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The Systematic Integration Of Human Factors Into Safety Analyses: An Integrated Engineering Approach

机译:人为因素到安全分析中的系统集成:一种集成工程方法

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The performance of the human reliability analysis (HRA) and integration of its outcomes into quantitative risk assessment schemes remains quite a difficult and complex task to perform. Even worse is the assessment of organisational reliability assessment. The reasons of this difficulty mainly lay on the absence of a generically accepted paradigm that enables engineers to include systematically human and organisational factors (H&OF) into the analysis. Broadly speaking, engineering approaches very often account for error of omission forgetting the errors of commission (EOC), and, on top of that, they do not make any macro distinction between pre- and post-initiating human failures. This paper offers a paradigm on how to integrate H&OF into safety analysis by means of the recursive operability analysis (ROA), which has been adapted to accommodate H&OF, and renamed integrated recursive operability analysis (IROA). By means of a practical example, the method will illustrate how to account for H&OF in a systematic and consistent manner using an engineering approach. The paper will even provide a paradigm for the construction of integrated fault trees consistent with the IROA framework.
机译:人类可靠性分析(HRA)的性能以及将其结果整合到定量风险评估方案中,仍然是一项非常困难而复杂的任务。更糟糕的是组织可靠性评估的评估。造成这种困难的原因主要在于缺乏通用的范例,该范例使工程师能够将人为和组织因素(H&OF)纳入分析之中。从广义上讲,工程方法通常会忽略遗漏的错误而忘记佣金错误(EOC),最重要的是,它们并未在启动前和启动后的人为失败之间进行任何宏观区分。本文提供了一种范式,该范式介绍了如何通过适用于H&OF的递归可操作性分析(ROA)将H&OF集成到安全分析中,并更名为集成递归可操作性分析(IROA)。通过一个实际示例,该方法将说明如何使用工程方法以系统且一致的方式说明H&OF。本文甚至将为构建与IROA框架一致的集成故障树提供范例。

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