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A graph-theoretic study of the flattening Internet AS topology

机译:平坦互联网作为拓扑的图形 - 理论研究

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The Internet topology at the autonomous system (AS) level has been under heavy investigation in recent years. Previous studies have shown that the Internet AS topology exhibits a power-law node degree distribution and a small-world structure. With the proliferation of peering links and IXPs between ASes, the traditional hierarchical Internet has been more flattened. In this paper, we conducted a graph-theoretic study of the Internet AS topology and applied the centrality metrics (including betweenness and closeness) to quantify the AS core. To this end, we implemented a progressive node deletion algorithm to eliminate high-rank AS nodes from the AS topology in order to study whether the AS topology maintains as a tiering graph. To evaluate the proposed algorithm, we constructed the Internet AS topology based BGP dumps harvested from 50 route servers. Our results show a strong trend quantitatively that the Internet AS topology has become much more flattened. The Internet is more resilient to node and link failures and is difficult to be torn down. This AS topology evolution trend may result in significant traffic shifting and potentially reshaping the global telecom industry.
机译:近年来,自治系统(AS)水平的互联网拓扑级别受重大调查。以前的研究表明,互联网作为拓扑表现出幂律节点度分布和小世界结构。随着ASE之间的凝视链接和IXP的扩散,传统的等级互联网比较扁平。在本文中,我们对互联网进行了图形 - 理论研究作为拓扑,并应用了中心度量(包括之间的中心度和接近)来量化为核心。为此,我们实现了一个渐进节点删除算法,以消除从作为拓扑的节点作为节点以研究作为拓扑是否保持为分层图。为了评估所提出的算法,我们将Internet构建为基于拓扑的BGP转储,从50个路由服务器收获。我们的结果定量表明互联网作为拓扑的拓扑已经变得更加平坦。 Internet更有弹性到节点和链接故障,并且难以拆除。这是拓扑演化趋势可能导致大量交通转移和潜在的重塑全球电信行业。

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