• 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