具有共享路径共享计算(SPSC)保护的光学云的量纲

C. Natalino, P. Monti, L. França, M. Furdek, L. Wosinska, C. Francês, Joao W. Costa
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引用次数: 5

摘要

服务重新定位是一种很有前途的策略,可以在光云环境中提供灵活且资源高效的链路故障恢复能力。但是,当故障影响到承载数据中心(DC)的节点时,无法从受影响的数据中心迁移业务。防止数据中心故障的一种替代方案依赖于使用设计策略,以增加网络的资源过度构建(即成本)为代价,在备份数据中心中复制IT(即存储和处理)资源。这项工作提出了一种基于共享路径共享计算(SPSC)概念的量纲策略,该策略能够防止任何单个链路、服务器或数据中心故障场景,同时最小化网络和IT基础设施的资源过度构建。SPSC基于这样一种直觉,即只有存储单元需要在备份DC中完成复制,而处理单元只有在发生故障后才能实例化,从而使设计策略有一定的余地来最小化它们的数量。因此,与专用保护策略相比,建议的SPSC设计显着减少了备份资源的数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dimensioning optical clouds with shared-path shared-computing (SPSC) protection
Service relocation represents a promising strategy to provide flexible and resource efficient resiliency from link failures in the optical cloud environment. However, when a failure affects a node hosting a datacenter (DC), service relocation from the affected DC is not possible. One alternative to protect against DC failures relies on using design strategies that duplicate the IT (i.e., storage and processing) resources in a backup DC at the expense of increasing resource overbuild (i.e., cost) of the network. This work proposes a dimensioning strategy based on the shared-path shared-computing (SPSC) concept able to protect against any single link, server, or DC failure scenario with minimal resource overbuild for the network and IT infrastructures. SPSC is based on the intuition that only storage units need complete replication in backup DC, while processing units can be instantiated only after the occurrence of a failure, leaving the design strategy some leeway to minimize their number. As result, the proposed SPSC design shows a considerable reduction in the amount of backup resources when compared to the dedicated protection strategies.
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