DocumentCode
1310061
Title
Towards intelligent contention-based geographic forwarding in wireless sensor networks
Author
Cheng, Lin ; Cao, Jun ; Chen, Ci ; Chen, Huanting ; Ma, Jiaxin
Author_Institution
State Key Lab. of Networking & Switching Technol., Beijing Univ. of Posts & Telecommun., Beijing, China
Volume
5
Issue
12
fYear
2011
Firstpage
1711
Lastpage
1719
Abstract
Contention-based geographic forwarding (CGF) is a state-free communication paradigm for data delivery in multihop wireless sensor networks. CGF is robust to frequent topology changes, scalable to large-scale node deployment and applicable to data-centric applications and resource constrained networks. However, CGF may experience significant performance degradation under unreliable links. In this work, we present the intelligent CGF (ICGF) to combat the channel variation. IGCF combines the advantages of both cooperative and contention-based forwarding, involving multiple neighbours of the sender into the local forwarding to improve the transmission reliability. ICGF differs from existing work in that it extends the cooperation scope intelligently, by sending one additional control message on demand. For this reason, the probability of cooperation void in ICGF is decreased and the single-hop packet progress is increased. The authors conduct extensive simulations to study the performance of the proposed ICGF compared with existing protocols. Simulation results demonstrate that ICGF improves the end-to-end data delivery delay, energy efficiency and data delivery ratio.
Keywords
probability; protocols; telecommunication network reliability; telecommunication network topology; wireless sensor networks; ICGF; channel variation combat; contention-based forwarding; cooperative-based forwarding; data delivery ratio; data-centric application; end-to-end data delivery delay; energy efficiency; intelligent contention-based geographic forwarding; large-scale node deployment; multihop wireless sensor network; probability; protocol; resource constrained network; single-hop packet progress; state-free communication paradigm; transmission reliability;
fLanguage
English
Journal_Title
Communications, IET
Publisher
iet
ISSN
1751-8628
Type
jour
DOI
10.1049/iet-com.2010.0580
Filename
6005309
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