Hierarchical computation of interval availability and related metrics

D. Tang, Kishor S. Trivedi
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引用次数: 12

Abstract

As the new generation high-availability commercial computer systems incorporate deferred repair service strategies, steady-state availability metrics may no longer reflect reality. Transient solution of availability models for such systems to calculate interval availability over shorter time horizon is desirable. While many solution methods for transient analysis have been proposed, how to apply these methods on hierarchical models has not been well addressed. This paper describes an approach to computing interval availability and related metrics for hierarchical Markov models. The approach divides the time interval of interest into small subintervals such that the input parameters can be treated as constants in each subinterval to make the model satisfy the homogeneous Markov property, and then pass the output interval availability metrics as constants from the sub-model to its parent model. Finally, these quantities are integrated to obtain the expected interval availability for the entire interval. The study also addresses methods of passing parameters across levels for generating multiple metrics from a hierarchical model. The approach is illustrated with an example model and has been implemented in RAScad. All computations for the example model have also been carried out using the SHARPE textual language interface.
区间可用性及相关度量的分层计算
随着新一代高可用性商用计算机系统采用延迟维修服务策略,稳态可用性度量可能不再反映现实。这类系统需要可用性模型的暂态解,以便在较短的时间范围内计算区间可用性。虽然已有许多暂态分析的求解方法,但如何将这些方法应用于层次模型还没有得到很好的解决。本文描述了一种计算层次马尔可夫模型的区间可用性和相关度量的方法。该方法将感兴趣的时间区间划分为小的子区间,将输入参数作为每个子区间的常数处理,使模型满足齐次马尔可夫性质,然后将输出区间可用性指标作为常数从子模型传递给父模型。最后,对这些量进行积分,得到整个区间的预期区间可用性。该研究还讨论了从层次模型生成多个度量的跨级别传递参数的方法。通过实例模型说明了该方法,并在RAScad中实现了该方法。实例模型的所有计算也使用SHARPE文本语言接口进行。
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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