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Efficient as Network Topology Measurement Based on Ingress to Subnet Reachability

机译:作为基于子网可达性的入口的高效网络拓扑测量

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Internet topology measurement studies rely on a few vantage points to trace towards a large number of destinations. Such traces contain significant overlaps, which increase the measurement traffic and duration. As there is considerable redundancy in the generated measurement probes, researchers have been exploring probe reduction approaches with minimal loss of the topological information. To decrease the probing overhead, in this paper, we propose ingress based probing technique which relies on the ingress points of an Autonomous System (AS) towards the target subnetworks. To identify ingress points for each subnetwork of the target AS, we first probe the subnet prefixes announced via BGP. After identifying the ingress points of the subnetworks, the subsequent probing is conducted based on the vantage point reachability of the ingresses. Additionally, we present how to utilize subnets with the tree based probe reduction approaches. As shown in an experimental study with 10 ASes, ingress based approaches considerably reduce the probing overhead while minimizing the loss of topological information.
机译:互联网拓扑测量研究依靠一些优势点来追踪大量的目的地。这样的迹线包含大量重叠,从而增加了测量流量和持续时间。由于所生成的测量探针存在大量冗余,因此研究人员一直在探索减少拓扑信息损失最小的探针减少方法。为了减少探测开销,在本文中,我们提出了基于入口的探测技术,该技术依赖于自治系统(AS)朝向目标子网的入口点。为了识别目标AS的每个子网的入口点,我们首先探测通过BGP宣布的子网前缀。在确定子网的入口点之后,基于入口的有利位置可及性进行后续探测。此外,我们介绍了如何通过基于树的探针减少方法来利用子网。如对10个AS进行的实验研究所示,基于入口的方法可显着减少探测开销,同时最大程度地减少拓扑信息的丢失。

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