DocumentCode :
3557914
Title :
Scalable Routing in Cyclic Mobile Networks
Author :
Liu, Cong ; Wu, Jie
Author_Institution :
Dept. of Comput. Sci. & Eng., Florida Atlantic Univ., Boca Raton, FL, USA
Volume :
20
Issue :
9
fYear :
2009
Firstpage :
1325
Lastpage :
1338
Abstract :
The nonexistence of an end-to-end path poses a challenge in adapting traditional routing algorithms to delay-tolerant networks (DTNs). Previous works have covered centralized routing approaches based on deterministic mobility, ferry-based routing with deterministic or semideterministic mobility, flooding-based approaches for networks with general mobility, and probability-based routing for semideterministic mobility models. Unfortunately, none of these methods can guarantee both scalability and delivery. In this paper, we extend the investigation of scalable deterministic routing in DTNs with repetitive mobility based on our previous works. Instead of routing with global contact knowledge, we propose a routing algorithm that routes on contact information compressed by three combined methods. We address the challenge of efficient information aggregation and compression in the time-space domain while maintaining critical information for efficient routing. Then, we extend it to handle a moderate level of uncertainty in contact prediction. Analytical studies and simulation results show that the performance of our proposed routing algorithm, DTN hierarchical routing (DHR), is comparable to that of the optimal time-space Dijkstra algorithm in terms of delay and hop count. At the same time, the per-node storage overhead is substantially reduced and becomes scalable.
Keywords :
data compression; mobile radio; telecommunication network routing; time-domain analysis; DTN hierarchical routing; cyclic mobile networks; delay-tolerant networks; end-to-end path; information aggregation; information compression; per-node storage overhead; scalable deterministic routing; time-space domain; Algorithm/protocol design and analysis; Contact; Routing protocols; delay-tolerant networks (DTNs); delivery; hierarchical routing; motion cycle; scalability; simulation.;
fLanguage :
English
Journal_Title :
Parallel and Distributed Systems, IEEE Transactions on
Publisher :
ieee
Conference_Location :
10/10/2008 12:00:00 AM
ISSN :
1045-9219
Type :
jour
DOI :
10.1109/TPDS.2008.218
Filename :
4641914
Link To Document :
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