[1] Watts D J, Strogatz S H. Collective dynamics of ‘small-world’ networks[J]. Nature, 1998, 393(6684):440-442.
[2] Barabási A L, Albert R, Jeong H. Mean-field theory of scale-free ran dom networks[J]. Physica A, 1999, 272(1/2):173-187.
[3] Newman M E J. Models of the small world[J]. Journal of Statistical Physics, 2000, 101(3):819-841.
[4] Barabási A L, Albert R. Emergence of scaling in random networks[J]. Science, 1999, 286(5439):509-512.
[5] Fang J Q, Bi Q, Li Y, et al. Sensitivity of exponents of three-powerlaws to hybrid ratio in weighted HUHPM[J]. Chinese Physics Letters, 2007, 24(1):279-282.
[6] Fang J Q, Bi Q, Li Y. From a harmonious unifying hybrid preferential model toward a large unifying hybrid network model[J]. International Journal of Modern Physics B, 2007, 21(30):5121-5142.
[7] 刘强, 方锦清, 毕桥, 等. 多种形式的加权广义Farey组织网络金字塔的复杂性[J]. 物理学报, 2010, 59(6):3704-3714. Liu Qiang, Fang Jinqing, Bi Qiao, et al. Complexity of multi-architec ture type of deterministic weighted generalized Farey organized network pyramid[J]. Acta Physica Sinica, 2010, 59(6):3704-3714.
[8] 田立新, 贺莹环, 黄益. 一种新型二分网络类局域世界演化模型[J]. 物理学报, 2012, 61(22):558-564. Tian Lixin, He Yinghuan, Huang Yi. A novel local-world-like evolving bipartite network model[J]. Acta Physica Sinica, 2012, 61(22):558-564.
[9] Li X, Chen G R. A local-world evolving network model[J]. Physica A, 2003, 328:274-286.
[10] 方锦清. 大数据浪潮冲击下网络科学与工程面临的挑战与机遇[J]. 自然杂志, 2013, 35(5):345-354. Fang Jinqing. Network science and engineering faced with a new chal lenge and developing opportunity under the wave impact of big data[J]. Chinese Journal of Nature, 2013, 35(5):345-354.
[11] 方锦清. 大脑网络的探索进程(一)——研究特点、方法与三大类型[J]. 自然杂志, 2013, 34(6):344-354. Fang Jinqing. Exploring progress on brain network (I):Research char acteristic, methods and three major types[J]. Chinese Journal of Na ture, 2013, 34(6):344-354.
[12] 方锦清. 大脑网络的探索进程(二)——进展、思考和挑战[J]. 自然杂志, 2013, 35(2):135-143. Fang Jinqing. Exploring progress on brain networks (Ⅱ):Progress, thinking and challenges[J]. Chinese Journal of Nature, 2013, 35(2):135-143.
[13] 刘权辉, 王伟, 唐明. 多层耦合网络传播综述[J]. 复杂系统与复杂性科学, 2016,13(1):48-57. Liu Quanhui, Wang Wei, Tang Ming. The review of spreading dynam ics on multilayer coupled network[J]. Complex Systems and Complexi ty Science, 2016, 13(1):48-57.
[14] 陆君安. 多重网络的同步和牵引控制[C]//2016复杂网络前沿课题论坛. 上海:上海大学, 2016. Lu Junan. The synchronization and pining control of multilayer net work[C]//2016 complex network frontier issues forum. Shanghai:Shang hai University, 2016.
[15] Barabási A L. Bursts[M]. New York:Penguim Group Inc, 2010.
[16] Barabási A L, Linked:The new science of networks[M]. Massachu setts:Perseus Publishing, 2002.
[17] 周涛, 张子柯, 陈关荣, 等. 复杂网络研究的机遇与挑战[J]. 电子科技大学学报, 2014, 43(1):1-5. Zhou Tao, Zhang Zike, Chen Guanrong, et al. The opportunities and challenges of complex networks research[J]. Journal of University of Electronic Science and Technology of China, 2014, 43(1):1-5.
[18] 刘强, 方锦清, 李永. 三层超网络演化模型特性研究[J]. 复杂系统与复杂性科学, 2015, 12(2):64-71. Liu Qiang, Fang Jinqing, Li Yong. Some characteristics of three-layer supernetwork evolution model[J]. Complex Systems and Complexity Science, 2015,12(2):64-71.
[19] Liu Q, Fang J Q, Li Y. Three layered supernetwork evolution model and the application for China-World's top 500 enterprises supernet work[J]. International Journal of Modern Physics C, 2014, 25(4):1440003.
[20] 方锦清. 探秘网络金字塔的复杂性[J]. 中国科学基金, 2013, 27(5):278-279. Fang Jinqing. The complexity exploring of network pyramid[J]. Bulle tin of National Natural Science Foundation of China, 2013, 27(5):278-279.
