, 38(9): 2171-2177. [11] BRACKEN T D. Field measurement and calculation of electorostatic effects of overhead transmission line[J]. IEEE Transactions on power apparatus and Systems, 1976, 95(2): 494-503. [12] NISHIMURA R, NISHIMORI K, ISHIHARA N. Determining the arrangement of fictitious charges in charge simulation method using genetic algorithms[J]. Journal of Electrostatics, 2000, 49(5): 95-105. [13] ABDEL-SALAM M M, AL-SHEHRI A M. Induced voltages on fence wires and pipe lines by AC power transmission lines[J]. IEEE Transactions on Power Apparatus and Sys-tems, 1994, 30(2): 341-349. [14] SINGER H, STEINBIGLER H, WEISS P. A change simulation method for the calcluation of high voltage[J]. IEEE Transactions on Power Apparatus and Systems, 1974, 93(5): 166-168. [15] 解广润. 电力系统过电压[M]. 北京:水利电力出社,1985. [16] 张纬钹,何金良,高玉明. 电力系统过电压及绝缘配合[M]. 北京:清华大学出版社,1988. [17] 赵博,张洪量. Ansoft12在工程电磁场中的应用. 北京:中国水利水电出版社,2010.1. [18] 曾余庚. 电磁场有限单元法[M]. 科学出版社,1982年. [19] 张殿生. 电力工程高压送电线路设计手册[M]. 北京:中国电力出版社,2002. [20] 严璋,朱德恒. 高电压绝缘技术[M]. 北京:中国电力出版社, 1998. [21] 刘国强,赵凌志,蒋继娅. Ansoft工程电场场有限元分析[M]. 北京:电子工业出版社,2005.8. |