DocumentCode
3667581
Title
A distributed open-close access for Small-Cell networks: A random matrix game analysis
Author
Samia Ben Chekroun;Essaid Sabir;Abdellatif Kobbane;Hamidou Tembine;El-Houssine Bouyakhf;Khalil Ibrahimi
Author_Institution
Mohammed-V University of Rabat, FSR, LIMIARF, Morocco
fYear
2015
Firstpage
320
Lastpage
325
Abstract
Nowadays, Small-Cells are widely being deployed to assist and improve performance of mobile networks. Indeed, they are a promising solution to improve coverage and to offload data traffic in mobile networks. In this paper, we propose a signaling-less architecture of the heterogeneous network composed of one single Macro Base Station and a Single Small-Cell. First, we construct a game theoretic framework for channel-state independent interaction. We present many conditions for the existence of Pure Nash equilibrium. Next, and in order to capture the continuous change of the channel state, we build a random matrix game where the channel state is considered to be random (potentially ruled by some given distribution). A characterization of Nash equilibrium is provided in terms of pure strategies and mixed strategies. Convergence to Nash equilibrium is furthermore guaranteed using a variant of the well-known Combined fully distributed payoff and strategy learning. Our algorithm converges faster (only 10-20 iterations are required to converge to Nash equilibrium) and only need a limited amount of local information. This is quite promising since it says that our scheme is almost applicable for all environments (fast fading included).
Keywords
"Games","Nash equilibrium","Open Access","Interference","Wireless communication","Integrated circuits","Gaussian distribution"
Publisher
ieee
Conference_Titel
Wireless Communications and Mobile Computing Conference (IWCMC), 2015 International
Type
conf
DOI
10.1109/IWCMC.2015.7289103
Filename
7289103
Link To Document