郑 彬,项祖涛,班连庚,等. 特高压交流输电线路加装串联补偿装置后断路器开断暂态恢复电压特性分析[J]. 高电压技术,2013,39(3):605-611. ZHENG Bin, XIANG Zutao, BAN Liangeng, et al . Analysis on circuit breaker transient recovery voltage UHV AC transmission line fixed with series capacitors[J]. High Voltage Engineering, 2013, 39(3): 605-611.
[2]
谷纪亭,殷 禹,岳功昌,等. 采用特高压隔离开关切合固定串补平台的电容式电压互感器的快速暂态试验[J]. 高电压技术,2014,40(12):3972-3978. GU Jiting, YIN Yu, YUE Gongchang, et al. Fast transient test on capacitor voltage transformer with switching fixed series capacitors platform using UHV disconnector[J]. High Voltage Engineering, 2014, 40(12): 3972-3978.
[3]
周孝信,郭剑波,胡学浩,等. 提高交流500 kV线路输电能力的实用化技术和措施[J]. 电网技术,2001,25(3):1-6. ZHOU Xiaoxin, GUO Jianbo, HU Xuehao, et al. Engineering technologies and measures for improving the transmitting capability of 500 kV transmission lines[J]. Power System Technology, 2001, 25(3): 1-6.
[4]
秦晓辉,申 洪,周勤勇,等. 特高压串补线路沿线电压分布及串补布置方案研究[J]. 中国电机工程学报,2011,31(25):43-49. QIN Xiaohui, SHEN Hong, ZHOU Qinyong, et al . Voltage distribution along the line and disposition scheme of series capacitors for UHV transmission lines with series capacitors[J]. Proceedings of the CSEE, 2011, 31(25): 43-49.
[5]
Begamuder R.D. Extra high voltage AC transmission engineering /second edition[M]. New Delhi, India: Wiley Eastern Limited, 1990: 318-358.
[6]
El-Marsafawy M. Application of series-capacitor and shunt-reactor compensation to an existing practical AC transmission line[J]. IEE Proceedings Part C, 1991, 138(4): 330-336.
[7]
El-Metwally M M, El-Emary A A, El-Azab M. A linear programming method for series and shunt compensation of HV transmission lines[J]. European Transactions on Electrical Power, 2005, 15: 157-170.
[8]
DL/T 5429—2009 电力系统设计技术规程[S],2009. DL/T 5429—2009 Technical rule for power system design[S], 2009.
[9]
李同生. 超高压电网工频过电压及其限制措施简述[J]. 电网技术,1979,4(1):91-101. LI Tongsheng. Review power frequency overvoltage and its limiting measure in EVH power grid [J].Power System Technology, 1979, 4(1): 91-101.
[10]
Turan G. Electric power transmission system engineering: analysis and design[M]. New York, USA: John Wiley and Sons Inc, 1988: 100-103.
[11]
张纬钹,何金良,高玉明. 过电压防护及绝缘配合[M]. 北京:清华大学出版社,2002:169-171. ZHANG Weiba, HE Jinliang, GAO Yuming. Over-voltage protection and insulation coordination[M]. Beijing, China: Tsinghua University Press, 2002: 169-171.
[12]
电力规划设计总院. 电力系统设计手册[M]. 北京:中国电力出版社,1998:179-189. Electric Power Planning & Design Institute. Power system design handbook[M]. Beijing, China: China Electric Power Press, 1998: 179-189.
[13]
陈礼义,曾 颖,李林川,等. 具有FACTS设备的输电网络规划[J]. 中国电机工程学报,1999,19(1):6-9. CHEN Liyi, ZENG Ying, LI Linchuan, et al . Transmission network planning with FACTS devices based on modified adaptive genetic algorithm[J]. Proceedings of the CSEE, 1999, 19(1): 6-9.
[14]
郭剑波,陈晓伦. 可控串补技术及其应用前景[C]∥国家电网公司建设新技术论坛会议. 北京:[出版者不详],2005. GUO Jianbo, CHEN Xiaolun. TCSC technology and its application vista[C]∥Conference on Construction New Technology in National Power Grid Corporation of China. Beijing, China: [s.n.], 2005.
[15]
王宝华,张勇飞. 采用T-S模糊模型的TCSC多目标控制器设计[J]. 高电压技术,2010,36(2):537-541. WANG Baohua, ZHANG Yongfei. Design for TCSC multi-objective controller using T-S fuzzy model[J]. High Voltage Engineering, 2010, 36(2): 537-541.
[16]
徐桂芝,李甲飞,武守远,等. 成碧线220 kV可控串补系统的控制策略和系统试验[J]. 电力系统自动化,2008,32(20):93-96. XU Guizhi, LI Jiafei, WU Shouyuan, et al. Control strategy and system test of Cheng-Bi 220 kV thyristor controlled series compensation[J]. Automation of Electric Power Systems, 2008, 32(20): 93-96.
[17]
魏 明,王宇红,戴朝波. 伊敏—冯屯可控串补控制策略的RTDS 实验研究[J]. 电网技术,2009,33(4):71-76. WEI Ming, WANG Yuhong, DAI Chaobo. Experimental research on control strategy of TCSC for UHVAC transmission system from Yimin to Fengtun by real-time digital simulator[J]. Power System Technology, 2009, 33(4): 71-76.
[18]
Kunder P. Power system stability and control[M]. New York, USA: McGraw-Hill Co, 1994: 113-129.
[19]
李国庆,郑浩野. 一种考虑暂态稳定约束的可用输电能力计算的新方法[J]. 中国电机工程学报,2005,25(15):20-25. LI Guoqing, ZHENG Haoye. A novel algorithm for available transfer capacity considering transient stability constrains[J]. Proceedings of the CSEE, 2005, 25(15): 20-25.
[20]
程浩忠,张 焰. 电力网络规划的方法与应用[M]. 上海:上海科学技术出版社,2002:179-189. CHENG Haozhong, ZHANG Yan. Method and application power network planning[M]. Shanghai, China: Shanghai Science and Technology Press, 2002: 179-189.
[21]
杜 治. 龙泉–政平直流输电工程主电路参数简介[J]. 湖北电力,2003,27(增刊):6-9. DU Zhi. Main circuit parameters of Long-Zheng HVDC transmission project[J]. Hubei Electric Power, 2003, 27(Supplement): 6-9.
[22]
卢 明,宁玉红,马扶予,等. 架空输电线路工频参数的测量及分析[J]. 高压电器,2004,40(3):218-220. LU Ming, NING Yuhong, MA Fuyu, et al . Measure and analysis of the power-frequency parameters of power transmission line[J]. High Voltage Apparatus, 2004, 40(3): 218-220.
[23]
潘晓杰,党 杰,刘涤尘,等. 用改进层次分析法研究TCSC最佳安装位置[J]. 高电压技术,2009,35(7):1753-1757. PAN Xiaojie, DANG Jie, LIU Dichen, et al . Design for TCSC multi-objective controller using T-S fuzzy model[J].High Voltage Engineering, 2009, 35(7): 1753-1757.
[24]
全国联网规划深化研究工作组. 远景西电东送输电方案及全国高一级电压等级研究[R]. 北京:电力规划设计总院,2003. Work Group of National Power Grid Planning Deepening Research. The prospect of power transmission from west to east scheme and research of national higher voltage level[R]. Beijing China: Electric Power Planning & Design Institute, 2003.