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Mission Reliability, Cost and Time for Cold Standby Computing Systems with Periodic Backup

机译:具有定期备份的冷备用计算系统的任务可靠性,成本和时间

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Life critical applications like space missions and flight controls require their computing systems to be equipped with some fault-tolerance mechanism to meet stringent reliability requirements by performing the intended function even in the case of element failures. Such benefit, however, cannot come without extra time as well as extra overhead and capital costs. This paper for the first time considers the modeling and evaluation of mission reliability, expected mission time and cost simultaneously for 1-out-of-: G non-repairable cold standby computing systems subject to periodic backup actions. Based on the suggested numerical evaluation method, the optimal backup frequency problems are formulated and solved, providing the optimal number of backup operations during the mission to maximize the system reliability or to minimize the mission cost or time. In the case of non-identical system elements, the optimal standby element sequencing problem arises as the order in which the system elements are initiated can impact the system reliability and mission cost and time greatly; such problems are formulated and solved for the 1-out-of-: G cold standby computing systems with periodic backups. Furthermore, a combined optimization problem is considered, where a combination of the element initiation sequence and backup frequency providing the best combination of mission reliability, cost, and time is found. The proposed methodology can facilitate a reliability-cost-time tradeoff study in the practical design of cold standby systems, thus assist in making the optimal decision on the system's standby and backup policy. Examples are provided for illustrating- the considered problems and suggested solution methodology.
机译:诸如太空任务和飞行控制之类的生命关键型应用程序要求其计算系统配备某种容错机制,即使在元件故障的情况下,也可以通过执行预期的功能来满足严格的可靠性要求。但是,如果没有额外的时间以及额外的开销和资本成本,就无法获得这样的好处。本文首次考虑了定期进行备用行动的非出格:G不可修复冷备计算系统的任务可靠性,预期任务时间和成本的建模和评估同时进行。根据建议的数值评估方法,制定并解决了最佳备用频率问题,从而在任务期间提供最佳的备用操作次数,以最大程度地提高系统可靠性或最小化任务成本或时间。在系统元件不同的情况下,由于系统元件的启动顺序会极大地影响系统可靠性,任务成本和时间,因此会出现最佳的备用元件排序问题。对于具有定期备份功能的G外冷备用计算系统,制定并解决了此类问题。此外,考虑了组合优化问题,其中找到了元素初始化顺序和备用频率的组合,这些组合提供了任务可靠性,成本和时间的最佳组合。所提出的方法可以在冷备用系统的实际设计中促进可靠性-成本-时间折衷的研究,从而有助于对系统的备用和备用策略做出最佳决策。提供示例以说明考虑的问题和建议的解决方法。

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