Feedback-Free Non-Cooperative Power Control Game for Vehicular Ad Hoc Networks

Vehicular Technology Conference(2014)

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摘要
This paper presents non-cooperative game-theoretic transmission power control algorithm to optimize network-wide communication performances for homogeneous competitive vehicle nodes in interference-limited vehicular ad hoc network (VANET) with limited inter-node feedback signaling channels. Based on a class of self-incentive convex payoff functions, vehicular nodes employ the proposed Feedback-free Adaptive Self-regulating (FAS) control algorithm to select optimal strategies that converge to Nash equilibrium (NE) whenever system changes occur. The control algorithm is characterized with the following features: (1) it does not require inter-node feedback signaling and messaging controls; (2) each transmitting node only needs to observe the aggregate interference in the environment; (3) the game is formulated to enable self-enforcement guided by rational self-incentive. System simulation of an interference-limited VANET with a realistic vehicular mobility model is developed to evaluate NE convergence performance of the game-theoretic FAS control algorithm.
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关键词
convex programming,feedback,game theory,power control,radiofrequency interference,telecommunication control,vehicular ad hoc networks,FAS control algorithm,NE convergence performance,Nash equilibrium,VANET,feedback-free adaptive self-regulating control algorithm,homogeneous vehicle nodes,inter-node feedback signaling,inter-node feedback signaling channels,network-wide communication performances,noncooperative game-theoretic transmission power control algorithm,self-incentive convex payoff function,vehicular ad hoc networks,vehicular mobility model
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