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How to integrate inter-component dependencies into combinatorial availability models

机译:如何将组件间依赖项集成到组合可用性模型中

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摘要

In this paper, a novel modeling method for highly available systems is proposed. As an input, the model accepts common reliability block diagrams, which are widely used because of their excellent manageability. However, unlike traditional solution methods for block diagrams, the proposed method also supports the attribution of the model with several kinds of inter-component dependencies. Thus, the evaluation of such a model yields much more realistic results, similar to using state-based models like Markovian chains (MC) or generalized stochastic Petri nets (GSPN. [M. Ajmone Marson et al., 1995, R.A. Saner et al., 1996]). However, compared to traditional state-based models, the proposed method offers a much better manageability. This means that all models are intuitive, clear, and can easily be modified, as well as created and refined in a stepwise manner. These advantages are exemplified by a realistic industrial application from the area of telecommunications. As the proposed models cannot be solved with classical solution methods for combinatorial availability models, we propose a new evaluation technique which is based on a transformation of the input models into semantically equivalent state-based models. This solution technique was implemented in the software tool OpenSESAME (simple but extensive structured availability modeling environment).
机译:本文提出了一种用于高可用系统的新型建模方法。作为输入,模型接受常见的可靠性框图,这些框图是由于其具有优异的可管理性而被广泛使用。但是,与框图的传统解决方案方法不同,所提出的方法还支持具有多种间组件依赖性的模型的归属。因此,这种模型的评估产生了更现实的结果,类似于使用马尔可夫链(MC)或广义随机Petri网(GSPN。[M.Ajmone Marson等,1995,Ra Saner等。,1996])。然而,与传统的国家模型相比,所提出的方法提供了更好的可管理性。这意味着所有型号都直观,清晰,并且可以轻松修改,并以逐步的方式创建和精制。这些优点是由电信领域的现实工业应用而举例说明。由于所提出的模型无法用Combinatial可用性模型的经典解方法来解决,因此我们提出了一种新的评估技术,其基于输入模型的转换为基于语义等效的状态模型。该解决方案技术在软件工具opensesame(简单但广泛的结构化可用性建模环境)中实现。

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