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No-Jump-into-Latency in China's Internet! Toward Last-Mile Hop Count Based IP Geo-localization

机译:中国互联网上没有跳转延迟!朝着基于IP地理定位的最后一次跳跃计数

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Last-mile geo-localization plays an essential role in many location-based services, such as fraud detection and targeted advertising. In this study, we point out that round trip time (RTT) latency shows an extremely weak correlation with physical distance estimation in China's Internet, since a path between a vantage point and a destination can often be circuitous and inflated by queuing and processing delays. To sidestep the latency measurement, we perform a three-tier hop count based IP geo-localization mapping for China's Internet, on the assumption that each provincial router only serves a limited area. The mapping approach begins at the first tier using a single vantage point to fetch large-scale traceroute paths from the server to landmarks and target IPs. At the second tier, we try to find the last common routers along the traceroute paths of targets and landmarks and aggregate their hop count distances. At the third tier, we estimate the physical distances from hop count distances and provincial router radii, and geo-localize the targets to the nearest landmarks. Through large-scale experiments, we show that our approach is both cost-efficient and reliable, and can achieve last-ten-kilometer IP geo-localization for approximately 65% of the total 48874 pingable target IP addresses with a single ping server, and our hop count based approach completely outperforms the RTT based method.
机译:最后一英里的地理定位起着许多基于位置的服务,如欺诈检测和有针对性的广告的重要作用。在这项研究中,我们指出,往返时间(RTT)的延迟显示,在中国互联网的物理距离估计的极其微弱的相关性,因为一个有利位置与目的地之间的路径往往是迂回的和排队和处理延迟膨胀。为了避开延迟测量,我们执行基于对中国互联网IP地理定位映射三层跳数,对各省级路由器只提供有限的区域的假设。的映射方法开始于使用一个有利的位置,以从服务器取回到地标和目标IP地址的大型跟踪路由路径的第一层。在第二层次上,我们试图找到沿的目标和地标跟踪路由路径的最后共同路由器和汇聚他们的跳数距离。在第三层,我们估计从跳数距离和省级路由器半径,和物理距离的地理定位的目标,到最近的地标。通过大规模的实验,我们表明,我们的做法是符合成本效益和可靠,并能实现最后10公里的IP地理定位总额48874个ping的目标IP地址大约为65%,与单一的ping服务器,我们跳数为基础的方法完全胜过RTT为基础的方法。

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