Models of 802.11 multi-hop networks: Theoretical insights and experimental validation

A. Aziz, M. Durvy, Olivier Dousse, Patrick Thiran
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引用次数: 7

Abstract

Wireless Multi-Hop CSMA/CA Networks are challenging to analyze. On the one hand, their dynamics are complex and rather subtle effects may severely affect their performance. Yet, understanding these effects is critical to operate upper layer protocols, such as TCP/IP. On the other hand, their models tend to be very complex in order to reproduce all the features of the protocol. As a result, they do not convey much insight into the essential features. We review two models of 802.11 protocols, which are simple enough to first explain why a trade-off needs to be found between fairness and spatial reuse (throughput) in saturated wireless networks (where all nodes have packets to transmit to their neighbors); and then to explain why non-saturated networks (where only some nodes, the sources, have packets to transmit to their destinations in a multi-hop fashion) that are more than 3 hops longs suffer from instability.We confront both models either to realistic simulations in ns-2 or to experiments with a testbed deployed at EPFL. We find that the predictions of both models help us understand the performance of the 802.11 protocol, and provide hints about the changes that need to be brought to the protocol.
802.11多跳网络模型:理论见解和实验验证
无线多跳CSMA/CA网络的分析具有挑战性。一方面,它们的动态是复杂的,相当微妙的影响可能会严重影响它们的性能。然而,理解这些影响对于操作TCP/IP等上层协议至关重要。另一方面,为了重现协议的所有特性,它们的模型往往非常复杂。因此,它们不能传达对基本特征的深入了解。我们回顾了802.11协议的两种模型,它们非常简单,可以首先解释为什么在饱和无线网络(所有节点都有数据包要传输给邻居)中需要在公平性和空间重用(吞吐量)之间找到权衡;然后解释为什么长度超过3跳的非饱和网络(只有一些节点,源,以多跳的方式将数据包传输到目的地)会遭受不稳定。我们面对这两种模型,要么在ns-2中进行现实模拟,要么在EPFL部署的测试平台上进行实验。我们发现两种模型的预测帮助我们理解802.11协议的性能,并提供了需要对协议进行更改的提示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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