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Fast Fault Tree Analysis for Hybrid Uncertainties Using Stochastic Logic Implemented on Field-Programmable Gate Arrays: An Application in Quantitative Assessment and mitigation of Welding Defects Risk

机译:利用现场可编程门阵列上的随机逻辑对混合不确定性进行快速故障树分析:在焊接缺陷风险的定量评估和缓解中的应用

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摘要

This paper presents a stochastic logic-based method for quantitative risk assessment using fault tree analysis (FTA) that can take into account both types of uncertainties including objective and subjective uncertainties. In the proposed method, each fault tree gate is translated to its corresponding stochastic logic template and then is implemented on a field programmable gate array (FPGA). Because the analysis does not utilize any transformation methods, the results of analysis are more accurate than those methods which are based on transformation from possibility to probability distributions or vice versa. Experimental results for a benchmark fault tree show that this method accelerates analysis time compared to conventional hybrid uncertainty analysis method and transformation methods. The efficiency of the proposed method is demonstrated by implementation in a real steel structure project. The quantitative risk assessment is performed for the incomplete penetration as one of the defects encountered in arc welding process, and its results are compared with transformation methods. The comparison results show the proposed hybrid uncertainty analysis method is also more accurate in comparison to the transformation-based approaches. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:本文提出了一种基于故障逻辑的,使用故障树分析(FTA)进行定量风险评估的方法,该方法可以同时考虑两种不确定性,包括客观和主观不确定性。在提出的方法中,将每个故障树门转换为其相应的随机逻辑模板,然后在现场可编程门阵列(FPGA)上实现。因为分析没有使用任何转换方法,所以分析结果比那些基于从可能性分布到概率分布的转换方法更准确,反之亦然。基准故障树的实验结果表明,与传统的混合不确定性分析方法和变换方法相比,该方法可缩短分析时间。通过在实际钢结构项目中的实施证明了所提出方法的效率。对不完全熔深进行定量风险评估,将其作为电弧焊过程中遇到的缺陷之一,并将其​​结果与转换方法进行比较。比较结果表明,与基于变换的方法相比,所提出的混合不确定性分析方法也更加准确。版权所有(c)2016 John Wiley&Sons,Ltd.

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