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Exploring a centralized/distributed hybrid routing protocol for low power wireless networks and large-scale datacenters.

机译:探索适用于低功率无线网络和大规模数据中心的集中式/分布式混合路由协议。

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摘要

Large scale networking has always embraced distributed solutions. Centralized systems elicit knee-jerk reactions, typically pointing to a single-point of failure, difficulty maintaining global state, and operational latency. Nonetheless, centralized solutions have gradually begun to make headway in mainstream networks, such as enterprise networks. In this work, we take this trend one step farther, exploring centralized solutions to two extreme networking environments: Lossy and Low-PowerWireless Networks, and Large-Scale Datacenters.;Low-Power Wireless Networks can be characterized as dynamic high-churn environments with low-bandwidth radios. We present HYDRO, a hybrid routing protocol for low-power wireless networks. At its core, HYDRO forms a directed acyclic graph (DAG) that is locally maintained to support many-to-one collection based routing. In addition, topology reports from individual nodes are gathered to create a sufficient global topology view, which subsequently allows for centrally installed state in the network to optimize point-to-point communication.;Within the datacenter context, we focus on the difficulties of incorporating middlebox traversal requirements into the existing architecture. We begin by presenting PLayer, a policy-aware switching layer for datacenters that enables network administrators to explicitly dictate the middlebox traversal sequence of classes of traffic in their network. Given PLayer's predominantly distributed nature, we subsequently present a centralized PLayer design, discussing its ability to handle the demanding scalability requirements of datacenters and provide a comparison of the two designs.
机译:大型网络一直采用分布式解决方案。集中式系统会引起膝关节反应,通常指向单点故障,难以维持全局状态和操作延迟。尽管如此,集中式解决方案已逐渐开始在主流网络(例如企业网络)中取得进展。在这项工作中,我们将这一趋势进一步发展,探索针对两种极端网络环境的集中式解决方案:有损和低功耗无线网络以及大型数据中心;低功耗无线网络可以被描述为动态高流量环境,具有以下特点:低带宽无线电。我们提出了HYDRO,一种用于低功率无线网络的混合路由协议。 HYDRO的核心是有向无环图(DAG),该图在本地维护以支持基于多对一集合的路由。此外,还收集了来自各个节点的拓扑报告,以创建足够的全局拓扑视图,该视图随后允许在网络中集中安装状态以优化点对点通信。在数据中心环境中,我们重点关注合并的困难中间箱遍历到现有体系结构的要求。我们首先介绍PLayer,它是用于数据中心的策略感知交换层,它使网络管理员可以明确规定网络中流量类别的中间盒遍历顺序。鉴于PLayer的主要分布特性,我们随后提出了一个集中式PLayer设计,讨论了其处理数据中心苛刻的可伸缩性要求并比较这两种设计的能力。

著录项

  • 作者

    Tavakoli, Arsalan.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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