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Design and analysis of distributed utility maximization algorithm for multihop wireless network with inaccurate feedback

机译:反馈不准确的多跳无线网络分布式效用最大化算法的设计与分析

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摘要

Distributed network utility maximization (NUM) is receiving increasing interests for cross-layer optimization problems in multihop wireless networks. Traditional distributed NUM algorithms rely heavily on feedback information between different network elements, such as traffic sources and routers. Because of the distinct features of multihop wireless networks such as time-varying channels and dynamic network topology, the feedback information is usually inaccurate, which represents as a major obstacle for distributed NUM application to wireless networks. The questions to be answered include if distributed NUM algorithm can converge with inaccurate feedback and how to design effective distributed NUM algorithm for wireless networks. In this paper, we first use the infinitesimal perturbation analysis technique to provide an unbiased gradient estimation on the aggregate rate of traffic sources at the routers based on locally available information. On the basis of that, we propose a stochastic approximation algorithm to solve the distributed NUM problem with inaccurate feedback. We then prove that the proposed algorithm can converge to the optimum solution of distributed NUM with perfect feedback under certain conditions. The proposed algorithm is applied to the joint rate and media access control problem for wireless networks. Numerical results demonstrate the convergence of the proposed algorithm. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:对于多跳无线网络中的跨层优化问题,分布式网络实用程序最大化(NUM)引起了越来越多的兴趣。传统的分布式NUM算法在很大程度上依赖于不同网络元素(例如流量源和路由器)之间的反馈信息。由于多跳无线网络的独特功能(例如时变信道和动态网络拓扑),反馈信息通常不准确,这是将NUM应用于无线网络的主要障碍。要回答的问题包括分布式NUM算法是否可以收敛于不正确的反馈,以及如何为无线网络设计有效的分布式NUM算法。在本文中,我们首先使用无穷小扰动分析技术基于本地可用信息对路由器上流量源的总速率进行无偏梯度估计。在此基础上,我们提出了一种随机逼近算法来解决反馈不精确的分布式NUM问题。然后我们证明了该算法可以在一定条件下收敛到具有理想反馈的分布式NUM的最优解。将该算法应用于无线网络的联合速率和媒体访问控制问题。数值结果证明了该算法的收敛性。版权所有(c)2013 John Wiley&Sons,Ltd.

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