[1] 张桂斌,徐政. 直流输电技术的新发展[J]. 中国电力,2000,33(3):32-35. ZHANG Gui-bin, XU Zheng. The new development of HVDC technology [J]. Electric Power, 2000, 33(3): 32-35. [2] 赵中原,方志,邱毓昌,等. 高压直流换流站技术现状与发展[J]. 中国电力,2002,35(3):48-51. ZHAO Zhong-yuan, FANG Zhi, QIU Yu-chang, et al . Present status and development trends for HVDC converter station [J]. Electric Power, 2002, 35(3): 48-51. [3] 张建设,张尧,张志朝,等. 直流系统控制方式对大扰动后交直流混合系统电压和功率恢复的影响[J]. 电网技术,2005,29(5):20-24. ZHANG Jian-she, ZHANG Yao, ZHANG Zhi-chao, et al . Influence of DC system control modes on voltage and power recovery after large disturbance in hybrid AC/DC system[J]. Power System Technology, 29(5): 20-24. [4] FLOURENTZOU N, AGELIDIS V G, DEMETRIADES G D. VSC-based HVDC power transmission systems: an overview[J]. IEEE Transactions on Power Electronics, 2009, 24(3): 592-602. [5] 赵成勇,李金丰,李广凯. 基于有功功率和无功功率独立调节的VSC-HVDC控制策略[J]. 电力系统自动化,2005,29(9):20-24. ZHAO Cheng-yong, LI Jin-feng, LI Guang-kai. VSC-HVDC control strategy based on respective adjustment of active and reactive power [J]. Automation of Electric Power System, 2005, 29(9): 20-24. [6] 陈凌云. 美国康涅狄格至长岛轻型直流跨海电缆工程[J]. 中国电力,2008,41(10):80-83. CHEN Ling-yun. Cross sound cable interconnector with HVDC light technology between Connecticut and Long Island in USA [J]. Electric Power, 2008, 41(10): 80-83. [7] DORN J, HUANG H, RETZMANN D. Novel voltage-sourced converter for HVDC and FACTS applications[C]//Nanjing, China: CIGRE Symposium, 2007: 1-4. [8] ALLEBROD S, HAMERSKI R, MARQUARDT R. New transformerless, scalable modular multilevel converter for HVDC- transmission[C]//Rhocles, Greece: Proceedings of IEEE Power Electronics Specialist Conference, 2008: 15-19. [9] LESNICAR A, MARQUARDT R. An innovative modular multilevel converter topology suitable for a wide power range[C]//Bologna, Itaey: Proceedings of IEEE PowerTech Conference, 2003: 1-6. [10] LI Zi-xin, WANG Ping, ZHU Hai-bin, et al . An improved pulse width modulation method for chopper-cell-based modular multilevel converters [J]. IEEE Transactions on Power Electronics, 2012, 27(8): 3472-3481. [11] 管敏渊,徐政,屠卿瑞,等. 模块化多电平换流器型直流输电的调制策略[J]. 电力系统自动化,2010,34(2):48-52. GUAN Min-yuan, XU Zheng, TU Qing-rui, et al . Nearest level modulation for modular multilevel converter in HVDC transmission[J]. Automation of Electric Power System, 2010, 34(2): 48-52. [12] SAEEDIFARD M, IRAVANI R. Dynamic performance of a modular multilevel back-to-back HVDC system[J]. IEEE Transactions on Power Delivery, 2010, 25(4): 2903-2912. [13] HAGIWARA M, AKAGI H. Control and experiment of pulsewidth modulated modular multilevel converters [J]. IEEE Transactions on Power Electronics, 2009, 24(7): 1737-1746. [14] 刘忠淇,宋强,刘文华. 基于模块化多电平变流器的轻型直流输电系统[J]. 电力系统自动化,2010,34(2):53-58. LIU Zhong-qi, SONG Qiang, LIU Wen-hua. VSC-HVDC system based on modular multilevel converters[J]. Automation of Electric Power System, 2010, 34(2): 53-58. [15] CHONG H N, MAX A P, LI R, et al . A multilevel modular converter for a large, light weight wind turbine generator [J]. IEEE Transactions on Power Electronics, 2008, 23(3): 1062-1074. [16] 张先伟,冯春业,邹荣盛,等. ±500 kV团林换流站的自主化设计[J]. 电力建设,2012,33(5):25-27. ZHANG Xian-wei, FENG Chun-ye, ZOU Rong-sheng, et al . Independent design features of ±500 kV Tuanlin converter station [J]. Electric Power Construction, 2012, 33(5): 25-27. |