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A first-principles approach to understanding the Internet's router-level topology

机译:理解互联网路由器级拓扑的第一原理方法

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摘要

A detailed understanding of the many facets of the Internet's topological structure is critical for evaluating the performance of networking protocols, for assessing the effectiveness of proposed techniques to protect the network from nefarious intrusions and attacks, or for developing improved designs for resource provisioning. Previous studies of topology have focused on interpreting measurements or on phenomenological descriptions and evaluation of graph-theoretic properties of topology generators. We propose a complementary approach of combining a more subtle use of statistics and graph theory with a first-principles theory of router-level topology that reflects practical constraints and tradeoffs. While there is an inevitable tradeoff between model complexity and fidelity, a challenge is to distill from the seemingly endless list of potentially relevant technological and economic issues the features that are most essential to a solid understanding of the intrinsic fundamentals of network topology. We claim that very simple models that incorporate hard technological constraints on router and link bandwidth and connectivity, together with abstract models of user demand and network performance, can successfully address this challenge and further resolve much of the confusion and controversy that has surrounded topology generation and evaluation.
机译:对Internet拓扑结构的许多方面的详细了解对于评估网络协议的性能,评估提议的保护网络免受恶意入侵和攻击的技术的有效性,或开发用于资源配置的改进设计至关重要。拓扑的先前研究集中于解释测量或现象学描述,以及评估拓扑生成器的图论特性。我们提出了一种补充方法,该方法将对统计和图论的更微妙的使用与反映实际约束和折衷的路由器级拓扑的第一原理理论相结合。尽管在模型复杂性和逼真度之间不可避免地要取舍,但挑战是从看似无止境的潜在相关技术和经济问题清单中提炼出对于扎实理解网络拓扑内在基本原理至关重要的特征。我们声称,结合路由器和链路带宽和连接性的严格技术约束的非常简单的模型,以及用户需求和网络性能的抽象模型,可以成功应对这一挑战,并进一步解决围绕拓扑生成和生成的许多混乱和争议。评价。

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