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Layer 1-Informed Internet Topology Measurement

机译:第1层知识的互联网拓扑测量

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Understanding the Internet's topological structure continues to be fraught with challenges. In this paper, we investigate the hypothesis that physical maps of service provider infrastructure can be used to effectively guide topology discovery based on network layer TTL-limited measurement. The goal of our work is to focus layer 3-based probing on broadly identifying Internet infrastructure that has a fixed geographic location such as POPs, IXPs and other kinds of hosting facilities. We begin by comparing more than 1.5 years of TTL-limited probe data from the Ark [25] project with maps of service provider infrastructure from the Internet Atlas [15] project. We find that there are substantially more nodes and links identified in the service provider map data versus the probe data. Next, we describe a new method for probe-based measurement of physical infrastructure called POPsicle that is based on careful selection of probe source-destination pairs. We demonstrate the capability of our method through an extensive measurement study using existing "looking glass" vantage points distributed throughout the Internet and show that it reveals 2.4 times more physical node locations versus standard probing methods. To demonstrate the deployability of POPsicle we also conduct tests at an IXP. Our results again show that POPsicle can identify more physical node locations compared with standard layer 3 probes, and through this deployment approach it can be used to measure thousands of networks world wide.
机译:了解互联网的拓扑结构继续受到挑战的挑战。在本文中,我们调查了服务提供商基础设施物理地图的假设可用于基于网络层TTL限制测量来有效地指导拓扑发现。我们的作品的目标是通过广泛地识别具有固定地理位置的互联网基础架构的基于第三层探索,例如POPS,IXP和其他类型的托管设施。我们首先比较来自ARK [25]项目的1.5多年的TTL限量探头数据,从Internet Atlas [15]项目中的服务提供商基础架构的地图。我们发现,服务提供商映射数据中具有大量的节点和链接与探测数据。接下来,我们描述了一种新的探测探测物理基础设施测量的方法,称为冰棒,这是基于仔细选择探针源 - 目的地对。我们通过使用在整个互联网上分布的现有“看玻璃”的Vantage点来证明我们的方法的能力通过广泛的测量研究,并表明它显示出更多的物理节点位置与标准探测方法的2.4倍。为了展示冰棒的可部署性,我们也在IXP进行测试。我们的结果再次表明,与标准三层探针相比,冰棒可以识别更多的物理节点位置,并通过此部署方法来衡量全球数千个网络。

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