具有优先级与门的动态故障树的静态分析

Jianwen Xiang, F. Machida, Kumiko Tadano, Kazuo Yanoo, Wei Sun, Y. Maeno
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引用次数: 12

摘要

PAND门是动态故障树(DFTs)中的一种特殊的与门,它的输入事件必须以特定的顺序发生才能产生输出事件。假设系统的动态行为可以用(半)马尔可夫过程来建模,我们提出了一种从PAND门到AND门的转换,该转换带有一些相关的条件事件,称为CAND门。通过变换,可以将一个只有静态布尔逻辑门和PAND门的DFT转化为静态故障树,从而为对DFT进行有效的组合分析开辟了道路。此外,PAND门不能对输出事件不需要发生的事件之间的优先级关系进行建模。这一缺陷以前没有被解决过,而CAND门可以克服这一缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Static Analysis of Dynamic Fault Trees with Priority-AND Gates
A PAND gate is a special AND gate of Dynamic Fault Trees (DFTs) where the input events must occur in a specific order for the occurrence of its output event. We present a transformation from a PAND gate to an AND gate with some dependent conditioning events, called CAND gate, provided that the dynamic behavior of the system can be modeled by a (semi-)Markov process. With the transformation, a DFT with only static Boolean logic gates and PAND gates can be transformed into a static fault tree, which opens up the way to employ efficient combinatorial analysis for the DFT. In addition, the PAND gate cannot model the priority relations between the events whose occurrences are not necessary for the output event. The inability has not been addressed before and it can be overcome by the proposed CAND gate.
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