[1] 易海琼,兑潇玮,李勇. 基于隔离式断路器的智能变电站电气主接线优化[J]. 电力建设,2014,35(6):92-96. YI Haiqiong, DUI Xiaowei, LI Yong. Main electrical connection optimization of smart substation based on disconnecting circuit- breaker [J]. Electric Power Construction, 2014, 35(6): 92-96. [2] 黄扬琪,路欣怡,刘念,等. 含隔离式断路器的新一代智能变电站主接线可靠性评估及灵敏度分析[J]. 电气技术,2014(6):10-14,79. HUANG Yangqi, LU Xinyi, LIU Nian, et al . Anaeysis on reliability and sensitivity of main electrical connection for new generation smart substation with disconnecting circuit breaker[J]. Electrical Technology, 2014(6): 10-14, 79. [3] 刘伟,田志国,袁亮. 电子互感器和隔离式断路器一体化关键技术研究[J]. 高压电器,2014,50(12):116-120. LIU Wei, TIAN Zhiguo, YUAN Liang. Research on the key technology of the integration of electronic instrument transformer and isolated circuit breaker[J]. High Voltage Apparatrs, 2014, 50(12): 116-120. [4] 罗苏南,卢为,须雷,等. 集成于隔离断路器的电子式电流互感器[J]. 高压电器,2013,49(12):75-79,87. LUO Sunan, LU Wei, XU Lei, et al . Electronic current transformer integrated to disconnecting circuit breaker[J]. High Voltage Apparatus, 2013, 49(12): 75-79, 87. [5] 李劲彬,陈隽. 新一代智能变电站中隔离断路器的技术特点分析[J]. 湖北电力,2013,37(7):5-8. LI Jinbin, CHEN Jun. Analysis on the technical characteristics of disconnecting circuit breaker in new generation smart susbstation[J]. Hubei Electric Power, 2013, 37(7): 5-8. [6] 李劲彬,阮羚,陈隽. 应用于新一代智能变电站的隔离断路器[J]. 电力建设,2014,35(1):30-34. LI Jinbin, RUAN Ling, CHEN Jun. Application of disconnecting circuit breaker in new generation smart substation [J]. Electric Power Construction, 2014, 35(1): 30-34. [7] 刘文,杨慧霞,祝斌. 智能电网技术标准体系研究综述[J]. 电力系统与保护,2012,40(10):120-126. LIU Wen, YANG Huixia, ZHU Bin. Review of research on smart grid technical standard system[J]. Power System Protection and Control, 2012, 40(10): 120-126. [8] 王益民. 坚强智能电网技术标准体系研究框架[J]. 电力系统自动化,2010,34(22):1-6. WANG Yimin. Research framework of technical standard system of strong & smart grid[J]. Automation of Electric Power Systems, 2010, 34(22): 1-6. [9] 刘有为,周华. 智能高压开关设备信息流方案设计[J]. 高压电器,2011,47(1):1-4,17. LIU Youwei, ZHOU Hua. Information flow scheme designed for smart HV switchgear[J]. High Voltage Apparatus, 2011, 47(1): 1-4, 17. [10] 刘有为,邓彦国,吴立远. 高压设备智能化方案及技术特征[J]. 电网技术,2010,34(7):1-4. LIU Youwei, DENG Yanguo, WU Liyuan. Technical characteristics and solution of smart high-voltage equipment[J]. Power System Technology, 2010, 34(7): 1-4. [11] LARSSON J R, SLVER C E, HAGLUND L. Disconnecting circuit breaker enables smarter substation design[C]// 2010 IEEE PES Transmission and Distribution Conference and Exposition: Smart Solutions for a Changing World, 2010: 1-5. [12] FAXA M. Applications of disconnecting circuit breakers [C]// 2006 IEEE PES transmission and distribution conference and exposition latin america, venezuela, 2006. [13] Switzerland: International Electrotechnical Commission. High- voltage alternating current disconnecting circuit-breakers for rated voltages of 72.5 kV and above: IEC 62271-108-2005[S]. 2005. [14] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会. 额定电压72.5 kV及以上交流隔离断路器:GB/T 27747—2011[S]. 2011. [15] 李斌,郝建成,刘一涛,等. 断路器机械特性特征数据稳定性和故障机理[J]. 中国电力,2015,48(2):59-65. LI Bin, HAO Jiancheng, LIU Yitao, et al . Analysis on characteristic data stability and fault mechanism of circuit breaker mechanical characteristics[J]. Electric Power, 2015, 48(2): 59-65. |