Non-parametric Predictive Inference of Preventive Rejuvenation Schedule in Operational Software Systems

K. Rinsaka, T. Dohi
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引用次数: 8

Abstract

In this paper we develop a novel approach to estimate the optimal preventive rejuvenation schedule which maximizes the steady-state system availability. In the case with unknown system failure time distribution, the preventive rejuvenation is triggered for the purpose of preventive maintenance of software system. We formulate the upper and lower bounds of the predictive system availability using the one-look ahead predictive survivor function, and derive the pessimistic and optimistic rejuvenation policies. In the real data analysis we focus on a real Web server system and show the usefulness of the non-parametric predictive inference approach proposed in this paper.
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操作性软件系统预防性年轻化计划的非参数预测推理
本文提出了一种新的方法来估计使稳态系统可用性最大化的最优预防性恢复计划。在系统故障时间分布未知的情况下,触发预防性年轻化,对软件系统进行预防性维护。利用一展望预测存活函数,给出了预测系统可用性的上界和下界,并推导出了悲观和乐观的恢复策略。在实际的数据分析中,我们以一个真实的Web服务器系统为例,展示了本文提出的非参数预测推理方法的有效性。
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Non-parametric Predictive Inference of Preventive Rejuvenation Schedule in Operational Software Systems Predicting Subsystem Failures using Dependency Graph Complexities Integrated Software Vulnerability and Security Functionality Assessment Correlations between Internal Software Metrics and Software Dependability in a Large Population of Small C/C++ Programs On the Impact of Injection Triggers for OS Robustness Evaluation
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