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Measurement and analysis of single-hop delay on an IP backbone network

机译:IP骨干网上单跳延迟的测量和分析

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We measure and analyze the single-hop packet delay through operational routers in the Sprint Internet protocol (IP) backbone network. After presenting our delay measurements through a single router for OC-3 and OC-12 link speeds, we propose a methodology to identify the factors contributing to single-hop delay. In addition to packet processing, transmission, and queueing delay at the output link, we observe the presence of very large delays that cannot be explained within the context of a first-in first-out output queue model. We isolate and analyze these outliers. Results indicate that there is very little queueing taking place in Sprint's backbone. As link speeds increase, transmission delay decreases and the dominant part of single-hop delay is packet processing time. We show that if a packet is received and transmitted on the same linecard, it experiences less than 20 /spl mu/s of delay. If the packet is transmitted across the switch fabric, its delay doubles in magnitude. We observe that processing due to IP options results in single-hop delays in the order of milliseconds. Milliseconds of delay may also be experienced by packets that do not carry IP options. We attribute those delays to router idiosyncratic behavior that affects less than 1% of the packets. Finally, we show that the queueing delay distribution is long-tailed and can be approximated with a Weibull distribution with the scale parameter a=0.5 and the shape parameter b=0.6 to 0.82.
机译:我们通过Sprint Internet协议(IP)骨干网中的运营路由器来测量和分析单跳数据包延迟。在介绍了通过单个路由器的OC-3和OC-12链路速度的延迟量度后,我们提出了一种方法来确定导致单跳延迟的因素。除了输出链路上的数据包处理,传输和排队延迟外,我们还观察到存在很大的延迟,这在先进先出输出队列模型的上下文中无法解释。我们隔离并分析了这些异常值。结果表明,在Sprint的骨干网中几乎没有排队发生。随着链路速度的增加,传输延迟减少,并且单跳延迟的主要部分是数据包处理时间。我们表明,如果在同一线卡上接收和发送一个数据包,则它会遇到少于20 / spl mu / s的延迟。如果数据包通过交换结构传输,则其延迟的大小将增加一倍。我们观察到,由于IP选项而导致的处理会导致毫秒级的单跳延迟。不携带IP选项的数据包也可能会经历毫秒的延迟。我们将这些延迟归因于影响少于1%数据包的路由器特有行为。最后,我们证明排队延迟分布是长尾的,并且可以使用比例参数a = 0.5和形状参数b = 0.6至0.82的Weibull分布进行近似。

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