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Towards realistic physical topology models for Internet backbone networks

机译:迈向Internet骨干网的现实物理拓扑模型

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In this paper, we consider the problem of physical topology design (i.e., physical connectivity) for Internet backbone networks. We explore the driving forces for service providers to layout fiber links, and propose a new problem formulation that can accurately emulate the existing optical backbone networks. Unlike previous studies which mainly focused on deployment cost, our model captures the physical design principles including (1) the cost of the infrastructure, (2) the expected performance, (3) geographical constraints, and (4) the resilience of the network to linkode failures (survivability). Obtaining an optimal solution is shown to be NP-hard, we thus present a polynomial time heuristic algorithm, HINT, to determine the number and the choice of constituent links. The efficacy of HINT is established in comparison with the published maps of three major scientific and commercial backbone networks: Internet2 Abilene, AT&T domestic express backbone, and Level3 network. Preliminary results reveal that taking performance, resilience and geographical constraints into consideration is necessary to emulate real backbones. The HINT heuristic yields a similarity of more than 90% with the published structures.
机译:在本文中,我们考虑了Internet骨干网的物理拓扑设计(即物理连接性)问题。我们探索了服务提供商布局光纤链路的驱动力,并提出了可以准确模拟现有光骨干网的新问题公式。与以前的研究主要关注部署成本不同,我们的模型捕获了物理设计原则,包括(1)基础架构的成本,(2)预期的性能,(3)地理约束和(4)网络对网络的弹性。链接/节点故障(可生存性)。证明获得最优解是NP难的,因此,我们提出一种多项式时间启发式算法HINT,以确定组成链的数量和选择。通过与三个主要的科学和商业骨干网的已发布地图(即Internet2 Abilene,AT&T国内快递骨干网和Level3网络)进行比较,可以确定HINT的功效。初步结果表明,要模拟真实的骨干网,必须考虑性能,弹性和地理约束。 HINT启发式方法与已发布的结构产生了超过90%的相似性。

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