Semi-Markov Availability Modeling of a Redundant System with Partial and Full Rejuvenation Actions

V. Koutras, A. Platis
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引用次数: 24

Abstract

Software rejuvenation is a preventive maintenance technique to prevent failures in continuously running systems that experience software aging. In this paper, rejuvenation is modeled in a redundant computer system via a semi-Markov process in order to counteract software aging. The system can be switched into the standby unit automatically or manually in the case of a failure at the switching mechanism. Depending on the degradation of the system resources, the running node is either rejuvenated or continues serving and systempsilas steady-state availability is studied along with the optimal time to perform rejuvenation, which increases systempsilas availability. Moreover, an alternative rejuvenation modeling is introduced, in which two different actions; partial and full rejuvenation are performed according to the degradation level. The optimal rejuvenation policies for this case are also derived, leading the system to higher levels of availability.
具有部分和完全恢复动作的冗余系统的半马尔可夫可用性建模
软件再生是一种预防性维护技术,用于防止在经历软件老化的连续运行系统中出现故障。本文通过半马尔可夫过程在冗余计算机系统中对软件的返老还童进行建模,以抵消软件的老化。在切换机制发生故障的情况下,系统可以自动或手动切换到备用单元。根据系统资源的退化情况,运行节点要么恢复活力,要么继续服务,并研究系统的稳态可用性以及执行恢复活力的最佳时间,从而提高系统的可用性。此外,还介绍了一种替代再生模型,其中两种不同的动作;根据降解程度进行部分回春和完全回春。本文还推导出了这种情况下的最佳恢复策略,从而使系统达到更高的可用性水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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