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Bandwidth-optimal Failure Recovery Scheme for Robust Programmable Networks

机译:鲁棒可编程网络的带宽最优故障恢复方案

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With the emergence of Network Function Virtualization (NFV) and Software Defined Networking (SDN) efficient network algorithms considered too hard to be put in practice in the past now have a second chance to be considered again. In this context, we rethink the network dimensioning problem with protection against Shared Risk Link Group (SLRG) failures. In this paper, we consider a path-based protection scheme with a global rerouting strategy, in which, for each failure situation, there may be a new routing of all the demands. Our optimization task is to minimize the needed amount of bandwidth. After discussing the hardness of the problem, we develop a scalable mathematical model that we handle using the Column Generation technique. Through extensive simulations on real-world IP network topologies and on random generated instances, we show the effectiveness of our method. Finally, our implementation in OpenDaylight demonstrates the feasibility of the approach and its evaluation with Mininet shows that technical implementation choices may have a dramatic impact on the time needed to reestablish the flows after a failure takes place.
机译:随着网络功能虚拟化(NFV)和软件定义网络(SDN)的出现,过去认为难以实施的高效网络算法现在又有了再次考虑的机会。在这种情况下,我们将通过防止共享风险链接组(SLRG)故障的保护来重新考虑网络规模问题。在本文中,我们考虑一种具有全局重路由策略的基于路径的保护方案,其中,对于每种故障情况,可能会针对所有需求进行新的路由。我们的优化任务是最小化所需的带宽量。在讨论了问题的严重性之后,我们开发了可扩展的数学模型,我们使用列生成技术来处理该模型。通过对真实IP网络拓扑和随机生成实例的大量仿真,我们证明了该方法的有效性。最后,我们在OpenDaylight中的实施证明了该方法的可行性,并且通过Mininet对其进行的评估表明,技术实施的选择可能会对故障发生后重新建立流程所需的时间产生重大影响。

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