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A Hazard Analysis Method for Software-Controlled Systems Based on System-Theoretic Accident Modeling and Process

机译:基于系统理论事故建模与过程的软件控制系统危害分析方法

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Hazard analysis is critical for safety assurance of smart systems which is usually controlled by software. As a novel causality model, Systems-Theoretic Accident Modeling and Processes (STAMP) has been used in various areas to obtain more causal factors during hazard analysis. However, the application of STAMP thus far is ad-hoc with no rigorous procedure to analyze the system hazards effectively, and the quality of the analysis results can't be guaranteed. Furthermore, the temporal factor as an important cause of hazards has been paid little attention in STAMP based analysis. With the purpose of overcoming these limitations, this paper presents a systematic method for hazard analysis based on STAMP. And the Hazardous Control Action Tree (HCAT) is proposed to model and analyze all the situations should be considered for hazard analysis. Also, several rules are given to guide the hazard analysis of temporal conditions in the control processes. Finally, a case study is used to illustrate the feasibility and availability of proposed method.
机译:危害分析对于通常由软件控制的智能系统的安全保证至关重要。作为一种新颖的因果模型,系统理论事故建模和过程(STAMP)已用于各个领域,以便在危害分析过程中获得更多的因果关系。但是,到目前为止,STAMP的应用是临时的,没有严格的程序可以有效地分析系统危害,并且不能保证分析结果的质量。此外,作为危险的重要原因的时间因素在基于STAMP的分析中很少受到关注。为了克服这些限制,本文提出了一种基于STAMP的系统的危害分析方法。并提出了危害控制行动树(HCAT)来对所有情况进行建模和分析,以便进行危害分析。此外,还给出了一些规则来指导控制过程中时间条件的危害分析。最后,通过案例研究来说明所提方法的可行性和有效性。

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