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Routing metrics for multi-hop wireless mesh networks.

机译:多跳无线网状网络的路由度量。

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摘要

Wireless Mesh Networks (WMNs) have gained considerable popularity recently. Most research on WMNs focuses on improving network capacity, because WMNs suffer from severe throughput degradation due to interferences. Among them, routing has been an active area of research for a long time, and it is also the focus of this dissertation.Routing metrics are critical for selection of a path with a maximum throughput in multi-hop wireless networks. Due to the nature of wireless losses and multi-rate support, wireless links in one single network may have a broad range of characteristics such as loss rates and data transmission rates. In addition, wireless nodes may be equipped with multiple radios tuned to non-overlapping channels in order to improve network performance. All these technologies bring new challenges to route selection in wireless multi-hop networks, and the traditional minimum hop count metric does not suffice in such a complicated environment, since it does not take any aforementioned characteristics into account.To design an effective routing metric, it is necessary to accurately acquire the link properties that might affect path performance, most importantly, the loss rate. To better assess individual link loss rate, this study proposes several modifications to existing broadcast based probe method that leads to a more accurate link loss rate measurement. In recent years, although many link quality-based routing metrics have been explored, none of the current routing metrics is capable of capturing the necessary link properties, which is critical for a comprehensive evaluation of routing path performances and the selection of the best route. In this study, we explore the drawbacks of current routing metrics and propose two improved strategies, improved Expected Time Transmission (iETT) and improved Bottleneck Aware Transmission Delay (iBATD), respectively, to address the challenges for single-radio and multi-radio wireless mesh networks. The proposed routing metrics will be explored in various wireless network scenarios through ns-2 simulations and their performances will be compared to current routing metrics, such as minimum hop count metric (HOP), Expected Transmission Count (ETX), Expected Transmission Time (ETT) and Weighted Cumulative ETT (WCETT) metrics. Additionally, an extended Dynamic Source Routing (DSR)-based routing protocol (eDSR), which works effectively in multi-radio scenarios and performs seamlessly with any quality aware routing metrics, has also been designed to aid the performance comparisons. Moreover, we develop iETT routing metric and three other selected representative routing metrics on a Linux based test bed and assess their performances with extensive experiments.
机译:无线网状网络(WMN)最近获得了相当大的普及。对WMN的大多数研究都集中在提高网络容量上,因为WMN会因干扰而导致严重的吞吐量下降。其中,路由一直是研究的活跃领域,也是本文的重点。路由度量对于选择多跳无线网络中具有最大吞吐量的路径至关重要。由于无线损耗和多速率支持的性质,一个单一网络中的无线链路可能具有广泛的特性,例如损耗率和数据传输率。另外,无线节点可以配备有调谐到非重叠信道的多个无线电,以提高网络性能。所有这些技术都给无线多跳网络中的路由选择带来了新的挑战,并且传统的最小跳数度量标准在这种复杂的环境中还无法满足需求,因为它没有考虑到上述任何特征。必须准确获取可能影响路径性能(最重要的是丢失率)的链接属性。为了更好地评估单个链路丢失率,本研究对现有的基于广播的探测方法提出了若干修改,从而可以更准确地测量链路丢失率。近年来,尽管已经探索了许多基于链路质量的路由度量,但是当前的路由度量均无法捕获必要的链路属性,这对于全面评估路由路径性能和选择最佳路由至关重要。在这项研究中,我们探索了当前路由度量的弊端,并提出了两种改进的策略,分别是改进的预期时间传输(iETT)和改进的瓶颈感知传输延迟(iBATD),以应对单无线电和多无线电无线的挑战网状网络。拟议的路由度量将通过ns-2仿真在各种无线网络场景中进行探索,并将它们的性能与当前路由度量进行比较,例如最小跳数度量(HOP),预期传输计数(ETX),预期传输时间(ETT) )和加权累积ETT(WCETT)指标。此外,还设计了一种扩展的基于动态源路由(DSR)的路由协议(eDSR),该协议可在多无线电方案中有效地工作,并且可以与任何质量感知路由指标无缝地执行,从而有助于性能比较。此外,我们在基于Linux的测试平台上开发了iETT路由度量标准和其他三个选定的代表性路由度量标准,并通过广泛的实验评估了它们的性能。

著录项

  • 作者

    Qi, Bing.;

  • 作者单位

    Auburn University.;

  • 授予单位 Auburn University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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