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Joint control of power and rates of wireless networks based on Nash game

机译:基于Nash游戏的无线网络功率和速率的联合控制

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摘要

This paper proposes a distributed joint control of power and rate for a wireless network where two master nodes are operating at same time. The control problem of joint power and rates is formulated using Nash game technique that is stochastic linear-quadratic Gaussian and has a non-zero sum. In the considered wireless network, the two active master nodes have access only to noise-corrupted measurements of the power and rates. When each master node uses a linear Kalman-filter-like state estimator and when a one-step delayed output and a one-step delayed control input of the power and rates are given, an optimal and joint strategy for control of each master node's power and rates is presented. The optimal controllers of the two nodes for the closed-loop Nash equilibrium solution are interrelated and cannot be determined separately. They demonstrate a cooperative and influential relationship between the operating master nodes.
机译:本文提出了一个无线网络的功率和速率的分布式联合控制,其中两个主节点同时运行。联合功率和费率的控制问题是使用Nash博弈技术提出的,该算法是随机线性二次高斯函数,且总和为非零。在考虑的无线网络中,两个活动的主节点只能访问功率和速率的噪声破坏性测量。当每个主节点使用类似线性卡尔曼滤波器的状态估计器,并且给出功率和速率的单步延迟输出和单步延迟控制输入时,用于控制每个主节点功率的最优联合策略并显示费率。闭环Nash平衡解的两个节点的最优控制器是相互关联的,无法单独确定。它们证明了操作主节点之间的合作和影响力关系。

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