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Comparing Software Rejuvenation Policies under Different Dependability Measures

机译:比较不同可靠性措施下的软件复兴政策

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摘要

Software rejuvenation is a preventive and proactive solution that is particularly useful for counteracting the phenomenon of software aging. In this paper, we consider both the periodic and non-periodic software rejuvenation policies under different dependability measures. As is well known, the steady-state system availability is the probability that the software system is operating in the steady state and, at the same time, is often regarded as the mean up rate in the system operation period. We show that the mean up rate should be defined as the mean value of up rate, but not as the mean up time per mean operation time. We derive numerically the optimal software rejuvenation policies which maximize the steady-state system availability and the mean up rate, respectively, for each periodic or non-periodic model. Numerical examples show that the real mean up rate is always smaller than the system availability in the steady state and that the availability overestimates the ratio of operative time of the software system.
机译:软件复兴是一种预防性的主动解决方案,对于抵消软件老化现象特别有用。在本文中,我们考虑了在不同可靠性措施下的周期性和非周期性软件更新策略。众所周知,稳态系统可用性是软件系统在稳态下运行的概率,同时通常被视为系统运行期间的平均启动率。我们表明,平均上升速率应定义为上升速率的平均值,而不是每平均操作时间的平均上升时间。我们从数值上推导了最佳的软件更新策略,该策略分别针对每个周期性或非周期性模型最大化稳态系统的可用性和平均启动率。数值算例表明,实际平均上升率始终小于稳定状态下的系统可用性,并且可用性高估了软件系统的工作时间比率。

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