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Optimal Virtual Network Function Placement in Chains Using Backups with Availability Schedule

机译:使用具有可用性计划的备份,最佳虚拟网络功能在链中放置

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A suitable virtual network function (VNF) placement considering a node availability schedule extends service continuous serviceable time by suppressing service interruption caused by function reallocation and node unavailabilities. However, function placement cannot avoid service interruption caused by node unavailabilities. This paper considers a primary and backup VNF placement model to avoid service interruption caused by node unavailabilities by using backup functions. The considered backup functions have a period of startup time for preparation before they can be used and the number of them is limited. The proposed model is formulated as an integer linear programming problem to place the primary and backup VNFs based on the availability schedule at continuous time slots. We aim to maximize the minimum number of continuously available time slots in all service function chains (SFCs) over the deterministic availability schedule. We obverse that the proposed model considering the limited number of backup functions outperforms baseline models in terms of the minimum number of longest continuous available time slots in all SFCs. We introduce an algorithm to estimate the number of key unavailabilities at each time slot, which can find the unavailable nodes which are the bottlenecks to increase the service continuous available time at each time slot.
机译:考虑节点可用性调度的合适虚拟网络功能(VNF)放置通过抑制由函数重新定位和节点Unavailabilities引起的服务中断来扩展服务连续可维护时间。但是,功能放置无法避免由节点不占用可图引起的服务中断。本文考虑了一个主要和备份VNF放置模型,以避免通过使用备份函数由节点Unavailabilities引起的服务中断。所考虑的备份功能具有在使用之前准备的启动时间,并且它们的数量有限。该建议的模型被配制为整数线性编程问题,以基于连续时隙的可用时间表来放置主和备份VNF。我们的目标是通过确定性可用性计划最大限度地提高所有服务函数链中的最小可用时隙(SFC)。正是考虑到考虑有限数量的备份函数的所提出的模型在所有SFC中的最小连续可用时隙的最小连续可用时隙方面优于基线模型。我们介绍了一种算法来估计每个时隙处的关键不可用的零件数量,它可以找到不可用的节点,这些节点是在每个时隙时增加服务连续可用时间的瓶颈。

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