[1] Zhu Ying, Xu Bin, Shi Xinghua, et al. A survey of social-based routing in delay tolerant networks:positive and negative social effects[J]. IEEE Communications Surveys & Tutorials, 2013, 15(1):387-401.
[2] Vahdat A, Becker D. Epidemic routing for partially connected ad hoc networks[R]. Duke University, 2000.
[3] Lindgren A, Doria A, Schelén O. Probabilistic routing in intermittently connected networks[J]. Acm Sigmobile Mobile Computing and Communications Review, 2003, 7(3):239-254.
[4] 陶桦, 许艺凡, 王笑笑, 等. 一种运行轨迹驱动的移动自组织网络路由算法[J]. 北京邮电大学学报, 2014, 37(6):125-128. Tao Hua, Xu Yifan, Wang Xiaoxiao, et al. A trace-driven routing algorithm in mobile ad hoc networks[J]. Journal of Beijing University of Posts and Telecommunications, 2014, 37(6):125-128.
[5] Hui P, Crowcroft J. How small labels create big improvements[C]//2007 IEEE PerCom Workshop on Smart Environments. Hawaii:IEEE Press, 2007:65-70.
[6] Abdelkader T, Naik K, Nayak A, et al. SGBR:a routing protocol for delay tolerant networks using social grouping[J]. IEEE Trans on Parallel and Distributed Systems, 2013, 24(12):2472-2481.
[7] Gao W, Cao G H, Porta T L, et al. On exploiting transient social contact patterns for data forwarding in delay-tolerant networks[J]. IEEE Trans on Mobile Computing, 2013, 12(1):151-165.
[8] Zhao Y X, Wu J. Socially-aware publish/subscribe system for human networks[C]//2010 IEEE Wireless Communications and Networking Conference (WCNC). Francisco, USA:IEEE Press, 2010:1-6.
[9] Lin C J, Chen C W, Chou C F. Preference-aware content dissemination in opportunistic mobile social networks[C]//2012 IEEE International Conference on Computer Communications (INFOCOM). Orlando:IEEE Press, 2012:1960-1968.
[10] Wei Kaimin, Guo Song, Zeng Deze, et al. Exploiting small world properties for message forwarding in delay tolerant networks[J]. IEEE Trans on Computers, 2015, 64(10):2809-2818.
[11] Srinivasan V, Motani M, Ooi W T. Analysis and implications of student contact patterns derived from campus schedules[C]//200612th Annual International Conference on Mobile Computing and Networking (MobiCom). Los Angeles:ACM, 2006:86-97. |