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General Identifiability Condition for Network Topology Monitoring with Network Tomography

机译:使用网络层析成像监视网络拓扑的一般可识别性条件

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摘要

Accurate knowledge of network topology is vital for network monitoring and management. Network tomography can probe the underlying topologies of the intervening networks solely by sending and receiving packets between end hosts: the performance correlations of the end-to-end paths between each pair of end hosts can be mapped to the lengths of their shared paths, which could be further used to identify the interior nodes and links. However, such performance correlations are usually heavily affected by the time-varying cross-traffic, making it hard to keep the estimated lengths consistent during different measurement periods, i.e., once inconsistent measurements are collected, a biased inference of the network topology then will be yielded. In this paper, we prove conditions under which it is sufficient to identify the network topology accurately against the time-varying cross-traffic. Our insight is that even though the estimated length of the shared path between two paths might be “zoomed in or out” by the cross-traffic, the network topology can still be recovered faithfully as long as we obtain the relative lengths of the shared paths between any three paths accurately.
机译:准确的网络拓扑知识对于网络监控和管理至关重要。网络断层扫描可以仅通过在端主机之间发送和接收数据包来探查中间网络的基础拓扑:每对端主机之间的端到端路径的性能相关性可以映射到它们共享路径的长度,可以进一步用于识别内部节点和链接。但是,这种性能相关性通常会受到时变交叉流量的严重影响,因此很难在不同的测量周期内使估计的长度保持一致,即,一旦收集到不一致的测量值,则将对网络拓扑进行有偏见的推断。屈服了。在本文中,我们证明了足以针对时变交叉流量准确识别网络拓扑的条件。我们的见解是,即使交叉路况可能会“放大”或“缩小”两条路径之间共享路径的估计长度,只要我们获得共享路径的相对长度,网络拓扑仍然可以如实地恢复。在任何三个路径之间准确定位。

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