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Crosslayer survivability in overlay-IP-WDM networks.

机译:覆盖IP-WDM网络中的跨层生存能力。

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摘要

As the Internet moves towards a three-layer architecture consisting of overlay networks on top of the IP network layer on top of WDM-based physical networks, incorporating the interaction between and among network layers is crucial for efficient and effective implementation of survivability.;This dissertation has four major foci as follows: First, a first-of-its-kind analysis of the impact of overlay network dependency on the lower layer network unveils that backhaul, a link loop that occurs at any two or more lower layers below the layer where traffic is present, could happen. This prompts our proposal of a crosslayer survivable mapping to highlight such challenges and to offer survivability in an efficient backhaul-free way. The results demonstrate that the impact of layer dependency is more severe than initially anticipated making it clear that independent single layer network design is inadequate to assure service guarantees and efficient capacity allocation. Second, a forbidden link matrix is proposed masking part of the network for use in situations where some physical links are reserved exclusively for a designated service, mainly for the context of providing multiple levels of differentiation on the network use and service guarantee. The masking effect is evaluated on metrics using practical approaches in a sample real-world network, showing that both efficiency and practicality can be achieved. Third, matrix-based optimization problem formulations of several crosslayer survivable mappings are presented; examples on the link availability mapping are particularly illustrated. Fourth, survivability strategies for two-layer backbone networks where traffic originates at each layer are investigated. Optimization-based formulations of performing recovery mechanisms at each layer for both layers of traffic are also presented. Numerical results indicate that, in such a wavelength-based optical network, implementing survivability of all traffic at the bottom layer can be a viable solution with significant advantages.;This dissertation concludes by identifying a roadmap of potential future work for crosslayer survivability in layered network settings.;Keywords: Capacity allocation, Multilayer network, Multilayer traffic, Network survivability, Traffic survivability.
机译:随着Internet向由基于WDM的物理网络之上的IP网络层之上的覆盖网络组成的三层体系结构发展,网络层之间的相互作用对于有效地实现生存能力至关重要。论文的四个主要重点如下:首先,对覆盖网络依赖性对较低层网络的影响进行的首次分析揭示了回程,即在该层以下任何两个或多个较低层上发生的链路环路有流量的地方,可能会发生。这促使我们提出了跨层可生存映射的建议,以突出这些挑战并以有效的无回程方式提供可生存性。结果表明,层依赖的影响比最初预期的要严重,这表明独立的单层网络设计不足以确保服务保证和有效的容量分配。其次,提出了一个禁止的链路矩阵,以掩盖网络的一部分,以用于某些物理链路专门为指定服务预留的情况下,主要是为了在网络使用和服务保证上提供多层次的区分。使用示例真实世界网络中的实用方法对度量的掩盖效果进行了评估,表明可以实现效率和实用性。第三,提出了几种跨层可生存映射的基于矩阵的优化问题公式。特别说明了链路可用性映射上的示例。第四,研究了流量起源于每一层的两层骨干网络的生存策略。还介绍了针对两层流量在每一层执行恢复机制的基于优化的公式。数值结果表明,在这样的基于波长的光网络中,在底层实现所有流量的生存能力可能是一个具有显着优势的可行解决方案。本文通过确定分层网络中跨层生存能力的潜在未来工作路线图得出结论。设置:关键字:容量分配,多层网络,多层流量,网络生存能力,流量生存能力。

著录项

  • 作者

    Pacharintanakul, Peera.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Engineering Computer.;Information Technology.;Engineering Electronics and Electrical.;Multimedia Communications.;Information Science.;Operations Research.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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