DocumentCode :
2935681
Title :
Energy-aware, delay-constrained routing in wireless sensor networks through genetic algorithm
Author :
Pourkabirian, Azadeh ; Haghighat, Abolfazl Toroghi
Author_Institution :
Qazvin Univ., Qazvin
fYear :
2007
fDate :
27-29 Sept. 2007
Firstpage :
1
Lastpage :
5
Abstract :
In this paper, we propose an energy-aware QoS routing protocol for wireless sensor networks. The protocol finds energy-efficient paths for delay-constrained data in realtime traffic. The described QoS routing problem is very similar to typical path constrained path optimization (PCPO) problems, which are proved to be NP-complete. Hence we present a heuristic solution for the aforesaid problem. We use a genetic algorithm (GA) to create energy efficient QoS routing. Our algorithm generates a sequence of routing paths that maximizes the system lifetime.Network lifetime can be defined as the time it takes for the first node or a fraction of all the nodes in the network to be depleted of their energies, we want to maximize network lifetime, instead of the average time over all scenarios. Simulation results have demonstrated the effectiveness of our approach for different metrics.
Keywords :
genetic algorithms; quality of service; routing protocols; telecommunication network routing; wireless sensor networks; QoS; delay-constrained routing; energy-aware routing; genetic algorithm; network lifetime; path constrained path optimization problems; routing protocol; system lifetime; wireless sensor networks; Computer networks; Delay; Energy consumption; Energy efficiency; Genetic algorithms; Image sensors; Quality of service; Routing protocols; Telecommunication traffic; Wireless sensor networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Software, Telecommunications and Computer Networks, 2007. SoftCOM 2007. 15th International Conference on
Conference_Location :
Split-Dubrovnik
Print_ISBN :
978-953-6114-93-1
Electronic_ISBN :
978-953-6114-95-5
Type :
conf
DOI :
10.1109/SOFTCOM.2007.4446058
Filename :
4446058
Link To Document :
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