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Adaptation of Carrier Sensing Threshold to Increase Throughput in Dense 802.11ac Wireless Networks

机译:调整载波侦听阈值以提高密集802.11ac无线网络的吞吐量

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Carrier sensing mechanisms in many of today's wireless devices are based on virtual carrier sensing and physical carrier sensing. Virtual carrier sensing functions through the use of request to send and clear to send handshake signaling. Physical carrier sensing makes use of the carrier sense threshold (CST), which indeed aims to mitigate the collisions and interference related problems. In densely deployed networks, however, such classic carrier sensing mechanisms limit the spatial reuse rate, which can result in unsatisfied user demands. In this paper, an adaptive carrier sensing algorithm, which adjusts the CST depending on the overall throughput gain and fairness among the networks, is proposed to increase the spatial reuse and the system throughput. The connectivity issue of the associated clients has been addressed. As a first step, the effect of CST change is investigated in terms of airtime usage, fairness and different node densities in a simple grid 802.11ac dense network deployment. The performance evaluation of the proposed approach is done by using Network Simulator-3 (ns-3). Simulation results show that with the use of the proposed approach, the overall system throughput can be increased by as much as 100% of the throughput provided by the traditional carrier sense multiple access (CSMA)protocol.
机译:当今许多无线设备中的载波侦听机制都基于虚拟载波侦听和物理载波侦听。虚拟载波侦听功能通过使用请求发送和清除发送握手信号来实现。物理载波侦听利用了载波侦听阈值(CST),确实旨在减轻与冲突和干扰有关的问题。但是,在密集部署的网络中,这种经典的载波侦听机制会限制空间重用率,这可能会导致用户需求无法满足。在本文中,提出了一种自适应载波侦听算法,该算法根据总吞吐率的提高和网络之间的公平性来调整CST,以提高空间复用率和系统吞吐率。关联客户端的连接问题已解决。第一步,在简单的网格802.​​11ac密集网络部署中,根据广播时间使用情况,公平性和不同的节点密度来研究CST更改的影响。通过使用Network Simulator-3(ns-3)对提出的方法进行性能评估。仿真结果表明,使用所提出的方法,可以将整个系统吞吐量提高到传统载波侦听多路访问(CSMA)协议提供的吞吐量的100%。

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