DocumentCode :
822273
Title :
Hop Constrained Energy-Efficient Broadcasting: Insights from Massively Dense Ad Hoc Networks
Author :
Bulbul, Kerem ; Ercetin, Ozgur ; Unluyurt, T.
Author_Institution :
Dept. of Manuf. Syst. & Ind. Eng., Sabanci Univ., Istanbul
Volume :
8
Issue :
2
fYear :
2009
Firstpage :
188
Lastpage :
202
Abstract :
We consider source-initiated broadcast session traffic in an ad hoc wireless network operating under a hard constraint on the end-to-end delay between the source and any node in the network. We measure the delay to a given node in the number of hops data travels from the source to that node, and our objective in this paper is to construct an energy-efficient broadcast tree that has a maximum depth Delta, where Delta; represents the end-to-end hop constraint in the network. We characterize the optimal solution to a closely related problem in massively dense networks using a dynamic programming formulation. We prove that the optimal solution can be obtained by an algorithm of polynomial time complexity O(Delta2). The solution to the dynamic program indicates that there is a single optimal policy applicable to all massively dense networks. Elaborating on the insights provided by the structure of the problem in massively dense networks, we design an algorithm for finding a solution to the hop constrained minimum power broadcasting problem in general networks. By extensive simulations, we demonstrate that our proposed optimization-based algorithm generates broadcast trees within 20% of optimality for general dense networks.
Keywords :
ad hoc networks; broadcasting; computational complexity; dynamic programming; telecommunication traffic; trees (mathematics); dynamic programming formulation; end-to-end delay; energy-efficient broadcast tree; hop constrained energy-efficient broadcasting; massively dense ad hoc wireless network; polynomial time algorithm complexity; source-initiated broadcast session traffic; Ad hoc networks; Broadcasting; Delay; Energy efficiency; Energy measurement; Multicast algorithms; Quality of service; Telecommunication traffic; Wireless networks; Wireless sensor networks; energy efficiency; multicast; optimization;
fLanguage :
English
Journal_Title :
Mobile Computing, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1233
Type :
jour
DOI :
10.1109/TMC.2008.105
Filename :
4585385
Link To Document :
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