DocumentCode :
1479602
Title :
How the Contact-Probing Mechanism Affects the Transmission Capacity of Delay-Tolerant Networks
Author :
Qin, Shuang ; Feng, Gang ; Zhang, Yide
Author_Institution :
Nat. Key Lab. of Electron. Sci. & Technol. on Commun., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Volume :
60
Issue :
4
fYear :
2011
fDate :
5/1/2011 12:00:00 AM
Firstpage :
1825
Lastpage :
1834
Abstract :
Link duration is a main factor in determining the transmission capacity between two encounter nodes in delay-tolerant networks (DTNs). Existing research on DTN transmission capacity usually assumes that a node can immediately discover the nodes that move into its transmission range. Under this assumption, the link duration in DTNs is determined by the moving speed and transmission distance of encounter nodes. However, this assumption may be invalid in realistic DTNs, where the nodes use a contact-probing protocol to detect their neighbors. In this paper, we investigate the impact of contact-probing mechanisms on link duration and, thus, the transmission capacity of DTNs. We first derive the probability distribution of link duration and analyze the impact of contact-probing mechanisms on the total link durations. Based on this approach, we derive the theoretical node throughput and energy consumption and explore their tradeoff. In addition, we provide a framework for computing the optimal contact-probing frequency under energy limitations and adjust the probing frequency according to the node-encountering rate. Simulation experiments based on the Opportunistic Network Environment simulator validates the correctness and the accuracy of our analytical model. Our analytical results provide insights into how contact probing affects the DTN transmission capacity and energy consumption.
Keywords :
energy consumption; mobile radio; probability; protocols; DTN transmission capacity; contact-probing protocol; delay-tolerant networks; energy consumption; link duration; opportunistic network environment simulator; probability distribution; Analytical models; Energy consumption; Manganese; Mobile communication; Probability distribution; Probes; Simulation; Contact probing; delay-tolerant networks (DTNs); link duration; transmission capacity;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2011.2131693
Filename :
5738356
Link To Document :
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