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Algorithms and Protocols for Constrained Path Selection and Fault Monitoring in Packet Networks

机译:分组网络中约束路径选择和故障监控的算法和协议

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摘要

Efficient resource utilization and fast failure recovery are essential design goals of next-generation backbone networks. The need for efficient resource utilization has motivated the development of various protocols and techniques that offer data services over legacy backbone networks such as Synchronous Optical Network/Synchronous Digital Hierarchy (SONET/SDH). Enabling improved utilization with enhanced network reliability requires various network optimizations, both at the protocol and system levels. In this dissertation, we present a set of network optimization techniques that improve the performance of an end-user connected to classical packet networks such as Internet. First, we introduce an efficient path selection algorithm that enables seamless bandwidth upgrade for an existing Ethernet connection over SONET/SDH backbone using virtual concatenation technique. We also provide a heterogenous concatenation technique that improves the bandwidth utilization and that is easy to maintain. Second, we present a novel failure localization technique, that can detect single-link or simultaneous multiple-link failures. This technique is based on constructing a set of monitoring paths and cycles from one or more monitoring locations in the network. Third, we present an efficient routing and wavelength assignment scheme for backbone networks with stale network-state information. Finally, we present an e±cient server placement scheme for supporting multiple-description-coding (MDC) based media streaming over content delivery networks. We show that by using MDC-encoded media, intelligent server placement, and efficient path selection, the performance of an end-user can be greatly improved.
机译:有效的资源利用和快速的故障恢复是下一代骨干网的基本设计目标。对有效资源利用的需求推动了各种协议和技术的发展,这些协议和技术通过诸如同步光网络/同步数字体系(SONET / SDH)之类的传统骨干网提供数据服务。为了提高利用率并增强网络可靠性,需要在协议和系统级别进行各种网络优化。在本文中,我们提出了一套网络优化技术,可以改善连接到经典分组网络(如Internet)的最终用户的性能。首先,我们介绍一种有效的路径选择算法,该算法可使用虚拟级联技术为SONET / SDH骨干网上的现有以太网连接实现无缝带宽升级。我们还提供了一种异构级联技术,可以提高带宽利用率并且易于维护。其次,我们提出了一种新颖的故障定位技术,该技术可以检测单链路或同时发生的多链路故障。该技术基于从网络中的一个或多个监视位置构造一组监视路径和周期。第三,我们为具有陈旧的网络状态信息的骨干网提出了一种有效的路由和波长分配方案。最后,我们提出了一种有效的服务器放置方案,用于支持通过内容交付网络的基于多描述编码(MDC)的媒体流。我们证明,通过使用MDC编码的媒体,智能的服务器放置以及有效的路径选择,可以极大地提高最终用户的性能。

著录项

  • 作者

    Ahuja Satyajeet Singh;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
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