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Parametric fault trees with dynamic gates and repair boxes

机译:带动态盖茨和维修盒的参数故障树

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A new approach is proposed to include s-dependencies in fault tree (FT) models. With respect to previous techniques, the approach presented in this paper is based on two peculiar powerful features. First, adopting a parameterization technique, referred to as parametric FT (PFT), to fold equal subtrees (or basic events) in order to resort to a more compact FT representation. It is shown that parameterization can be conveniently adopted as well for dynamic gates. Second, PFT can be modularized and each module translated into a high level colored Petri net in the form of a stochastic well-formed net (SWN). SWN generate a lumped Markov chain and the saving in the dimension of the state space can be very substantial with respect to standard (non colored) Petri nets. Translation of PFT modules into SWN has proved to be very flexible, and various kinds of new dependencies can be easily accommodated. In order to exploit this flexibility a new primitive, called repair box, is introduced. A repair box, attached to an event, causes the starting of a repair activity of all the components that failed as the event occurs. In contrast to all the previous FT based models, the addition of repair boxes enables the approach to model cyclic behaviors. The proposed approach as dynamic repairable PFT (DRPFT) was referred to. A tool supporting DRPFT is briefly described and the tool is validated by analyzing a benchmark proposed recently in the literature for quantitative comparison [H. Zhu et al., 2001].
机译:提出了一种新方法,包括故障树(FT)模型中的S依赖性。关于以前的技术,本文呈现的方法是基于两个特殊的强大功能。首先,采用参数化技术,称为参数FT(PFT),以折叠等于的子树(或基本事件),以便采用更紧凑的FT表示。结果表明,可以方便地采用参数化,用于动态栅极。其次,PFT可以模块化,并且每个模块以随机形成的网(SWN)的形式转换成高水平的彩色培养物网。 SWN产生一块马尔可夫链条,并且在状态空间的尺寸中的节省可以非常大幅度,相对于标准(非有色)培养网。 PFT模块转换为SWN的翻译已被证明是非常灵活的,并且可以容易地容纳各种新的依赖性。为了利用这种灵活性,介绍了一个新的原始,称为修复框。附加到事件的修复框导致在发生事件时失败的所有组件的修复活动启动。与基于FT的所有基于FT的模型相比,添加修复盒可以实现模拟循环行为的方法。所提出的方法是动态可修复的PFT(DRPFT)。简要描述一种支持DRPFT的工具,通过分析最近在文献中提出的基准来验证该工具以进行定量比较[H. Zhu等,2001]。

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