[1] | 刘言菊,田铭兴,何 利,等.单相磁阀式可控电抗器的设计原理研究[J]. 电网与清洁能源,2011,27(7):36-38. LIU Yanju,TIAN Mingxing,HE Li,et al. Design principle of single-phase magnetic valve controlled reactor[J]. Power System and Clean Energy, 2011,27(7):36-38.
|
[2] | 杨 杰,陈希英,邵建雄.三峡水电站短路电流水平及限制措施分析[J]. 电网技术,1997,21(21):17-20. YANG Jie,CHEN Xiying,SHAO Jianxiong.Analysis of short circuit current level of three gorges hydroelectric power plant and limiting measurers[J]. Power System Technology, 1997, 21(21): 17-20.
|
[3] | 祁万春,奚巍民,张 谦,等. 应用500 kV高阻抗主变压器提高220 kV片区供电能力[J].电力系统自动化,2008,32(14): 96-95. QI Wanchuan,XI Weimin,ZHANG Qian,et al. Application of the main transformer of 500 kV high impedance to increase power supply capacity of the 220 kV area[J]. Power System Automation,2008,32(14): 96-95.
|
[4] | 黄娟娟,郑英芬.特高压网架对华中电网短路电流水平的影响分析及其限流措施[J]. 中国电力,2007,4(3): 49-52. HUANG Juanjuan,ZHEN Yingfen. Influence analysis and restrictive measures of EHV to the grid’s short-circuit current in central china [J]. China Power,2007,4(3): 49-52.
|
[5] | 阮前途. 上海电网短路电流控制的现状与对策[J]. 电网技术,2005,29(2): 78-83. RUAN Qiantu. Research situation of short circuit current control in Shanghai power grid and counter measures[J]. Power System Technology,2005,29(2): 78-83.
|
[6] | 吴 获. 限制大电网短路电流水平的措施的研究[D]. 杭州: 浙江大学,2005. WU Di. Study of restrictive measures to the large power grid’s short-circuit current[D]. Hangzhou: Zhejiang University,2005.
|
[7] | 李春叶,李 胜,尚敬福. 电磁环网方式与分层分区运行方式之决策[J]. 电力学报,2006,21(2): 160-163. LI Chunye,LI Sheng,SHANG Jingfu. Comparison of operation mode of electromagnetic loop network and voltage-grading & distict-dividing[J]. Journal of Electric Power,2006,21(2): 160-163.
|
[8] | 李继红,黄良宝,徐 谦,等. 一种降低短路电流水平的措施―母线分列运行[J]. 电力系统自动化,2001,25(14): 62-63. LI Jihong,HUANG Liangbao,XU Qian,et al. A measure to reduce short-circuit current level-busbars seperated operation[J]. Power System Automation,2001,25(14): 62-63.
|
[9] | 袁 娟, 刘文颖,董明齐,等.西北电网短路电流的限制措施[J]. 电网技术,2007,31(10):42-45. YUAN Juan, LIU Wenying, DONG Mingqi, et al.Application of measures limiting short circuit currents in northwest China power grid[J]. Power System Technology,2007,31(10):42-45.
|
[10] | 王梅义,吴竟昌,蒙定中. 大电网系统技术[M]. 北京: 水利电力出版社,1995. WANG Meiyi,WU Jingchang,MENG Dingzhong. The technology of large power grid[M]. Beijing: Water Resources and Electric Power Press,1995.
|
[11] | 朱天游. 500 kV自耦变压器中性点经小电抗接地方式在电力系统中的应用[J]. 电网技术,1999,23(4): 15-19. ZHU Tianyou. Overvoltage and insulation coordination of 500 kV autotransformer neutral grounding through small reactance[J]. Power System Technology,1999,23(4): 15-19.
|
[12] | 乐启昌,乐萧彤. 高阻抗变压器的应用[J]. 黑龙江电力,2001,23(6): 442-445. LE Qichang,LE Xiaotong. The application of the high-impedance transformer[J]. Heilongjiang Electric Power,2001,23(6): 442-445.
|
[13] | 殷 可, 高 凯. 应用串联电抗器限制 500 kV短路电流分析[J]. 华东电力, 2004,32(9): 7-10. YIN Ke, GAO Kai. Analysis of using series reactor to limit 500 kV short circuit current[J]. East China Electric Power,2004,32(9): 7-10.
