Service quality measurements for IPv6 inter-networks

D. Pezaros, D. Hutchison, Francisco J. García, R. Gardner, J. Sventek
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引用次数: 14

Abstract

Measurement-based performance evaluation of network traffic is becoming very important, especially for networks trying to provide differentiated levels of service quality to the different application flows. The nonidentical response of flows to the different types of network-imposed performance degradation raises the need for ubiquitous measurement mechanisms, able to measure numerous performance properties, and being equally applicable to different applications and transports. This paper presents a new measurement mechanism, facilitated by the steady introduction of IPv6 in network nodes and hosts, which exploits native features of the protocol to provide support for performance measurements at the network (IP) layer. IPv6 Extension Headers have been used to carry the triggers involving the measurement activity and the measurement data in-line with the payload data itself, providing a high level of probability that the behaviour of the real user traffic flows is observed. End-to-end one-way delay, jitter, loss, and throughput have been measured for applications operating on top of both reliable and unreliable transports, over different-capacity IPv6 network configurations. We conclude that this technique could form the basis for future Internet measurements that can be dynamically deployed where and when required in a multiservice IP environment.
IPv6互连网络的服务质量测量
对网络流量进行基于度量的性能评估变得非常重要,特别是对于试图为不同的应用程序流提供不同水平的服务质量的网络。流对不同类型的网络强加的性能下降的不相同的响应提出了对无处不在的测量机制的需求,能够测量许多性能属性,并且同样适用于不同的应用程序和传输。本文提出了一种新的测量机制,通过在网络节点和主机中稳步引入IPv6,该机制利用协议的本地特性为网络(IP)层的性能测量提供支持。IPv6扩展报头已被用于携带涉及测量活动的触发器和与有效载荷数据本身一致的测量数据,提供了观察到真实用户流量行为的高概率。在不同容量的IPv6网络配置上,对运行在可靠和不可靠传输之上的应用程序测量了端到端单向延迟、抖动、丢失和吞吐量。我们得出的结论是,这种技术可以形成未来互联网测量的基础,可以在多服务IP环境中随时随地动态部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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