[1] Pagani G A, Aiello M. From the grid to the smart grid, topologically[J].Physica A: Statistical Mechanics and its Applications, 2016, 449: 160-175.
[2] 王光增, 曹一家, 包哲静,等. 一种新型电力网络局域世界演化模型[J].物理学报, 2009, 6: 3597-3602.
Wang Guangzeng, Cao Yijia, Bao Zhejing, et al. A novel local-world evolving network model for power grids[J].Chinese Journal of Physics, 2009, 6: 3597-3602.
[3] Conti J P. The day the samba stopped[power blackouts] [J].Engineering and Technology, 2010, 5(4): 46-47.
[4] Bhangu N S, Singh R, Pahuja G L. Reliability centred maintenance in a thermal power plant: a case study[J].International Journal of Productivity and Quality Management. 2011, 7(2): 209-228.
[5] Park J W, Seol W C. Considerations for severe accident management under extended station blackout conditions in nuclear power plants[J].Progress in Nuclear Energy, 2016, 88: 245-256.
[6] Aguiar A S, Lamego Simoes Filho F F, Alvim A C M, et al. Station blackout in unit 1 and analysis of the wind field in the region of Angra dos Reis[J].Annals of Nuclear Energy. 2015, 78: 93-103.
[7] Watanabe T, Ishigaki M, Hirano M. Analysis of BWR long-term station blackout accident using TRAC-BF1[J].Annals of Nuclear Energy 2012, 49: 223-226.
[8] Zeng B, Ouyang S, Zhang J, et al. An analysis of previous blackouts in the world: lessons for China′s power industry[J].Renewable and Sustainable Energy Reviews, 2015, 42: 1151-1163.
[9] 林伟芳, 汤涌, 孙华东,等. 巴西“2.4”大停电事故及对电网安全稳定运行的启示[J].电力系统自动化, 2011, 35(9): 1-5.
Lin Weifang, Tang Yong, Sun Huadong, et al. Brazil “2.4” blackout accident and its implications for power system security and stability operation[J].Automation of Electric Power System, 2011, 35(9): 1-5.
[10] 汤涌, 卜广全, 易俊. 印度“7.30”、 “7.31”大停电事故分析及启示[J].中国电机工程学报, 2012, 32(25): 167-174.
Tang Yong, Bu Guangquan, Yi Jun. India “7.30” and “7.31” blackout accident analysis and revelation[J].Proceedings of the CSEE, 2012, 32(25): 167-174.
[11] Hu J T, Du Y X, Mo H M, et al. A modified weighted TOPSIS to identify influential nodes in complex networks[J].Physica A: Statistical Mechanics and Its Applications, 2016, 444: 73-85.
[12] Mo H M, Gao C, Deng Y. Evidential method to identify influential nodes in complex networks[J].Journal of Systems Engineering & Electro-nics, 2015, 26(2): 381-387.
[13] Zhao J, Yu L, Li J R, et al. Identifying influential nodes based on graph signal processing in complex networks[J].Chinese Physics B, 2015, 24(5): 58904-58913.
[14] Zhang T P, Fang B, Liang X Y. A novel measure to identify influential nodes in complex networks based on network global efficiency[J].Modern Physics Letters B, 2015, 29(28): 1550168.
[15] Du Y, Gaoa C, Hub Y, et al. A new method of identifying influential nodes in complex networks based on TOPSIS[J].Phys A, 2014, 399: 57-69.
[16] 刘彬, 王文吉, 李雅倩,等. 基于能量因素的无线传感器网络关键节点判定算法[J].电子与信息学报, 2014, 36(7): 1728-1734.
Liu Bin, Wang Wenji, Li Yaqian, et al. Key nodes decision algorithm for wireless sensor networks based on energy factor[J].Journal of Electronics & Information Technology, 2014, 36(7): 1728-1734.
[17] 张喜平, 李永树, 刘刚,等. 节点重要度贡献的复杂网络节点重要度评估方法[J].复杂系统与复杂性科学, 2014, 11(3): 26-32.
Zhang Xiping, Li Yongshu, Liu Gang, et al. Evaluation method of complex network node importance based on node importance contribution[J].Complex Systems and Complexity Science, 2014, 11(3): 26-32.
[18] 肖卫东, 谭文堂, 葛斌,等. 网络节点重要度的快速评估方法[J].系统工程理论与实践, 2013, 33(7): 1898-1904.
Xiao Weidong, Tan Wentang, Ge Bin, et al. A fast evaluation method for the importance of network nodes[J].Systems Engineering-Theory & Practice, 2013, 33(7): 1898-1904.
[19] 许立雄, 刘俊勇, 刘洋,等. 节点重要度的分类综合评估[J].中国电机工程学报, 2014, 34(10): 1609-1617.
Xu Lixiong, Liu Junyong, Liu Yang, et al. Classification and synthesis evaluation of node importance[J].Proceedings of the CSEE, 2014, 34(10): 1609-1617.
[20] 鞠文云, 李银红. 基于最大流传输贡献度的电力网关键线路和节点辨识[J].电力系统自动化, 2012, 36(9): 6-12.
Ju Wenyun, Li Yinhong. Key lines and nodes identification of power network based on maximum transmission contribution degree[J].Automation of Electric Power Systems, 2012, 36(9): 6-12.
[21] 于会, 刘尊, 李勇军. 基于多属性决策的复杂网络节点重要性综合评价方法[J].物理学报, 2013, 2(12): 1-8.
Yu Hui, Liu Zun, Li Yongjun. Comprehensive evaluation method of complex network node importance based on multi attribute decision making[J].Chinese Journal of Physics, 2013, 2(12): 1-8.
[22] Filatrella G, Nielsen A H, Pedersen N F. Analysis of a power grid using a kuramoto-like model[J].European Physical Journal. B, 2008, 61(4): 485-491.