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Generalized Boolean logic Driven Markov Processes: A powerful modeling framework for Model-Based Safety Analysis of dynamic repairable and reconfigurable systems

机译:广义布尔逻辑驱动马尔可夫流程:一种强大的动态可修复和可重新配置系统的基于模型的安全性分析建模框架

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摘要

This paper presents a modeling framework that permits to describe in an integrated manner the structure of the critical system to analyze, by using an enriched fault tree, the dysfunctional behavior of its components, by means of Markov processes, and the reconfiguration strategies that have been planned to ensure safety and availability, with Moore machines. This framework has been developed from BDMP (Boolean logic Driven Markov Processes), a previous framework for dynamic repairable systems. First, the contribution is motivated by pinpointing the limitations of BDMP to model complex reconfiguration strategies and the failures of the control of these strategies. The syntax and semantics of GBDMP (Generalized Boolean logic Driven Markov Processes) are then formally defined; in particular, an algorithm to analyze the dynamic behavior of a GBDMP model is developed. The modeling capabilities of this framework are illustrated on three representative examples. Last, qualitative and quantitative analysis of GDBMP models highlight the benefits of the approach.
机译:本文提出了一种建模框架,允许以综合方式描述临界系统的结构来分析,通过使用丰富的故障树,通过Markov进程以及已有的重新配置策略以及已有的重新配置策略计划确保安全性和可用性,摩尔机器。此框架已从BDMP(布尔逻辑驱动马尔可夫进程)开发,该框架是动态可修复系统的先前框架。首先,通过确定BDMP的限制来模拟复杂重新配置策略的局限性以及对这些策略的控制的失败来激励贡献。然后正式定义GBDMP的语法和语义(广义布尔逻辑驱动马尔可夫进程);特别地,开发了一种分析GBDMP模型的动态行为的算法。该框架的建模能力在三个代表性示例中示出。最后,GDBMP模型的定性和定量分析突出了该方法的好处。

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