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Mobile ad-hoc networks: Mobility-induced metrics, performance analysis, and system design.

机译:移动自组织网络:移动性度量,性能分析和系统设计。

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摘要

Mobile Ad-hoc Network (MANET), a type of self-configuring wireless ad-hoc network, comprises of mobile elements equipped with wireless communication devices. The mobility pattern of mobile nodes and the packet forwarding strategy crucially decide MANET performance. The mobility pattern affects system performance through mobility-induced metrics such as contact time and inter-meeting time. These metrics are critical in determining the MANET performance, as well as choosing various scheduling/forwarding algorithms.In this dissertation, we study the effect of mobility patterns on the MANET performance through the mobility-induced metrics, e.g., inter-meeting time. The inter-meeting time is typically assumed to be exponentially distributed in MANET performance studies. However, recent empirical results disclose clear power-law behavior of inter-meeting time distribution. This outright discrepancy potentially undermines our understanding of the performance tradeoffs in MANET obtained under the assumed inter-meeting time with exponential distribution, and thus calls for further study on the power-law (or more generally, non-exponential) inter-meeting time including its fundamental cause, mobility modeling, and its effect.We first prove that the finite/infinite domain with respect to the time scale of interest critically decides the exponential/power-law tail of the inter-meeting time distribution. We then show a convex ordering relationship among inter-meeting times of various mobility models indexed by their degrees of correlation, which is in good agreement with the ordering of network performance under a set of mobility patterns whose inter-meeting time distributions have power-law 'head' followed by exponential 'tail'. Finally, we analyze various characteristics of the relative mobility of a random pair of nodes in MANET to show that they produce inter-meeting time with different aging properties. The aging property allows us to establish for the first time that the approach based on exponential inter-meeting time assumption can always under-estimate or over-estimate the actual system performance, under stochastic mobility patterns with specific aging properties. Our results also provide theoretic guidelines on how to exploit the memory structure toward better design of protocols under general mobility.
机译:移动自组织网络(MANET)是一种自配置的无线自组织网络,由配备有无线通信设备的移动元素组成。移动节点的移动性模式和分组转发策略至关重要地决定了MANET的性能。移动性模式通过移动性引起的度量标准(例如联系时间和会议间时间)影响系统性能。这些指标对于确定MANET的性能以及选择各种调度/转发算法至关重要。本文通过会议间移动性等指标来研究移动性模式对MANET性能的影响。在MANET性能研究中,会议间隔时间通常被假定为指数分布。但是,最近的经验结果揭示了会议间时间分布的明确幂律行为。这种完全的差异可能会破坏我们对在假设的会议间时间与指数分布下获得的MANET中性能折衷的理解,因此需要进一步研究幂律(或更普遍地,非指数)会议间时间,包括首先,我们证明了相对于所关注时间尺度的有限/无限域决定了会议间时间分布的指数/幂律尾部。然后,我们显示了各种移动性模型的相互间时间之间的凸排序关系,它们之间的相关程度与索引相关,这与一组相互间时间分布具有幂律的移动性模式下的网络性能排序非常吻合。 “头”后面是指数“尾”。最后,我们分析了MANET中随机节点对的相对移动性的各种特征,以表明它们产生具有不同老化特性的会面时间。老化属性使我们能够首次确定,在具有特定老化属性的随机迁移率模式下,基于指数间会议时间假设的方法始终会低估或高估实际系统性能。我们的研究结果还提供了有关如何利用内存结构在通用移动性下更好地设计协议的理论指导。

著录项

  • 作者

    Cai, Han.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Computer.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:16

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