Distributed Nash equilibrium seeking in noncooperative game with partial decision information of neighbors

纳什均衡 ε平衡 数理经济学 最佳反应 数学优化 均衡选择 网络拓扑 解决方案概念 完整信息 趋同(经济学) 数学 计算机科学 博弈论 重复博弈 经济 经济增长 操作系统
作者
X.L. Jin,Kaihong Lu,Zhengxin Wang,Xiaojie Chen
出处
期刊:Chaos [American Institute of Physics]
卷期号:34 (6) 被引量:1
标识
DOI:10.1063/5.0215214
摘要

In the real world, individuals may conceal some of their real decision information to their neighbors due to competition. It is a challenge to explore the distributed Nash equilibrium when individuals play the noncooperative game with partial decision information in complex networks. In this paper, we investigate the distributed Nash equilibrium seeking problem with partial decision information of neighbors. Specifically, we construct a two-layer network model, where players in the first layer engage in game interactions and players in the second layer exchange estimations of real actions with each other. We also consider the case where the actions of some players remain unchanged due to the cost of updating or personal reluctance. By means of the Lyapunov function method and LaSalle’s invariance principle, we obtain the sufficient conditions in which the consensus of individual actions and estimations can be achieved and the population actions can converge to the Nash equilibrium point. Furthermore, we investigate the case with switched topologies and derive the sufficient conditions for the convergence of individual actions to Nash equilibrium by the average dwell time method. Finally, we give numerical examples for cases of fixed and switched topologies to verify our theoretical results.
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