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Nodal distribution strategies for designing an overlay network for long -term growth.

机译:用于设计覆盖网络以实现长期增长的节点分布策略。

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Scope and method of study. This research looked at nodal distribution design issues associated with building an overlay network on top of an existing legacy network with overlay network switches and links not necessarily matching the switch and link locations of the underlying network. A mathematical model with two basic components, switch costs and link costs, was developed for defining the total cost of a network overlay. The nature of the underlying legacy topology determines the dominant factor, link or switch costs to the total cost function as well as the unit cost for switches and links.;Findings and conclusions. The three design heuristics presented first, locate overlay switches at nodes in the center of the legacy network as opposed to the periphery; second, locate overlay switches at legacy nodes with high connectivity; and third, locate overlay switches at legacy nodes with high traffic flow demands, can be used to help point to the direction of keeping costs under control when design changes are required. Applying the concept of efficient frontiers to the world of network design and building a suite of best designs gives the network designer greater insight into how to design the best network in the face of changing real-world constraints. For the cost model and the case studies evaluated using the design strategies in this study, distributed approaches generally tend to be a good choice when the link costs dominate the total cost function because total path distances and therefore link costs need to be minimized in preference over switch costs. A distributed overlay tends to have lower link costs because there is usually a greater probability that total path distances can be minimized because of greater connectivity. More connections set up the potential for more traffic flow path choices allowing each traffic flow to be sent along shorter paths. In legacy network topology designs that have many nodes with high connectivity, the overlay link costs can be relatively similar between designs and the switch costs can have a large impact upon total cost.
机译:研究范围和方法。这项研究着眼于节点分布设计问题,这些问题与在具有覆盖网络交换机和链路的现有传统网络之上构建覆盖网络(不一定与基础网络的交换机和链路位置匹配)有关。为了定义网络覆盖的总成本,开发了具有两个基本组成部分(交换成本和链接成本)的数学模型。基础遗留拓扑的性质决定了占总成本函数的主导因素,链路或交换机成本以及交换机和链路的单位成本。;发现和结论。首先介绍的三种设计启发式方法是将覆盖开关定位在传统网络中心而不是外围的节点上。其次,将覆盖交换机放置在具有高连接性的旧节点上;第三,在需要高流量的传统节点上放置覆盖交换机,可用于帮助指出在需要更改设计时控制成本的方向。将有效边界的概念应用于网络设计领域并构建最佳设计套件,使网络设计人员可以更好地了解如何在面对不断变化的现实世界约束的情况下设计最佳网络。对于成本模型和本研究中使用设计策略评估的案例研究,当链路成本主导总成本函数时,分布式方法通常是一个不错的选择,因为总路径距离和链路成本需要优先于转换成本。分布式覆盖往往具有较低的链路成本,因为通常由于更大的连接性而使总路径距离最小化的可能性更大。更多的连接为更多的业务流路径选择提供了可能,从而使每个业务流都可以沿较短的路径发送。在具有许多具有高连接性的节点的传统网络拓扑设计中,设计之间的覆盖链路成本可能相对相似,而交换成本可能会对总成本产生很大影响。

著录项

  • 作者

    Chinburg, Susan Jean.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Information science.;Systems science.;Management.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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