[21] Fang J Q, Li Y, Liu Q. Three types of network complexity pyramid[M]. Dehmer M, Mowshowitz A, Frank E S, USA:Wiley-VCH, 2013:63-98.
[22] Fang J Q. Network complexity pyramid with five levels[J]. International Journal of Systems, Control and Communications, 2009, 1(4):453-477.
[23] Li Y, Fang J Q, Liu Q. From unweighted to weighted generalized farey organized tree and the pyramid networks[J]. Journal of Systems Sci ence & Complexity, 2010, 23(4):681-700.
[24] 方锦清. 从网络科学观思考大脑网络的描述方式及其特点与可能的应用[C]//第367次香山科学会议. 北京:中国科学院香山会议处, 2010. Fang Jinqing. Thinking of the characteristics and possible application of brain network from the perspective of network science[C]//Xiang shan-Science Conference. Beijing:Xiangshan Conference Hall of Chi nese Academy of Sciences, 2010.
[25] 方锦清. 科技浪花与追梦随笔——新兴科学交叉集[M]. 北京:中国原子能出版社, 2016:157-172. Fang Jinqing. Science and technology, spray and dream essays:Emerg ing science cross set[M]. Beijing:Rtomic Energy Press, 2016:157-172.
[26] Elizabeth Q. When networks of network[J]. Science News, 2012, 182(6):8.
[27] Nagurney A, Dong J, Zhang D A. Supply chain network equilibrium model[J]. Transportation Research E, 2002, (38):281-303.
[28] 宣金钊, 张纪会, 张海滨. 电力供应链的超网络模型与均衡分析研究[J].复杂系统与复杂性科学, 2011, 8(1):20-26. Xuan Jinzhao, Zhang Jihui, Zhang Haibin. Super network model and equilibrium analysis of electric power supply chain[J]. Complex Sys tems and Complexity Science, 2011, 8(1):20-26.
[29] 董琼, 马军. 供应链超网络均衡模型[J]. 上海理工大学学报, 2011, 33(3):238-247. Dong Qiong, Ma Jun. Recent development on supply chain super net work modeling[J]. Journal of University of Shanghai for Science and Technology, 2011, 33(3):238-247.
[30] 胡晓峰, 李志强, 贺筱媛, 等. 复杂网络:战争复杂系统建模仿真新途径[J]. 装备指挥技术学院学报, 2009, 20(2):1-7. Hu Xiaofeng, Li Zhiqiang, He Xiaoyuan, et al. Complex networks:The new method of war complex system modeling and simulation[J]. Jour nal of the Academy of Equipment Command & Technology, 2009, 20(2):1-7.
[31] 雷延军, 李向阳. 军事供应链"超网络" 结构模型研究[J]. 物流科技, 2006, 29(136):60-62. Lei Yanjun, Li Xiangyang. Research on "super network" structure of military supply chain[J]. Logistics Science Technology, 2006, 29(136):60-62.
[32] 方锦清. 试论四大层次的高科技网络的若干特点和思考[C]//第三届全国复杂网络学术会议文集. 上海:上海系统科学出版社, 2008:1-43. Fang Jinqing. Some characteristics and thinking of four levels of hightech network[C]//Proceedings of the 3rd National Complex Network Conference. Shanhai:Shanghai System Science Press, 2008:1-43.
[33] 方锦清, 李永, 刘强. 高科技网络和国防相关网络的若干研究概况[J]. 复杂系统与复杂性科学, 2010, 7(2/3):42-45. Fang Jinqing, Li Yong, Liu Qiang. Outline of general situations of High-Tech networks and national defense networks[J]. Complex Sys tems and Complexity Science, 2010, 7(2/3):42-45.
[34] Nagurney A. Supply chain network economics:Dynamics of prices, flows and profits[M]. Cheltenham:Edward Elgar Publishing, 2006.
[35] 王众托, 王志平. 超网络初探[J]. 管理学报, 2008, 5(1):1-16. Wang Zhongtuo, Wang Zhiping. Elementary study of supernetworks[J]. Chinese Journal of Management, 2008, 5(1):1-16.
[36] 王志平, 王众托. 超网络理论及其应用[M]. 北京:科学出版社, 2008. Wang Zhiping, Wang Zhongtuo. The theory and application of hyper network[M]. Beijing:Science Press, 2008.
[37] Boccaletti S, Bianconi G, Criado R, et al. The structure and dynamics of multilayer networks[J]. Physics Reports, 2014, 544(1):1-122.
[38] Wang J W, Rong L L, Deng Q H, et al. Evolving hypernetwork model[J]. European Physical Journal B, 2010, 77:493-498.
[39] 胡枫, 赵海兴, 马秀娟. 一种超网络演化模型构建及特性分析[J]. 中国科学, 2013, 43(1):16-22. Hu Feng, Zhao Haixing, Ma Xiujuan. An evolving hypernetwork mod el and its properties[J]. Science China, 2013, 43(1):16-22.
