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Joint Progressive Network and Datacenter Recovery After Large-Scale Disasters

机译:在大规模灾害后联合逐行网络和数据中心恢复

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Large-scale disasters affecting both network and datacenter (DC) infrastructures can cause severe disruptions in cloud-based services. During post-disaster recovery, repairs are usually carried out in stages in a progressive manner due to limited repair resource availability. The order in which network elements and DCs are repaired can significantly impact users' reachability to important contents/services. We investigate joint progressive network and DC recovery in which network recovery and DC recovery are conducted in a coordinated manner such that users have access to the maximum possible amount of contents/services at each repair stage. We first solve the optimization problem of joint progressive recovery to find the optimal sequence of network element and DC repairs with the objective to maximize cumulative weighted content reachability in the network. We then propose a scalable heuristic for scheduling the sequential repair of network nodes/links and DCs. Our model assumes that, at each repair stage, one network node with adjacent links and one DC can be fully repaired; however, full recovery may not be guaranteed due to limited resource availability. Hence, we also propose a "resource-aware" approach (with two resource-allocation strategies, namely "selective allocation" and "adaptive allocation"), which considers both full and partial recovery of elements based on available resources at each stage. We show that, compared to disjoint progressive recovery approach, in which network recovery and DC recovery plans are independent, our joint progressive recovery approach provides significantly higher per-stage content reachability in the network.
机译:影响网络和数据中心(DC)基础架构的大规模灾害可能会导致基于云服务的严重中断。在灾后恢复期间,由于修复资源可用性有限,通常以逐步方式在阶段进行维修。维修网络元素和DCS的顺序可以显着影响用户对重要内容/服务的可达性。我们调查了联合逐行网络和DC恢复,其中以协调的方式进行网络恢复和DC恢复,使得用户可以访问每个修复阶段的最大可能的内容/服务量。我们首先解决联合逐行恢复的优化问题,找到网络元件和DC修复的最佳序列,目的是最大化网络中的累积加权内容可达性。然后,我们提出了一种可扩展的启发式,用于安排网络节点/链接和DCS的顺序修复。我们的模型假设,在每个维修阶段,可以完全修复一个具有相邻链路和一个DC的网络节点;但是,由于资源可用性有限,可能无法保证全面恢复。因此,我们还提出了一种“资源感知”方法(具有两个资源分配策略,即“选择性分配”和“自适应分配”),其考虑基于每个阶段的可用资源的全部和部分恢复元素。我们表明,与不相交的渐进恢复方法相比,其中网络恢复和直流恢复计划是独立的,我们的联合逐步恢复方法在网络中提供了显着更高的每阶段内容可达性。

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