1. Erdös P, Rényi A. On the evolution of random graphs. A Magyar Tudományos Akadémia Matematikai Kutató Intézetének Kôzleményei(The Mathematical Institute of the Hungarian Academy of Sciences):5. Budapest, Hungary: Magyar Tudományos Akadémia, 1960:17-61
2. Faloutsos M, Faloutsos P, Faloutsos C. On power-law relationships of the Internet topology. Proceedings of the Conference on Applications, Technologies, Architectures, and Protocols for Computer Communication (SIGCOMM’99), Aug 30-Sept 3, 1999, Cambridge, MA, USA. New York, NY, USA: ACM,1999: 251-262
3. Newman M E J. The structure of scientific collaboration networks. Proceedings of the National Academy of Sciences of the United States of America, 2001, 98: 404-409
4. Watts D J, Strogatz S H. Collective dynamics of ‘small-world’ networks. Nature, 1998, 393: 440-442
5. Barabási A L, Albert R. Emergence of scaling in random networks. Science, 1999, 286(5439): 509-512
6. Dorogovtsev S N, Mendes J F F, Samukhin A N. Structure of growing networks with preferential linking. Physical Review Letters, 2000, 85(21): 4633-4636
7. Dorogovtsev S N, Mendes J F F, Samukhin A N. Size-dependent degree distribution of a scale-free growing network. Physical Review E, 2001, 63(6): 062101
8. Krapivsky P L, Redner S, Leyvraz F. Connectivity of growing random networks. Physical Review Letters, 2000, 85(21): 4629-4632
9. Krapivsky P L, Redner S. Network growth by copying. Physical Review E, 2005, 71(3), 036118
10. Kumar R, Novak J, Tomkins A. Structure and evolution of online social networks. Link Mining: Models, Algorithms and Applications. New York, NY, USA: Springer, 2010, 337-357
11. Gjoka M, Kurant M, Butts C T, et al. Practical recommendations on crawling online social networks. IEEE Journal on Selected Areas in Communications, 2011, 29(9): 1872-1892
12. Viswanath B, Mislove A, Cha M, et al. On the evolution of user interaction in Facebook. Proceedings of the 2nd ACM Workshop on Online Social Networks (WOSN’09), Aug 17,2009 Barcelona, Spain. New York, NY, USA: ACM, 2009: 37-42
13. Mislove A, Marcon M, Gummadi K P, et al. Measurement and analysis of online social networks. Proceedings of the 5th ACM/USENIX Internet Measurement Conference (IMC’07), Oct 24-26, 2007, San Diego, CA, USA. New York, NY, USA: ACM, 2007:14p
14. Li W G, Cui X P, Deng S G,et al. Growing model of online social network. Computer Engineering and Applications, 2011, 47(1): 53-55(in Chinese)
15. Wang R L, Cai G Y, Lin H. A new online social network evolving model. Computer Engineering, 2012, 38(23):71-78(in Chinese)
16. Bu Z, Xia Z Y, Wang J D, et al. A last updating evolution model for online social networks. Physica A: Statistical Mechanics and Its Applications, 2013, 392(9): 2240-2247
17. Hu H B, Guo J L, Chen J. Modeling online social networks based on preferential linking. Chinese Physics B, 2012, 21(11):118902
18. Sharifi B, Hutton M A, Kalita J. Experiments in microblog summarization. Proceedings of the IEEE 2nd International Conference on Social Computing (SocialCom’10), Aug 20-22, 2010, Minneapolis, MN,USA. Piscataway, NJ, USA: IEEE, 2010: 49-56
19. Barabási A L, Albert R, Jeong H. Mean-field theory for scale-free random networks. Physica A, 1999, 272(1/2): 173-187
20. Scott T C, Mann R B. General relativity and quantum mechanics:Towards a generalization of the Lambert W function. Applicable Algebra in Engineering, Communication and Computing, 2006, 17(1): 41-47
21. Van der Hofstad R, Hooghiemstra G, Van Mieghem P. Distances in random graphs with finite variance degrees. Random Structures and Algorithms, 2005, 27(1): 76-123
22. Aiello W, Chung F, Lu L. Random evolution of massive graphs. Handbook of Massive Data Sets. Dordrecht, Netherlands: Kluwer Academic, 2002, 97-122 |