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Asynchronous distributed power and rate control in ad hoc networks: a game-theoretic approach

机译:ad hoc网络中的异步分布式功率和速率控制:一种博弈论方法

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This paper analyzes distributed asynchronous power and rate control for wireless ad hoc networks. Importantly, all network transmitters are considered to be independent of any management infrastructure and to have the freedom to choose their own arbitrary control rules, using as input only information on local interference and achieved carrier signal-to-interference ratio (CIR). Such an approach respects diverse user preferences of on quality of service (QoS) and allows them to adapt to local network conditions in contrast with conventional cellular systems, whose users must follow centralized control commands from serving base stations. For this purpose, we develop a general non-cooperative game-theoretic framework and characterize the resulting power and rate allocation dynamics in terms of its convergence to network-wide acceptable equilibrium states under stochastic communication channels. Chief among the attractive features of our proposed framework is the fact that it is developed in an entirely abstract way without any particular technological or architectural assumptions, which are typically made in related works. Numerical simulations prove the potential of our approach to provide for fair, robust and comparably better CIR allocation in ad hoc networks with varying topology and user density.
机译:本文分析了无线自组网的分布式异步功率和速率控制。重要的是,所有网络发送器都被认为独立于任何管理基础架构,并可以自由选择其自己的任意控制规则,仅使用有关本地干扰和已实现载波信噪比(CIR)的信息作为输入。与常规蜂窝系统相反,这种方法尊重用户对服务质量(QoS)的不同偏好,并使其能够适应本地网络条件。常规蜂窝系统的用户必须遵循来自服务基站的集中控制命令。为此,我们开发了一个通用的非合作博弈论框架,并根据其在随机通信渠道下收敛到全网可接受的均衡状态来表征由此产生的功率和费率分配动态。我们提出的框架吸引人的主要特征是,它以完全抽象的方式开发,没有任何特定的技术或体系结构假设,通常是在相关作品中做出的。数值模拟证明了我们的方法在具有变化的拓扑和用户密度的自组织网络中提供公平,可靠且相对更好的CIR分配的潜力。

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