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A Logically Centralized Approach for Control and Management of Large Computer Networks

机译:大型计算机网络的控制和管理的逻辑集中式方法

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摘要

Management of large enterprise and Internet Service Provider networks is a complex, error-prone, and costly challenge. It is widely accepted that the key contributors to this complexity are the bundling of control and data forwarding in traditional routers and the use of fully distributed protocols for network control.udTo address these limitations, the networking research community has been pursuing the vision of simplifying the functional role of a router to its primary task of packet forwarding. This enables centralizing network control at a decision plane where network-wide state can be maintained, and network control can be centrally and consistently enforced. However, scalability and fault-tolerance concerns with physical centralization motivate the need for a more flexible and customizable approach. udThis dissertation is an attempt at bridging the gap between the extremes of distribution and centralization of network control. We present a logically centralized approach for the design of network decision plane that can be realized by using a set of physically distributed controllers in a network. This approach is aimed at giving network designers the ability to customize the level of control and management centralization according to the scalability, fault-tolerance, and responsiveness requirements of their networks.udOur thesis is that logical centralization provides a robust, reliable, and efficient paradigm for management of large networks and we present several contributions to prove this thesis. For network planning, we describe techniques for optimizing the placement of network controllers and provide guidance on the physical design of logically centralized networks. For network operation, algorithms for maintaining dynamic associations between the decision plane and network devices are presented, along with a protocol that allows a set of network controllers to coordinate their decisions, and present a unified interface to the managed network devices. Furthermore, we study the trade-offs in decision plane application design and provide guidance on application state and logic distribution. Finally, we present results of extensive numerical and simulative analysis of the feasibility and performance of our approach. The results show that logical centralization can provide better scalability and fault-tolerance while maintaining performance similarity with traditional distributed approach.ud
机译:大型企业和Internet服务提供商网络的管理是一个复杂,容易出错且代价昂贵的挑战。人们普遍认为,造成这种复杂性的关键因素是传统路由器中控制和数据转发的捆绑以及使用完全分布式协议进行网络控制。 ud为了解决这些限制,网络研究社区一直在追求简化的愿景。路由器在其数据包转发的主要任务中的功能角色。这样可以将网络控制集中在可以维持整个网络状态的决策平面上,并且可以集中一致地实施网络控制。但是,物理集中化带来的可伸缩性和容错性促使人们需要一种更加灵活和可定制的方法。 ud本论文试图弥合极端分布与网络控制集中之间的差距。我们提出了一种逻辑上集中的方法来设计网络决策平面,该方法可以通过使用网络中的一组物理分布式控制器来实现。这种方法旨在使网络设计人员能够根据其网络的可伸缩性,容错性和响应性要求自定义控制和管理集中化的级别。 ud我们的论文是逻辑集中化提供了鲁棒,可靠和高效的功能大型网络管理的范例,我们提出了一些贡献来证明本文。对于网络规划,我们描述了用于优化网络控制器位置的技术,并为逻辑上集中的网络的物理设计提供了指导。对于网络操作,提出了用于维持决策平面和网络设备之间动态关联的算法,以及允许一组网络控制器协调其决策并向被管理网络设备提供统一接口的协议。此外,我们研究了决策平面应用程序设计中的权衡,并为应用程序状态和逻辑分布提供了指导。最后,我们提出了对我们的方法的可行性和性能进行广泛的数值和模拟分析的结果。结果表明,逻辑集中化可以提供更好的可伸缩性和容错性,同时保持与传统分布式方法的性能相似性。

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  • 作者

    Iqbal Hammad;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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