DocumentCode :
3766133
Title :
Asymptotically optimal distributed channel allocation: A competitive game-theoretic approach
Author :
Ilai Bistritz;Amir Leshem
Author_Institution :
School of Electrical Engineering, Tel-Aviv University, Israel
fYear :
2015
Firstpage :
1272
Lastpage :
1279
Abstract :
In this paper we consider the problem of distributed channel allocation in large networks under the frequency-selective interference channel. Performance is measured by the weighted sum of achievable rates. First we present a natural non-cooperative game theoretic formulation for this problem. It is shown that, when interference is sufficiently strong, this game has a pure price of anarchy approaching infinity with high probability, and there is an asymptotically increasing number of equilibria with the worst performance. Then we propose a novel non-cooperative M Frequency-Selective Interference Game (M-FSIG), where users limit their utility such that it is greater than zero only for their M best channels, and equal for them. We show that the M-FSIG exhibits, with high probability, an increasing number of optimal pure Nash equilibria and no bad equilibria. Consequently, the pure price of anarchy converges to one in probability in any interference regime. In order to exploit these results algorithmically we propose a modified Fictitious Play algorithm that can be implemented distributedly. We carry out simulations that show its fast convergence to the proven pure Nash equilibria.
Keywords :
"Interference","Games","Channel allocation","Receivers","Algorithm design and analysis","Resource management","Transmitters"
Publisher :
ieee
Conference_Titel :
Communication, Control, and Computing (Allerton), 2015 53rd Annual Allerton Conference on
Type :
conf
DOI :
10.1109/ALLERTON.2015.7447154
Filename :
7447154
Link To Document :
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