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Measurement and Analysis of Real-World 802.11 Mesh Networks

机译:现实世界802.11 Mesh网络的测量和分析

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Despite many years of work in wireless mesh networks built using 802.11 radios, the performance and behavior of these networks in the wild is not well-understood. This lack of understanding is due in part to the lack of access to data from a wide range of these networks; most researchers have access to only one or two testbeds at any time. In recent years, however, 802.11 mesh networks networks have been deployed commercially and have real users who use the networks in a wide range of conditions. This paper analyzes data collected from 1407 access points in 110 different commercially deployed Meraki [28] wireless mesh networks, constituting perhaps the largest study of real-world 802.11 networks to date. After analyzing a 24-hour snapshot of data collected from these networks, we answer questions from a variety of active research topics, such as the accuracy of SNR-based bit rate adaptation, the impact of opportunistic routing, and the prevalence of hidden terminals. The size and diversity of our data set allows us to analyze claims previously only made in small-scale studies. In particular, we find that the SNR of a link is a good indicator of the optimal bit rate for that link, but that one could not make an SNR-to-bit rate look-up table that was accurate for an entire network. We also find that an ideal opportunistic routing protocol provides little to no benefit on most paths, and that "hidden triples"—network topologies that can lead to hidden terminals—are more common than suggested in previous work, and increase in proportion as the bit rate increases.
机译:尽管在使用802.11无线电建立的无线网状网络中进行了多年的工作,但这些网络在野外的性能和行为仍未得到很好的理解。这种缺乏理解的部分原因是由于无法从这些网络的广泛范围访问数据;大多数研究人员在任何时候都只能访问一两个测试平台。但是,近年来,802.11网状网络已经商业部署,并且拥有在广泛条件下使用该网络的真实用户。本文分析了从110个不同的商业部署的Meraki [28]无线网状网络中的1407个接入点收集的数据,这可能是迄今为止对现实世界802.11网络的最大研究。在分析了从这些网络收集的24小时数据快照之后,我们回答了来自各种活跃研究主题的问题,例如基于SNR的比特率自适应的准确性,机会路由的影响以及隐藏终端的普遍性。我们数据集的大小和多样性使我们能够分析以前仅在小规模研究中提出的主张。特别是,我们发现一条链路的SNR可以很好地指示该链路的最佳比特率,但是却无法制作出对整个网络都准确的SNR比特率查找表。我们还发现,理想的机会路由协议在大多数路径上几乎没有带来任何好处,而且“隐藏的三元组”(可能导致隐藏终端的网络拓扑)比以前的工作更常见,并且比例成比例地增加。率增加。

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