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Topological Implications of Cascading Interdomain Bilateral Traffic Agreements

机译:级联域间双边流量协议的拓扑含义

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The Internet uses a model in which Autonomous Systems (AS) peer bilaterally with each other, resulting in a cascaded connectivity model: the end-to-end service that an end-user sees is the result of this cascade of bilateral traffic agreements. As a result, the routing decisions at each AS beyond the next hop are implicitly delegated, so an AS has limited control over the remaining path. While this may be considered a key feature of the Internet (e.g., helps scalability), the impact of this cascading model on the structure of the Internet is not yet well understood. In this paper, we analyze this cascaded model using concepts of game theory. Although our model cannot capture the full complexity of the real Internet — we actually aim at simplicity and try to only isolate the cascading effect —, our results suggest that cascading bilateral agreements brings order to an arbitrary graph. In particular, it brings forward some well-known properties of the Internet topology, such as the current AS hierarchy and common peering models. Finally, we compare our results with topological and routing data, obtained from CAIDA, looking for experimental evidence of our results, while further exploring the insight obtained from our model.
机译:互联网使用的模型中,自治系统(AS)彼此双向对等,从而形成了级联的连接模型:最终用户看到的端到端服务是这种级联的双边流量协议的结果。结果,每个AS的下一跳之外的路由决策都被隐式委派,因此AS对剩余路径的控制有限。虽然这可以被认为是互联网的关键特征(例如,有助于可扩展性),但是这种级联模型对互联网结构的影响尚未得到很好的理解。在本文中,我们使用博弈论的概念分析了这种级联模型。尽管我们的模型无法捕捉到实际Internet的全部复杂性(实际上,我们的目标是简单性,并试图仅隔离级联效应),但我们的结果表明,级联的双边协议使顺序变得任意。特别是,它提出了Internet拓扑的一些众所周知的属性,例如当前的AS层次结构和公共对等模型。最后,我们将我们的结果与从CAIDA获得的拓扑和路由数据进行比较,寻找我们结果的实验​​证据,同时进一步探索从我们的模型中获得的见识。

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