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Design and Evaluation of Primitives for Passive Link Assessment and Route Selection in Static Wireless Networks.

机译:静态无线网络中被动​​链路评估和路由选择的原语设计和评估。

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摘要

Communication in wireless networks elementally comprises of packet exchanges over individual wireless links and routes formed by these links. To this end, two problems are fundamental: assessment of link quality and identification of the least-cost (optimal) routes. However, little is known about achieving these goals without incurring additional overhead to IEEE 802.11 networks. In this thesis, I design and experimentally evaluate two frameworks that enable individual 802.11 nodes to characterize their wireless links and routes by employing only local and passively collected information.;First, I enable 802.11 nodes to assess their links by characterizing packet delivery failures and failure causes. The key problem is that nodes cannot individually observe many factors that affect the packet delivery at both ends of their links and in both directions of 802.11 communication. To this end, instead of relying on the assistance of other nodes, I design the first practical framework that extrapolates the missing information locally from the nodes’ overhearing, the observable causal relationships of 802.11 operation and characterization of the corrupted and undecodable packets. The proposed framework employs only packet-level information generally reported by commodity 802.11 wireless cards.;Next, I design and evaluate routing primitives that enable individual nodes to suppress their poor route selections. I refer to a route selection as poor whenever the employed routing protocol fails to establish the existing least-cost path according to an employed routing metric. This thesis shows that an entire family of the state-of-the-art on-demand distance-vector routing protocols, including the standards-proposed protocol for IEEE 802.11s mesh networks, suffers from frequent and long-term poor selections having arbitrary path costs. Consequently, such selections generally induce severe throughput degradations for network users. To address this problem, I design mechanisms that identify optimal paths locally by employing only the information readily available to the affected nodes. The proposed mechanisms largely suppress occurrence of inferior routes. Even when such routes are selected their durations are reduced by several orders of magnitude, often to sub-second time scales.;My work has implications on several key areas of wireless networking: It removes systematic failures from wireless routing and serves as a source of information for a wide range of protocols including the protocols for network management and diagnostics.
机译:无线网络中的通信本质上包括通过各个无线链路的数据包交换和由这些链路形成的路由。为此,有两个基本问题:评估链路质量和确定成本最低的(最佳)路由。但是,在不引起IEEE 802.11网络额外开销的前提下,实现这些目标知之甚少。在本文中,我设计并通过实验评估了两个框架,这些框架使单个802.11节点能够通过仅利用本地和被动收集的信息来表征其无线链路和路由。首先,我使802.11节点能够通过表征分组传递失败和失败来评估其链路。原因。关键问题是节点无法单独观察到许多影响其链路两端以及802.11通信两个方向上的数据包传递的因素。为此,我设计了第一个实用框架,而不是依靠其他节点的帮助,该框架从节点的窃听,802.11操作的可观察因果关系以及损坏和无法解码的数据包的特征推断本地丢失的信息。提出的框架仅使用通常由商品802.11无线卡报告的数据包级别的信息。接下来,我设计和评估路由原语,这些原语使单个节点能够抑制其不良的路由选择。每当采用的路由协议未能根据采用的路由度量建立现有的最低成本路径时,我都认为路由选择很差。该论文表明,整个现有技术的按需距离矢量路由协议家族,包括针对IEEE 802.11s网状网络提出的标准协议,都遭受频繁且长期的,具有任意路径的不良选择费用。因此,这种选择通常导致网络用户的吞吐量严重下降。为了解决这个问题,我设计了一种机制,该机制通过仅使用受影响节点容易获得的信息来本地识别最佳路径。所提出的机制在很大程度上抑制了劣等路线的发生。即使选择了此类路由,它们的持续时间也减少了几个数量级,通常达到了亚秒级的时间。各种协议的信息,包括网络管理和诊断的协议。

著录项

  • 作者

    Miskovic, Stanislav.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Electronics and Electrical.;Engineering System Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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