Tembine Hamidou, Altman Eitan, El-Azouzi Rachid, Hayel Yezekael
Laboratoire Informatique d'Avignon/Centre d'Enseignement et de Recherche en Informatique, University of Avignon, 84911 Avignon Cedex 9, France.
IEEE Trans Syst Man Cybern B Cybern. 2010 Jun;40(3):634-46. doi: 10.1109/TSMCB.2009.2034631. Epub 2009 Dec 4.
We consider a noncooperative interaction among a large population of mobiles that interfere with each other through many local interactions. The first objective of this paper is to extend the evolutionary game framework to allow an arbitrary number of mobiles that are involved in a local interaction. We allow for interactions between mobiles that are not necessarily reciprocal. We study 1) multiple-access control in a slotted Aloha-based wireless network and 2) power control in wideband code-division multiple-access wireless networks. We define and characterize the equilibrium (called evolutionarily stable strategy) for these games and study the influence of wireless channels and pricing on the evolution of dynamics and the equilibrium.
我们考虑大量相互干扰的移动设备之间通过许多局部交互进行的非合作交互。本文的首要目标是扩展演化博弈框架,以允许任意数量的移动设备参与局部交互。我们允许移动设备之间进行不一定是相互的交互。我们研究:1)基于时隙Aloha的无线网络中的多址接入控制;2)宽带码分多址无线网络中的功率控制。我们定义并刻画这些博弈的均衡(称为进化稳定策略),并研究无线信道和定价对动态演化及均衡的影响。