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A scalable dual-radio wireless testbed for emulating mesh networks

机译:用于模拟网状网络的可扩展双无线电无线测试平台

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摘要

In this paper, we introduce and evaluate ScaleMesh, a scalable miniaturized dual-radio wireless mesh testbed based on IEEE 802.11b/g technology. ScaleMesh can emulate large-scale mesh networks within a miniaturized experimentation area by adaptively shrinking the transmission range of mesh nodes by means of variable signal attenuators. To this end, we derive a theoretical formula for approximating the attenuation level required for downscaling desired network topologies. We conduct a comprehensive performance study, in which we validate the feasibility of ScaleMesh for network emulation and protocol evaluation. Among others, we study the effect of channel selection, signal attenuation level, different topologies, and traffic load on network performance. We particularly focus on the performance of single-radio versus dual-radio communication, while investigating key parameters which can provide a substantial improvement in performance. We show that dual-radio communication improves network goodput by up to 100%, yet does not overcome TCP's fairness problems over IEEE 802.11.
机译:在本文中,我们介绍并评估了ScaleMesh,它是一种基于IEEE 802.11b / g技术的可扩展的微型双无线电无线网状测试平台。 ScaleMesh可以通过可变信号衰减器自适应地缩小网状节点的传输范围,从而在小型化的实验区域内模拟大型网状网络。为此,我们导出了一个理论公式,用于近似估算缩小所需网络拓扑所需的衰减水平。我们进行了全面的性能研究,在其中验证了ScaleMesh用于网络仿真和协议评估的可行性。除其他外,我们研究了信道选择,信号衰减水平,不同的拓扑以及流量负载对网络性能的影响。我们特别关注单无线电通信与双无线电通信的性能,同时研究可以大大提高性能的关键参数。我们显示,双无线电通信最多可将网络吞吐量提高100%,但不能克服TCP的IEEE 802.11公平性问题。

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