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A social activity and physical contact-based routing algorithm in mobile opportunistic networks for emergency response to sudden disasters
Authors:Xiaoming Wang  Yaguang Lin  Shanshan Zhang  Zhipeng Cai
Institution:1. School of Computer Science, Shaanxi Normal University, Xi’an, China;2. Department of Computer Science, Georgia State University, Atlanta, GA, USA
Abstract:Sudden disasters such as earthquake, flood and hurricane necessitate the employment of communication networks to carry out emergency response activities. Routing has a significant impact on the functionality, performance and flexibility of communication networks. In this article, the routing problem is studied considering the delivery ratio of messages, the overhead ratio of messages and the average delay of messages in mobile opportunistic networks (MONs) for enterprise-level emergency response communications in sudden disaster scenarios. Unlike the traditional routing methods for MONS, this article presents a new two-stage spreading and forwarding dynamic routing algorithm based on the proposed social activity degree and physical contact factor for mobile customers. A new modelling method for describing a dynamic evolving process of the topology structure of a MON is first proposed. Then a multi-copy spreading strategy based on the social activity degree of nodes and a single-copy forwarding strategy based on the physical contact factor between nodes are designed. Compared with the most relevant routing algorithms such as Epidemic, Prophet, Labelled-sim, Dlife-comm and Distribute-sim, the proposed routing algorithm can significantly increase the delivery ratio of messages, and decrease the overhead ratio and average delay of messages.
Keywords:Mobile opportunistic networks  message transmission  time-evolving graph  social activity degree  physical contact factor  routing algorithm
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