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Creating Scalable, Efficient and Namespace Independent Routing Framework for Future Networks.

机译:为未来的网络创建可扩展,高效且与命名空间无关的路由框架。

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摘要

In this thesis we propose VIRO---a novel and paradigm-shifting approach to network routing and forwarding that is not only highly scalable and robust, but also is namespace-independent. VIRO provides several advantages over existing network routing architectures, including: i) VIRO directly and simultaneously addresses the challenges faced by IP networks as well as those associated with the traditional layer-2 technologies such as Ethernet---while retaining its "plug-&-play" feature. ii) VIRO provides a uniform convergence layer that inte- grates and unifies routing and forwarding performed by the traditional layer-2 (data link layer) and layer-3 (network layer), as prescribed by the conventional local-area/wide-area network dichotomy and layered architecture. iii) Perhaps more importantly, VIRO decouples routing from addressing , and thus is namespace-independent. Hence VIRO allows new (global or local) addressing and naming schemes (e.g., HIP or flat-id namespace) to be introduced into networks without the need to modify core router/switch functions, and can easily and flexibly support inter-operability between existing and new addressing schemes/namespaces.;In the second part of this thesis, we present Virtual Ethernet Id Layer, in short VEIL, a practical realization of VIRO routing protocol to create a large-scale Ethernet networks. VEIL is aimed at simplifying the management of large-scale enterprise networks by requiring minimal manual configuration overheads. It makes it tremendously easy to plug-in a new routing-node or a host-device in the network without requiring any manual configuration. It builds on top of a highly scalable and robust routing substrate provided by VIRO, and supports many advanced features such as seamless mobility support, built-in multi-path routing and fast-failure re-routing in case of link/node failures without requiring any specialized topologies. To demonstrate the feasibility of VEIL, we have built a prototype of VEIL, called veil-click , using Click Modular Router framework, which can be co-deployed with existing Ethernet switches, and does not require any changes to host-devices connecting to the network.
机译:在本文中,我们提出了VIRO-一种新颖的,范式转换的网络路由和转发方法,它不仅具有高度可伸缩性和鲁棒性,而且与名称空间无关。与现有的网络路由体系结构相比,VIRO具有多个优势,包括:i)VIRO直接并同时解决IP网络以及与传统第二层技术(如以太网)相关的挑战,同时保留其“即插即用” -播放”功能。 ii)VIRO提供了一个统一的汇聚层,该层融合并统一了传统的第2层(数据链路层)和第3层(网络层)所执行的路由和转发,这是常规区域/广域网所规定的网络二分法和分层体系结构。 iii)也许更重要的是,VIRO使路由与寻址分离,因此与命名空间无关。因此,VIRO允许将新的(全局或本地)寻址和命名方案(例如,HIP或flat-id名称空间)引入网络,而无需修改核心路由器/交换机功能,并且可以轻松,灵活地支持现有之间的互操作性在本文的第二部分,我们提出了虚拟以太网ID层,简称VEIL,它是VIRO路由协议的实际实现,可用于创建大规模以太网。 VEIL旨在通过要求最少的手动配置开销来简化大型企业网络的管理。它使得在网络中插入新的路由节点或主机设备变得非常容易,而无需任何手动配置。它建立在VIRO提供的高度可扩展且强大的路由基础之上,并支持许多高级功能,例如无缝移动性支持,内置的多路径路由以及在链路/节点出现故障的情况下快速失败的重新路由,而不需要任何专门的拓扑。为了证明VEIL的可行性,我们使用Click Modular Router框架构建了一个VEIL原型,称为ve​​il-click,该框架可以与现有的以太网交换机共同部署,并且不需要对连接到WLAN的主机设备进行任何更改。网络。

著录项

  • 作者

    Jain, Sourabh.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Information Technology.;Computer Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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