DocumentCode
173244
Title
Energy-efficiency in decentralized wireless networks: A game-theoretic approach inspired by evolutionary biology
Author
Gajduk, Andrej ; Utkovski, Zoran ; Basnarkov, Lasko ; Kocarev, Ljupco
Author_Institution
Lab. for Complex Syst. & Networks, Macedonia
fYear
2014
fDate
12-16 May 2014
Firstpage
636
Lastpage
643
Abstract
Energy efficiency is gaining importance in wireless communication networks which have nodes with limited energy supply and signal processing capabilities. We present a numerical study of cooperative communication scenarios based on simple local rules. This is in contrast to most of the approaches in the literature which enforce cooperation by using complex algorithms and require strategic complexity of the network nodes. The approach is motivated by recent results in evolutionary biology which suggest that, if certain mechanism is at work, cooperation can be favored by natural selection, i. e. even selfish actions of the individual nodes can lead to emergence of cooperative behavior in the network. The results of the simulations in the context of wireless communication networks verify these observations and indicate that uncomplicated local rules, followed by simple fitness evaluation, can generate network behavior which yields global energy efficiency.
Keywords
cooperative communication; evolutionary computation; game theory; radio networks; complex algorithms; cooperative communication scenarios; decentralized wireless networks; energy supply capabilities; evolutionary biology; fitness evaluation; game-theoretic approach; global energy efficiency; local rules; natural selection; network nodes; signal processing capabilities; strategic complexity; wireless communication networks; Biology; Communication networks; Energy consumption; Sociology; Statistics; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Modeling and Optimization in Mobile, Ad Hoc, and Wireless Networks (WiOpt), 2014 12th International Symposium on
Conference_Location
Hammamet
Type
conf
DOI
10.1109/WIOPT.2014.6850358
Filename
6850358
Link To Document