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Efficient Virtual Network Embedding onto A Hierarchical-Based Substrate Network Framework.

机译:高效的虚拟网络嵌入到基于层次的基板网络框架中。

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摘要

The current Internet architecture presents a barrier to accommodate the vigorous arising demand for deploying new network services and applications. The next-generation architecture views the network virtualization as the gateway to overcome this limitation. Network virtualization promises to run efficiently and securely multiple dedicated virtual networks (VNs) over a shared physical infrastructure. Each VN is tailored to host a unique application based on the user's preferences.;This thesis addresses the problem of the efficient embedding of multiple VNs onto a shared substrate network (SN). The contribution of this thesis are twofold: First, a novel hierarchical SN management framework is proposed that efficiently selects the optimum VN mapping scheme for the requested VN from more than one proposed VN mapping candidates obtained in parallel. In order to accommodate the arbitrary architecture of the VNs, the proposed scheme divides the VN request into smaller subgraphs, and individually maps them on the SN using a variation of the exact subgraph matching techniques.;Second, the physical resources pricing policy is introduced that is based on time-of-use, that reflects the effect of resource congestion introduced by VN users. The preferences of the VN users are first represented through corresponding demand-utility functions that quantify the sensitivity of the applications hosted by the VNs to resource consumption and time-of-use. A novel model of time-varying VNs is presented, where users are allowed to up- or down-scale the requested resources to continuously maximize their utility while minimizing the VNs embedding cost.;In contrast to existing solutions, the proposed work does not impose any limitations on the size or topology of the VN requests. Instead, the search is customized according to the VN size and the associated utility. Extensive simulations are then conducted to demonstrate the improvement achieved through the proposed work in terms of network utilization, the ratio of accepted VN requests and the SP profits.
机译:当前的Internet体系结构为适应对部署新的网络服务和应用程序的强烈需求提出了障碍。下一代体系结构将网络虚拟化视为克服此限制的网关。网络虚拟化有望在共享的物理基础架构上高效,安全地运行多个专用虚拟网络(VN)。每个VN都可以根据用户的喜好量身定制一个独特的应用程序。;本论文解决了将多个VN有效地嵌入到共享基板网络(SN)中的问题。本论文的贡献有两个方面:首先,提出了一种新颖的分层SN管理框架,该框架从多个并行获得的VN映射候选中有效地为请求的VN选择了最佳VN映射方案。为了适应VN的任意体系结构,提出的方案将VN请求划分为较小的子图,并使用多种精确的子图匹配技术将其分别映射到SN。第二,介绍了物理资源定价策略基于使用时间,反映了VN用户引入的资源拥塞的影响。首先,通过相应的需求-实用程序功能来表示VN用户的首选项,该功能可量化VN托管的应用程序对资源消耗和使用时间的敏感性。提出了一种时变VN的新颖模型,在该模型中,允许用户上调或下调所请求的资源,以在最大程度地降低VN嵌入成本的同时,最大化其实用性;与现有解决方案相比,拟议的工作没有强加于人VN请求的大小或拓扑的任何限制。而是根据VN大小和关联的实用程序自定义搜索。然后进行了广泛的仿真,以证明通过建议的工作在网络利用率,已接受的VN请求的比率和SP利润方面所实现的改进。

著录项

  • 作者

    Ghazar, Tay.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Electrical engineering.;Information Technology.
  • 学位 M.Sc.
  • 年度 2013
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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