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A Hierarchical Approach for Dynamic Fault Trees Solution Through Semi-Markov Process

机译:半马尔可夫过程动态故障树解决方案的分层方法

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摘要

Dynamic fault tree (DFT) is a top-down deductive technique extended to model systems with complex failure behaviors and interactions. In two last decades, different methods have been applied to improve its capabilities, such as computational complexity reduction, modularization, intricate failure distribution, and reconfiguration. This paper uses semi-Markov process (SMP) theorem for DFT solution with the motivation of obviating the model state-explosion, considering nonexponential failure distribution through a hierarchical solution. In addition, in the proposed method, a universal SMP for static and dynamic gates is introduced, which can generalize dynamic behaviors like functional dependencies, sequences, priorities, and spares in a single model. The efficiency of the method regarding precision and competitiveness with commercial tools, repeated events consideration, computational complexity reduction, nonexponential failure distribution consideration, and repairable events in DFT is studied by a number of examples, and the results are then compared to those of the selected existing methods.
机译:动态故障树(DFT)是一种自上而下的演绎技术,扩展到具有复杂失败行为和交互的模型系统。在过去的两个十年中,已应用不同的方法来改善其能力,例如计算复杂性降低,模块化,复杂的故障分布和重新配置。本文采用Semi-Markov过程(SMP)定理为DFT解决方案,避免模型状态爆炸的动机,考虑到通过分层解决方案的非表现故障分布。此外,在所提出的方法中,引入了一种用于静态和动态栅极的通用SMP,其可以概括单个模型中的功能依赖性,序列,优先级和备件等动态行为。通过许多示例研究了关于商业工具的精度和竞争力,重复事件考虑,计算复杂性减少,非直流失败分布考虑和可修复事件的效率,并将结果与​​所选的结果进行比较现有方法。

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