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Distributed channel management in uncoordinated wireless environments

机译:非协调无线环境中的分布式信道管理

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Wireless 802.11 hotspots have grown in an uncoordinated fashion with highly variable deployment densities. Such uncoordinated deployments, coupled with the difficulty of implementing coordination protocols, has often led to conflicting configurations (e.g., in choice of transmission power and channel of operation) among the corresponding Access Points (APs). Overall, such conflicts cause both unpredictable network performance and unfairness among clients of neighboring hotspots. In this paper, we focus on the fairness problem for uncoordinated deployments. We study this problem from the channel assignment perspective. Our solution is based on the notion of channel-hopping, and meets all the important design considerations for control methods in uncoordinated deployments - distributed in nature, minimal to zero coordination among APs belonging to different hotspots, simple to implement, and interoperable with existing standards. In particular, we propose a specific algorithm called MAXchop, which works efficiently when using only non-overlapping wireless channels, but is particularly effective in exploiting partially-overlapped channels that have been proposed in recent literature. We also evaluate how our channel assignment approach complements previously proposed carrier sensing techniques in providing further performance improvements. Through extensive simulations on real hotspot topologies and evaluation of a full implementation of this technique, we demonstrate the efficacy of these techniques for not only fairness, but also the aggregate throughput, metrics.We believe that this is the first work that brings into focus the fairness properties of channel hopping techniques and we hope that the insights from this research will be applied to other domains where a fair division of a system's resources is an important consideration.
机译:无线802.11热点以不协调的方式增长,部署密度变化很大。这种不协调的部署,加上实施协调协议的困难,常常导致对应的接入点(AP)之间的配置冲突(例如,在选择传输功率和操作信道时)。总体而言,此类冲突会导致不可预测的网络性能以及相邻热点的客户端之间的不公平。在本文中,我们将重点放在非协调部署的公平性问题上。我们从渠道分配的角度研究这个问题。我们的解决方案基于信道跳变的概念,并满足非协调部署中控制方法的所有重要设计考虑因素-本质上是分布式的,属于不同热点的AP之间的协调程度从零到零,易于实现,并且可以与现有标准互操作。特别是,我们提出了一种称为MAXchop的特定算法,该算法在仅使用非重叠无线信道时有效,但在利用最近文献中已提出的部分重叠信道方面特别有效。我们还将评估我们的信道分配方法如何补充先前提出的载波侦听技术,从而进一步提高性能。通过对实际热点拓扑进行广泛的仿真并评估该技术的全面实施,我们证明了这些技术的有效性不仅是公平的,而且还涉及总吞吐量,指标。我们相信这是第一个引起关注的工作信道跳变技术的公平性,我们希望这项研究的见识将被应用到其他领域,在这些领域中,系统资源的公平分配是一个重要的考虑因素。

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