多源多目的拓扑推理使用网络编码

Pegah Sattari, A. Markopoulou, C. Fragouli
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引用次数: 18

摘要

在本文中,我们结合网络编码和层析技术进行拓扑推断。我们的目标是通过在给定的多个源和多个接收器之间发送探测,以及让中间节点执行网络编码操作来推断网络的拓扑结构。我们结合并扩展了两个独立发展的想法。一方面,网络编码引入了拓扑相关,然后可以在接收器上利用它来推断拓扑[1]。另一方面,已有研究表明,传统的(即不带网络编码的)多源、多接收机层析成像问题可以分解为多个两源、两接收机子问题[2]。我们的第一个贡献是表明,当中间节点执行网络编码时,网络编码数据包中包含的拓扑信息允许准确区分所有不同的2 × 2子网组件,这是传统层析成像技术无法做到的。我们的第二个贡献是利用这些知识来合并子网并准确地重建一般拓扑。我们的方法适用于任何一般的类似互联网的拓扑结构,并且对延迟可变性和数据包丢失的存在具有鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple source multiple destination topology inference using network coding
In this paper, we combine network coding and tomographic techniques for topology inference. Our goal is to infer the topology of a network by sending probes between a given set of multiple sources and multiple receivers and by having intermediate nodes perform network coding operations. We combine and extend two ideas that have been developed independently. On one hand, network coding introduces topology-dependent correlation, which can then be exploited at the receivers to infer the topology [1]. On the other hand, it has been shown that a traditional (i.e., without network coding) multiple source, multiple receiver tomography problem can be decomposed into multiple two source, two receiver subproblems [2]. Our first contribution is to show that, when intermediate nodes perform network coding, topological information contained in network coded packets allows to accurately distinguish among all different 2-by-2 subnetwork components, which was not possible with traditional tomographic techniques. Our second contribution is to use this knowledge to merge the subnetworks and accurately reconstruct the general topology. Our approach is applicable to any general Internet-like topology, and is robust to the presence of delay variability and packet loss.
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