|
[14] | FILHO J A,FERNANDEZ P C,ROSE E H,et al. Brazilian successful experience in the usage of current limiting reactors for short-circuit limitation[C]//Xi Symposium of Specialist in Electric Operational and Expansion Planning.Brasil:IEEE,2009:23-29.
|
[15] | 王光辉,张式雷. 磁阀式可控电抗器噪声问题探讨[J]. 变压器,2014,51(2):30-33. WANG Guanghui, ZHANG Shilei. Discussion on noise of magnetic valve controllable reactor[J]. Transformer,2014,51(2):30-33.
|
[16] | 尤丹华,蒋光祖. 单相感应调压器直接构成可调电抗器的实施方案[J]. 变压器,2013,50(10):52-55. YOU Danhua, JIANG Guangzu. Implementation plans of single-phase induction regulator form adjustable reactor[J]. Transformer,2013,50(10):52-55.
|
[17] | Consolidated Edison Company of New York. Inc. Con edison system fault current management plan[EB/OL].http://www.nyiso.com/ public/webdocs/markets_operations/committees/bic/meeting_materials/2007-10-10/BIC_Agenda_07_Fault_Current_Background_Information.pdf,2007-10-10.
|
[18] | ABB. ABB installs its largest series reactor at Trans. Grid’s sydney south 330 kV substation[EB/OL]. http://www04.abb.com/global/auabb/auabb500.nsf!OpenDatabase&db=/global/auabb/auabb504.nsf&v=DB2&e=us&url=/global/seitp/seitp202.nsf/0/2E78E7E447EB8C8548256E8500836F6F!OpenDocument,2004-04-30.
|
[19] | 薛 敏. 首台 500 kV线路串联电抗器在华东电网的应用研究[J]. 华东电力,2008,36(11): 47-49. XUE Min. Application of the first 500 kV series reactors to East China Power Grid[J]. East China Electric Power,2008,36(11): 47-49.
|
[20] | 薛 敏. 泗泾站装设500 kV高压串联电抗器的过电压分析[J]. 华东电力,2007,36(6): 44-46. XUE Min. Over voltage analysis after installation of 500 kV series reactors in Sijing Substation[J]. East China Electric Power,2007,36(6): 44-46.
|
[21] | 祝瑞金, 蒋跃强, 杨增辉,等.串联电抗器限流技术的应用研究[J]. 华东电力, 2005, 5(33):18-22. ZHU Ruijin, JIANG Yueqiang, YANG Zenghui,et al. Application study of series reactor current-limiting technology[J]. East China Electric Power, 2005, 5(33):18-22.
|
[22] | 陈水明,许 伟,王振兴,等.500 kV限流电抗器对瞬态电压的影响及限制措施[J]. 华北电力技术,2008,8(1):11-15. CHEN Shuimin, XU Wei, WANG Zhenxing, et al.Effects of 500 kV current-limiting inductors on transient recovery voltage and its countermeasures[J]. North China Electric Power, 2008, 8(1):11-15.
|
[23] | GB 1984―2003 交流高压断路器[S]. 北京:中国标准出版社,2003. GB 1984―2003 AC high voltage circuit breaker[S]. Beijing: China Standards Press,2003.
|
[24] | 夏长根.一起35 kV干式并联空心电抗器故障分析[J]. 电力电容器与无功补偿,2009,30(5):43-45. XIA Changgen. Analysis of fault of a 35 kV dry-type air core shunt reactor[J]. Power Capacitor & Reactive Power,2009,30(5):43-45.
|
[25] | 平孝香,刘 菁.无功补偿装置中串联电抗器的作用[J]. 电力电容器与无功补偿,2009,30(2):21-24. PING Xiaoxiang,LIU Jing.The effect of series section reactor in reactive power compensation equipment[J]. Power Capacitor & Reactive Power Compensation,2009,30(2):21-24.
|
[26] | 陶 梅,江钧祥.串联电抗器及其电抗率的选取[J]. 电力电容器与无功补偿,2010,31(3):58-61. TAO Mei,JIANG Junxiang. Selection of series reactor and its reactance ratio[J]. Power Capacitor & Reactive Power,2010,31(3):58-61.
|