Effective Usage of Dynamic Circuits for IP Routing

M. Chamania, M. Caria, A. Jukan
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引用次数: 13

Abstract

The Internet is susceptible to congestion due to progressively increasing traffic as well as short-lived traffic surges. Traditional mechanisms to counter these effects over-provision the IP network to a significant degree. At the same time, the advent of dynamic circuits in L2/L1 networks has fueled the research in the area of network engineering which deals with the ability to add capacity in the higher layer (IP) by establishing dynamic circuits in the lower layers. However, effective usage of dynamic circuits is a challenge, as they can lead to IP routing instabilities. We present an approach wherein IP bypass links are established using dynamic circuits to alleviate congestion while keeping the routing stable in the IP layer. Proposed is an ILP based approach which computes the optimal set of circuits with and without the knowledge of the traffic matrix in the IP layer. The results show that even without the knowledge of the traffic matrix, the proposed method computes only a marginally higher number of bypasses, albeit at a higher capacity.
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动态电路在IP路由中的有效应用
由于流量的不断增加以及短暂的流量激增,互联网很容易出现拥塞。对抗这些影响的传统机制在很大程度上过度配置了IP网络。与此同时,L2/L1网络中动态电路的出现推动了网络工程领域的研究,这些研究涉及通过在较低层建立动态电路来增加高层(IP)容量的能力。然而,动态电路的有效使用是一个挑战,因为它们可能导致IP路由不稳定。我们提出了一种使用动态电路建立IP旁路链路的方法,以减轻拥塞,同时保持IP层中的路由稳定。提出了一种基于ILP的方法,在不知道IP层的流量矩阵的情况下计算出最优电路集。结果表明,即使在不知道交通矩阵的情况下,该方法计算的旁路数量也略高,尽管容量更高。
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