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Diversifying the Internet.

机译:互联网多元化。

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摘要

Diversity is a widely existing and much desired property in many networking systems. This dissertation studies diversity problems in Internet, which is the largest computer networking system in the world. The motivations of diversifying the Internet are two-fold. First, diversifying the Internet improves the Internet routing robustness and reliability. Most problems we have encountered in our daily use of Internet, such as service interruptions and service quality degradation, are rooted in the inter-domain routing system of Internet. Inter-domain routing is policy-based routing, where policies are often based on commercial agreements between ASes. Although people know how to safely accommodate a few commercial agreements in inter-domain routing, for a large set of diverse commercial agreements, it is not clear yet what policy guidelines can accommodate them and guarantee convergence. Accommodating diverse commercial agreements not only is needed for ASes in Internet to achieve their business goals, it also provides more path diversity in inter-domain routing, which potentially benefits the inter-domain routing system. However, more reliable and robust routing cannot be achieve unless the routing system exploits the path diversity well. However, that is not the case for the current inter-domain routing system. There exist many paths in the underlying network, but the routing system cannot find those paths promptly. Although many schemes have been proposed to address the routing reliability problem, they often add significant more complexity into the system. The need for a more reliable inter-domain routing system without adding too much complexity calls for designing practical schemes to better exploit Internet path diversity and provide more reliable routing service.;The increasing demands of providing value-added services in Internet also motivates the research work in this dissertation. Recently, network virtualization substrates and data centers are becoming important infrastructures. Network virtualization provides the ability to run multiple concurrent virtual networks in the same shared substrate. To better facilitate building application-specific networks so as to test and deploy network innovations for future Internet, a network virtualization platform must provide both high-degree of flexibility and high-speed packet forwarding in virtual networks. However, flexibility and forwarding performance are often tightly coupled issues in system design. Usually we have to sacrifice one in order to improve the other one. The lack of a platform that has both flexibility and good forwarding performance motivates the research in this dissertation to design network virtualization platforms to better support virtual networks with diverse functionalities in future Internet. The popularity of data centers in Internet also motivates this dissertation to studying scalable and cost-efficient data center networks. Data centers with a cluster of servers are already common places in Internet to host large scale networking applications, which require huge amount of computation and storage resources. To keep up with the performance requirements of those applications, a data center has to accommodate a large number of servers. As Internet evolves and more diverse applications emerge, the computation and storage requirements for data centers grow quickly. However, using the conventional interconnection structure is hard to scale the number of servers in data centers. Hence, it is of importance to design new interconnection structures for future data centers in Internet.;Four interesting topics are explored in this dissertation: (i) accommodating diverse commercial agreements in inter-domain routing, (ii) exploiting the Internet AS-level path diversity, (iii) supporting diverse network data planes, and (iv) diverse interconnection networks for data centers. The first part of this dissertation explores accommodating diverse commercial agreements in inter-domain routing while guaranteeing global routing convergence, so as to provide more path diversity in Internet. The second part of this dissertation studies exploiting the path diversity in Internet by running multiple routing processes in parallel, which compute multiple paths and those paths can complement each other in case one path has problems when dynamics present in the routing system. The third part of this dissertation studies supporting concurrent networks with heterogeneous data plane functions via network virtualization. Two virtual network platforms are presented, which achieve both high-speed packet forwarding in each virtual network and high degree of flexibility for each virtual network to customize its data plane functions. The last part of this dissertation presents a new scalable interconnection structure for data center networks. The salient feature of this new interconnection structure is that it expands to any number of servers without requiring to physically upgrading the existing servers.
机译:在许多网络系统中,多样性是一种广泛存在且非常需要的属性。本文研究了Internet上的多样性问题,Internet是世界上最大的计算机联网系统。互联网多元化的动机有两方面。首先,使Internet多样化可以提高Internet路由的健壮性和可靠性。我们在日常使用Internet时遇到的大多数问题,例如服务中断和服务质量下降,都源于Internet的域间路由系统。域间路由是基于策略的路由,其中​​策略通常基于AS之间的商业协议。尽管人们知道如何安全地在域间路由中容纳一些商业协议,但是对于大量不同的商业协议,还不清楚什么策略准则可以容纳它们并保证融合。适应多样化的商业协议不仅是Internet的AS实现其业务目标所必需的,而且还提供了域间路由中更多的路径多样性,这可能会给域间路由系统带来好处。但是,除非路由系统很好地利用了路径分集,否则无法实现更可靠和健壮的路由。但是,当前域间路由系统不是这种情况。基础网络中存在许多路径,但是路由系统无法迅速找到这些路径。尽管已经提出了许多方案来解决路由可靠性问题,但是它们通常会给系统增加更多的复杂性。在不增加过多复杂性的情况下需要更可靠的域间路由系统的需求,要求设计切实可行的方案,以更好地利用Internet路径多样性并提供更可靠的路由服务。; Internet中提供增值服务的需求不断增长,也推动了研究的发展。本文的工作。最近,网络虚拟化基础设施和数据中心正在成为重要的基础架构。网络虚拟化提供了在同一共享基板上运行多个并发虚拟网络的能力。为了更好地促进构建专用网络以测试和部署网络创新以用于未来的Internet,网络虚拟化平台必须在虚拟网络中提供高度的灵活性和高速的数据包转发。但是,灵活性和转发性能通常是系统设计中紧密相关的问题。通常,我们必须牺牲一个才能改善另一个。缺乏兼具灵活性和良好转发性能的平台,促使本文进行研究以设计网络虚拟化平台,以更好地支持未来Internet中具有多种功能的虚拟网络。数据中心在Internet上的普及也促使本论文研究可扩展且具有成本效益的数据中心网络。带有服务器群集的数据中心已经成为Internet上托管大型网络应用程序的常见场所,这些应用程序需要大量的计算和存储资源。为了满足这些应用程序的性能要求,数据中心必须容纳大量服务器。随着Internet的发展和越来越多样化的应用程序的出现,数据中心的计算和存储需求迅速增长。但是,使用常规的互连结构很难扩展数据中心中服务器的数量。因此,为Internet上的未来数据中心设计新的互连结构非常重要。本论文探讨了四个有趣的主题:(i)在域间路由中容纳各种商业协议​​,(ii)利用Internet AS级别路径多样性;(iii)支持各种网络数据平面,以及(iv)用于数据中心的各种互连网络。本文的第一部分探讨了如何在域间路由中容纳各种商业协议​​,同时又保证了全局路由的收敛性,从而在Internet中提供更多的路径多样性。本论文的第二部分研究了通过并行运行多个路由过程来利用Internet中的路径多样性,这些过程计算多个路径,并且当路由系统中存在动态问题时,如果一个路径出现问题,这些路径可以相互补充。本文的第三部分研究了通过网络虚拟化来支持具有异构数据平面功能的并发网络。介绍了两个虚拟网络平台,可在每个虚拟网络中实现高速数据包转发,并为每个虚拟网络自定义其数据平面功能提供高度的灵活性。本文的最后一部分提出了一种新的可扩展的数据中心网络互连结构。这种新的互连结构的显着特征是,它可以扩展到任意数量的服务器,而无需物理升级现有服务器。

著录项

  • 作者

    Liao, Yong.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Engineering Computer.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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