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Preventive Replacements in Real-Time Standby Systems With Periodic Backups

机译:具有定期备份的实时备用系统中的预防性替换

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摘要

This paper models a real-time warm standby system that has to accomplish a specified amount of task by a hard deadline. The system is subject to corrective replacements (CRs) upon failure of its operating element. It can also be renewed according to a predetermined schedule through preventive replacements (PRs). To facilitate an effective recovery of system operation after replacements, periodic backups are performed so that warm standby elements, upon being activated, can take over the mission task from the last backup point instead of from scratch. This paper presents a novel integrated model that considers effects of periodic backups, CRs and PRs in analyzing and optimizing real-time warm standby systems. Mission success probability and expected mission completion time are evaluated. Impacts of different mission and element parameters on mission success probability, optimal backup and PR policies, and optimal element activation sequence are investigated. It is shown that in warm standby systems with periodic backups and tight deadlines, PRs can improve the mission success probability even when they take the same time as CRs. When the maximum allowed mission time exceeds a certain level, PRs become ineffective and the optimal policy can involve only periodic backups.
机译:本文对实时热备用系统进行了建模,该系统必须在艰巨的期限内完成指定数量的任务。该系统在其操作元件发生故障时需要进行纠正性更换(CR)。也可以通过预防性更换(PR)根据预定的时间表进行更新。为了促进更换后系统操作的有效恢复,将执行定期备份,以便热备用元素在被激活后可以从最后一个备份点接替任务任务,而不是从头开始。本文提出了一种新颖的集成模型,该模型考虑了定期备份,CR和PR在分析和优化实时热备用系统中的影响。评估任务成功概率和预期任务完成时间。研究了不同任务和要素参数对任务成功概率,最佳备份和PR策略以及最佳要素激活顺序的影响。结果表明,在具有定期备份和紧迫的期限的热备用系统中,即使PR与CR花费相同的时间,PR也可以提高任务成功的概率。当允许的最大任务时间超过特定水平时,PR失效,最佳策略只能包含定期备份。

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