IEEE/ACM Transactions on Networking · 2007 · 284 citations · 22 references
Mobility ProtocolNetwork ScienceWireless RoutingOpportunistic NetworkMobility ModelMobility ModelingAd Hoc NetworkAd Hoc NetworksNetwork AnalysisCapacity Trade-offsMobile ComputingMobility ManagementDelay-tolerant NetworkingMulti-hop RoutingGlobal Perspective
Since the original work of Grossglauser and Tse, which showed that mobility can increase the capacity of an ad hoc network, there has been a lot of interest in characterizing the delay-capacity relationship in ad hoc networks. Various mobility models have been studied in the literature, and the delay-capacity relationships under those models have been characterized. The results indicate that there are trade-offs between the delay and capacity, and that the nature of these trade-offs is strongly influenced by the choice of the mobility model. Some questions that arise are: (i) How representative are these mobility models studied in the literature? (ii) Can the delay-capacity relationship be significantly different under some other "reasonable" mobility model? (iii) What sort of delay-capacity trade-off are we likely to see in a real world scenario? In this paper, we take the first step toward answering some of these questions. In particular, we analyze, among others, the mobility models studied in recent related works, under a unified framework. We relate the nature of delay-capacity trade-off to the nature of node motion, thereby providing a better understanding of the delay-capacity relationship in ad hoc networks in comparison to earlier works.
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The capacity of wireless networks
Piyush Gupta, P. R. Kumar · IEEE Transactions on Information Theory · 2000 · 8.3K citations
Network Science, Engineering, W Bits +12
Reversible Markov Chains and Random Walks on Graphs
David Aldous, James Allen Fill · 2014 · 949 citations
Mobility increases the capacity of ad-hoc wireless networks
Matthias Grossglauser, David Tse · 2002 · 739 citations