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Network-wide Inference of End-to-End Path Intersections

机译:端到端路径交叉口的网络范围推断

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Network topology information has many uses for networked applications including the design of reliability and performance enhancing schemes. This information is often acquired by network discovery techniques that rely on ICMP and/or SNMP support from the infrastructure. Unfortunately, network infrastructure may support such services at varying levels. In cases where such support is limited, techniques based on strictly end-to-end measurements have been proposed in the literature to infer a logical topology. In this paper, we propose an end-to-end measurement technique that is complimentary to the earlier techniques and relies on multiple-source multiple-destination probing to collect network wide measurements faster. Our technique relies on the interaction between streams of packets at various nodes in the network. Specifically, we aim to measure the reaction of end-to-end probes to a short burst of concentrated traffic (signal) injected to the network. The key assumption is that probes traversing paths that physically intersect with the path of the bursty traffic (signal path) will exhibit extra jitter. The occurrence of extra jitter in the probe packet inter-arrival times matching the signal bursts indicates that the paths of the probe and signal intersect. We conducted an empirical study on an actual production network to evaluate the ability of the technique to detect end-to-end path intersections. Our empirical results indicate that in the network we considered the technique successfully detected path intersections.
机译:网络拓扑信息有许多用于网络应用的用途,包括可靠性和性能增强方案的设计。该信息通常由网络发现技术获取,该技术依赖于ICMP和/或SNMP支持来自基础架构。不幸的是,网络基础设施可以以不同的级别支持这种服务。在这种支持有限的情况下,在文献中提出了基于严格的端到端测量的技术来推断逻辑拓扑。在本文中,我们提出了一种端到端的测量技术,该技术是较早的技术互补的,并且依赖于多源多目的地探测来更快地收集网络宽测量。我们的技术依赖于网络中各个节点的数据包流之间的交互。具体而言,我们的目的是测量端到端探针的反应到注入网络的集中交通(信号)的短爆发。关键假设是探测遍历与突发流量(信号路径)的路径相交的路径将呈现额外的抖动。探测分组间的额外抖动的发生在匹配信号突发的到达时间内匹配表示探头和信号的路径相交。我们对实际生产网络进行了实证研究,以评估技术检测端到端路径交叉口的能力。我们的经验结果表明,在网络中,我们认为该技术成功地检测到路径交叉口。

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