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Understanding the performance and resilience of large-scale multi-hop wireless networks.

机译:了解大型多跳无线网络的性能和弹性。

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摘要

Wireless networks are becoming an important supplementary technology to the traditional wired networks. They offer convenient and flexible network access for the users to communicate with each other. However, wireless networks confront many technical challenges that limit their full utilization. Especially in large-scale multi-hop networks, the communication quality received by each user depends highly on the cooperation of other users in the network, which is constrained by many factors such as the heterogeneity of user communication devices, the limited availability of radio bandwidth, the difficulty in user coordinations, the mobility of users, and the failure of user devices.;We intend to understand the performance and resilience of large-scale multi-hop wireless networks in this dissertation, which will help us utilize the wireless networks effectively, efficiently and reliably. We identify four fundamental performance and resilience aspects to investigate, namely, the information propagation speed, the communication capacity, the topological stability, and the failure resilience. The study on the first two perspectives attempts to minimize the delay and maximize the capacity of large wireless networks, while the study on the last two perspectives evaluates and mitigates the impact of user mobility and failure on the network structure.;Specifically, we make the following contributions toward improving the utilization of large-scale wireless networks. First, we have determined the maximum information propagation speed in wireless networks and designed a new routing algorithm to identify the minimum transmission delay path for fastest information delivery. Second, we have demonstrated that the maximum network capacity can be obtained by scheduling user transmissions in localized areas and proposed a practical solution for capacity maximization. Third, we have analyzed the network topological stability with presence of user mobility and developed methods to extend the network topology lifetime. Last, we have characterized the spread of correlated user failures and suggested strategies to prevent failures from wide spreading in large wireless networks. The work in this dissertation advances our understanding and enhances our utilization of large-scale multi-hop wireless networks.
机译:无线网络正在成为传统有线网络的重要补充技术。它们为用户提供了方便而灵活的网络访问权限,使其可以相互通信。但是,无线网络面临许多技术挑战,限制了它们的充分利用。尤其是在大型多跳网络中,每个用户接收的通信质量在很大程度上取决于网络中其他用户的合作,这受到许多因素的限制,例如用户通信设备的异构性,无线电带宽的有限可用性等。 ,用户协调的困难,用户的移动性以及用户设备的故障。;我们打算在本文中了解大型多跳无线网络的性能和弹性,这将有助于我们有效地利用无线网络,高效且可靠。我们确定了要研究的四个基本性能和弹性方面,即信息传播速度,通信能力,拓扑稳定性和故障弹性。前两种观点的研究试图最大程度地减少大型无线网络的延迟并最大化其容量,而后两种观点的研究则评估并减轻了用户移动性和故障对网络结构的影响。为提高大规模无线网络的利用率做出了以下贡献。首先,我们确定了无线网络中的最大信息传播速度,并设计了一种新的路由算法来识别最小的传输延迟路径,以实现最快的信息传递。其次,我们证明了可以通过在局部区域中调度用户传输来获得最大的网络容量,并提出了一种用于容量最大化的实用解决方案。第三,我们分析了存在用户移动性的网络拓扑稳定性,并开发了延长网络拓扑寿命的方法。最后,我们描述了相关用户故障的蔓延特征,并提出了防止故障在大型无线网络中广泛传播的策略。本文的工作增进了我们的理解,并提高了大规模多跳无线网络的利用率。

著录项

  • 作者

    Xu, Yi.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Computer.;Computer Science.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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