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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Deployment of an Algorithm for Large-Scale Topology Discovery
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Deployment of an Algorithm for Large-Scale Topology Discovery

机译:大规模拓扑发现算法的部署

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Topology discovery systems are starting to be introduced in the form of easily and widely deployed software. Unfortunately, the research community has not examined the problem of how to perform such measurements efficiently and in a network-friendly manner. This paper describes several contributions towards that end. These were first presented in the proceedings of ACM Sigmetrics 2005. We show that standard topology discovery methods (e.g., skitter) are quite inefficient, repeatedly probing the same interfaces. This is a concern, because when scaled up, such methods will generate so much traffic that they will begin to resemble distributed denial-of-service attacks. We propose two metrics focusing on redundancy in probing and show that both are important. We also propose and evaluate Doubletree, an algorithm that strongly reduces redundancy, while maintaining nearly the same level of node and link coverage. The key ideas are to exploit the tree-like structure of routes to and from a single point in order to guide when to stop probing, and to probe each path by starting near its midpoint. Following the Sigmetrics work, we implemented Doubletree, and deployed it in a real-network environment. This paper describes that implementation, as well as preliminary favorable results
机译:拓扑发现系统开始以易于部署和广泛部署的软件形式引入。不幸的是,研究团体尚未研究如何有效地以网络友好的方式进行此类测量的问题。本文介绍了为此目的做出的一些贡献。这些最初是在ACM Sigmetrics 2005的会议记录中提出的。我们证明了标准的拓扑发现方法(例如,skitter)效率很低,可以反复探测相同的接口。这是一个令人担忧的问题,因为当扩大规模时,此类方法将产生大量流量,以至于开始类似于分布式拒绝服务攻击。我们提出两个指标,重点是探测中的冗余,并表明两者都很重要。我们还提出并评估Doubletree,该算法可大大减少冗余,同时保持几乎相同水平的节点和链路覆盖范围。关键思想是利用往返于单点的树状路线结构,以指导何时停止探测,并通过从中点附近开始探测每条路径。完成Sigmetrics工作之后,我们实现了Doubletree,并将其部署在实际网络环境中。本文介绍了该实施方案以及初步的良好结果

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