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Providing quality of service to internet applications using multiprotocol label switching

机译:使用多协议标签交换为互联网应用程序提供服务质量

摘要

The growth of the Internet and the range of applications it now supports has created a need for improved traffic engineering techniques. One protocol which shows promise in this regard is Multiprotocol Label Switching (MPLS). MPLS inherits a mix of attributes from earlier protocols such as IP and ATM, and potentially combines the simplicity of IP and the Quality of Service (QoS) capabilities of ATM. MPLS is now a mature standard widely deployed in the Internet. This thesis concerns the development of new mechanisms that can further extend the MPLS capabilities for traffic engineering.ududWeb service remains a key application in today's Internet. The traffic demands at popular Web-sites and the requirements of redundancy and reliability can only be met by using multiple Web servers. A new solution to Web server load balancing based on MPLS is presented in this thesis. This solution features a novel Web switching architecture featuring switching at layer two. An extended solution for providing differentiated Web services is also proposed . It has been implemented in a soft MPLS router using the Linux operating system.ududThe performance of soft routers is significantly affected by the packet processing time. An MPLS-based framework to increase the average packet size and consequently reduce the traffic frame-rate is described in the thesis. This has been implemented in a Linux-based soft router and its performance evaluated experimentally. As transmission rates continue to rise, such aggregation techniques will be needed if packet processing time is not to become a bottleneck. The switching technology at the core of tomorrow's Internet, featuring GMPLS and optical switching using , perhaps, optical burst switching technology, will not work efficiently with short packets.ududA new class of scheduling algorithms is also described, intended for deployment in MPLS networks. Their operation is based on an analogy with the workings of the human heart. This class of algorithms achieves the optimal fairness for packet based schedulers and has low hardware complexity. It can be combined with the packet aggregation mechanism above to provide an effective interface between the edges of tomorrow's Internet and its high-speed core.
机译:Internet的增长及其现在支持的应用范围已引起对改进的流量工程技术的需求。在这方面显示出希望的一种协议是多协议标签交换(MPLS)。 MPLS从早期协议(例如IP和ATM)继承属性的混合,并可能结合IP的简单性和ATM的服务质量(QoS)功能。 MPLS现在是在互联网上广泛部署的成熟标准。本文涉及新机制的开发,该机制可以进一步扩展MPLS功能以进行流量工程。 ud udWeb服务仍然是当今Internet的关键应用。流行网站的流量需求以及冗余和可靠性的需求只能通过使用多个Web服务器来满足。本文提出了一种基于MPLS的Web服务器负载均衡的新解决方案。该解决方案具有新颖的Web交换体系结构,该体系结构在第二层进行交换。还提出了一种提供差异化​​Web服务的扩展解决方案。它已使用Linux操作系统在软MPLS路由器中实现。 ud ud软路由器的性能受数据包处理时间的影响很大。本文介绍了一种基于MPLS的框架,该框架可以增加平均数据包大小,从而降低流量帧速率。这已在基于Linux的软路由器中实现,并通过实验评估了其性能。随着传输速率的不断提高,如果不希望将数据包处理时间作为瓶颈,就需要这种聚合技术。明天的互联网核心交换技术具有GMPLS和使用光突发交换技术的光交换,可能无法有效地处理短数据包。 ud ud还描述了一种新的调度算法,旨在在MPLS中进行部署网络。它们的操作基于与人的心脏的类比。此类算法可为基于数据包的调度程序实现最佳公平性,并且硬件复杂度较低。可以将其与上述数据包聚合机制结合使用,以在明天的Internet边缘与其高速核心之间提供有效的接口。

著录项

  • 作者

    Dragos Radu-Calin;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en
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