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Designing Optimal Middlebox Recovery Schemes with Performance Guarantees

机译:设计具有性能保证的最佳中间盒恢复方案

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Enabling functionality in modern network is achieved through the use of middleboxes. Middleboxes suffer from temporal unavailability due to various reasons, such as hardware faults. We design a backup scheme that takes advantage of Network Function Virtualization (NFV), an emerging paradigm of implementing network functions in software, deployed on commodity servers. We utilize the agility of software-based systems, and the gap between the resource utilization of active and standby components, in order to design an optimal limited-resource backup scheme. We focus on the case where a small number of middleboxes fail simultaneously, and study the backup resources required for guaranteeing full recovery from any set of failures, of up to some limited size. Via a novel graph-based presentation, we develop a provably optimal construction of such backup schemes. Since full recovery is guaranteed, our construction does not rely on failure statistics, which are typically hard to obtain. Simulation results show that our proposed approach is applicable even for the case of larger numbers of failures.
机译:现代网络中的启用功能是通过使用中间盒来实现的。由于各种原因(例如硬件故障),中间盒遭受时间不可用的困扰。我们设计了一种利用网络功能虚拟化(NFV)的备份方案,NFV是在商用服务器上部署的以软件实现网络功能的新兴范例。我们利用基于软件的系统的敏捷性以及活动和备用组件的资源利用率之间的差距,以设计最佳的有限资源备份方案。我们着眼于少数中间盒同时发生故障的情况,并研究了保证从任何数量的故障中完全恢复所需的备份资源,这些故障最多可达到某个有限的大小。通过新颖的基于图形的演示,我们开发了这种备份方案的可证明的最佳构造。由于可以保证完全恢复,因此我们的构造不依赖于通常很难获得的故障统计信息。仿真结果表明,我们提出的方法即使在故障数量较多的情况下也适用。

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