DocumentCode :
2666315
Title :
Tradeoff Between Lifetime and Rate Allocation in Wireless Sensor Networks: A Cross Layer Approach
Author :
Zhu, Junhua ; Chen, Shan ; Bensaou, Brahim ; Hung, Ka-Lok
Author_Institution :
Hong Kong Univ. of Sci. & Technol, Hong Kong
fYear :
2007
fDate :
6-12 May 2007
Firstpage :
267
Lastpage :
275
Abstract :
This paper studies the tradeoff between energy consumption and application performance in wireless sensor networks by investigating the interaction between network lifetime maximization and rate allocation problems. To guarantee the individual performance of sensor nodes, we adopt the network utility maximization (NUM) framework to ensure certain fairness on source rates of sensor nodes. We formulate the network lifetime maximization problem and fair rate allocation problem as constrained maximization problems, and combine them by introducing a system parameter, which characterizes the tradeoff between the two problems. Using Lagrange dual decomposition, the original problem is vertically decomposed into three subproblems: a rate control problem at the transport layer, a contention resolution problem at the MAC Layer, and a cross-layer energy conservation problem. The first and second subproblems jointly solve the congestion problem in sensor networks via congestion prices, and fully distributed algorithms are derived. Furthermore, they are coupled with the cross layer energy conservation problem to solve the network lifetime maximization problem via energy prices. For the third subproblem, we first propose a partially distributed algorithm where network lifetime is a global information, and then by exploring the similarity between max-min rate allocation and network lifetime maximization in sensor networks, we approximate the latter by the NUM framework, and hence formulate the tradeoff problem in the unified NUM framework. As a result, a fully distributed algorithm is derived for the energy conservation problem.
Keywords :
distributed algorithms; optimisation; resource allocation; telecommunication congestion control; wireless sensor networks; Lagrange dual decomposition; MAC layer; NUM framework; congestion problem; constrained maximization problems; contention resolution problem; cross-layer energy conservation problem; energy consumption; fair rate allocation problem; fully distributed algorithm; max-min rate allocation; network lifetime maximization problem; network utility maximization; partially distributed algorithms; rate control problem; transport layer; wireless sensor networks; Batteries; Cross layer design; Delay; Distributed algorithms; Energy conservation; Peer to peer computing; Resource management; Sensor phenomena and characterization; Utility programs; Wireless sensor networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM 2007. 26th IEEE International Conference on Computer Communications. IEEE
Conference_Location :
Anchorage, AK
ISSN :
0743-166X
Print_ISBN :
1-4244-1047-9
Type :
conf
DOI :
10.1109/INFCOM.2007.39
Filename :
4215621
Link To Document :
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