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Distributed Power Control For Wireless Ad Hoc Networks: A Game-Theoretic Approach Based On Best-Response Functions

机译:无线临时网络的分布式电源控制:基于最佳响应函数的游戏 - 理论方法

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This paper presents a novel framework for distributed power control for ad-hoc wireless networks. We analyze dynamic adaptive power allocation assuming that transmit power is adjusted with respect to experienced interference based on general best-response functions. For this purpose, we develop a general non-cooperative game-theoretic framework in order to characterize optimal equilibrium states and convergence of distributed power control dynamics to such states. Our work provides a more general insight to game-theoretic power control compared to most of recent works in this field. Moreover, our framework is developed in an abstract way without any technical assumption on particular modulation, coding, QoS measure definition or network architecture. To demonstrate an application of our framework, we show that stable linear best-response power control converges exponentially to a unique Nash equilibrium for any initial condition, which we confirm by numerical simulations in comparison with an algorithm based on [1].
机译:本文为广东无线网络提供了一种用于分布式电源控制的新框架。假设在一般最佳响应函数的经验性干扰上调整了传输功率,分析动态自适应功率分配。为此目的,我们开发了一般的非协作游戏理论框架,以表征最佳均衡状态和分布式功率控制动力学的融合到这些状态。与该领域最近的大多数作品相比,我们的工作更加普遍了解游戏理论功率控制。此外,我们的框架是以一种抽象方式开发,没有特定调制,编码,QoS测量定义或网络架构的任何技术假设。为了证明我们的框架的应用,我们表明稳定的线性最佳响应功率控制会聚到任何初始条件的唯一纳什均衡,我们通过基于[1]的算法相比,通过数值模拟确认。

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