[40] Yang G Y, Liu J G. A local-world evolving hypernetwork model[J]. Chinese Physics B, 2014, 23(1):018901.
[41] 郭进利, 祝昕昀. 超网络中标度律的涌现[J]. 物理学报, 2014, 63(9):090207. Guo Jinli, Zhu Xinyun. Emergence of scaling in hypernetworks[J]. Ac ta Physica Sinica, 2014, 63(9):090207.
[42] 郭进利. 非均齐超网络中标度律的涌现-富者愈富导致幂律分布吗?[J]. 物理学报, 2014, 63(20):208901. Guo Jinli. Emergence of scaling in non-uniform hypernetworks:Does "the rich get richer" lead to a power-law distribution?[J]. Acta Physi ca Sinica, 2014, 63(20):208901.
[43] Watts D J. A simple model of global cascades on random networks[J]. Proceedings of the National Academy of Sciences, 2002, 99(9):5766-5771.
[44] Buldyrev S V, Parshani R, Paul G, et al. Catastrophic cascade of fail ures in interdependent networks[J]. Nature, 2010, 464:1025-1028.
[45] Parshiani R, Buldyrev S V, Havlin S. Interdependent networks:Reduc ing the coupling strength leads to a change from a first to second or der percolation transition[J]. Physics Review Letter, 2010, 105:048701.
[46] Gao J, Buldyrev S V, Stanley E H, et al. Network formed from interde pendent networks[J]. Nature Physics, 2012, 8:40-48.
[47] Havlin S, Stanley H E, Bashan A, et al. Percolation of interdependent network of networks[J]. Chaos Solitons & Fractals, 2015, 72:4-19.
[48] Gomez S, Diaz-guilera A, Gomez-Gardenes J, et al. Diffusion dynam ics on multiplex networks[J]. Physics Review Lettet, 2013, 110:028701.
[49] Ginestra B, Dorogovtsev S N. Multiple percolation transitions in a con figuration model of network of networks[J]. Physical Review E, 2014, 89(6):062814.
[50] Gao J X, Buldyrev S V, Shlomo H, et al. From a single network to a network of networks[J]. Physics Review Letter, 2014, 1(3):346-356.
[51] Havlin S, Kenett D Y, Bashan A, et al. Vulnerability of network of net works[J]. European Physical Journal Special Topics, 2014, 223(11):2087-2106.
[52] Fang J Q, Li Y. Transition features from simplicity-universality to complexity-diversification under UHNTF[J]. Communication Theory Physics, 2010, 53(2):389-398.
[53] Fang J Q, Li Y. Advances in unified hybrid theoretical model of net work science[J]. Advances in Mechanics, 2008, 38(6):663-678.
[54] Fang J Q, Bi Q, Li Y, et al. Towards a harmonious unifying hybrid model for any evolving complex networks[J]. Advances in Complex Systems, 2007, 10(2):117-141.
[55] 方锦清. 多种类型的网络金字塔的研究进展[J]. 复杂系统与复杂性科学, 2013, 10(2):69-76. Fang Jinqing. Advances in network pyramid[J]. Complex Systems and Complexity Science, 2013, 10(2):69-76.
[56] Fang J Q, Liu Q H, Tang M, et al. Network science faces the chal lenge and opportunity:Exploring"Network of Networks"and its uni fied theoretical framework[J]. Journal of Applied Analysis and Compu tation, 2016, 6(1):12-29.
[57] 方锦清. 从单一网络向《网络的网络》 的转变进程——略论多层次超网络模型的探索与挑战[J]. 复杂系统与复杂性科学, 2016,13(1):40-47. Fang Jinqing. From a single network to "network of networks" develop ment process:Some discussions on the exploration of multilayer super network models and challenges[J]. Complex Systems and Complexity Science, 2016, 13(1):40-47.
[58] 刘强, 方锦清, 李永. 基于统一混合网络理论框架的多层次超网络模型研究[J]. 复杂系统与复杂性科学, 2016, 13(1):84-90. Liu Qiang, Fang Jinqing, Li Yong. Multilayer supernetwork model based on the unifying hybrid network theory framework[J]. Complex Systems and Complexity Science, 2016, 13(1):84-90.
[59] 方锦清. 多层超网络探索中的若干问题与思考[J]. 科技导报, 2017, 35(14):33-41. Fang Jinqing. Some problems and Thinking on the exploration of mul tilayer super network[J]. Science & Technology Review, 2017, 35(14):33-41.
[60] 刘强, 方锦清, 李永. 世界五百强企业网络的若干特点[C]//第三届全国复杂网络学术会议文集. 上海:上海系统科学出版社, 2008:252-265. Liu Qiang, Fang Jinqing, Li Yong. Some characteristics of world top 500 enterprise network[C]//Proceedings of the 3rd National Complex Network Conference. Shanghai:Shanghai System Science Press, 2008:252-265.