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Quality Checks Logit Human Reliability (LHR): A New Model to Evaluate Human Error Probability (HEP)

机译:质量检查Logit人性可靠性(LHR):评估人为错误概率的新模型(HEP)

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摘要

In the years, several approaches for human reliability analysis (HRA) have been developed. The aim of the present research is to propose a hybrid model to evaluate Human Error Probability (HEP). The new approach is based on logit-normal distribution, Nuclear Action Reliability Assessment (NARA), and Performance Shaping Factors (PSFs) relationship. In the research, shortcomings related to literature approaches are analyzed, especially the limitations of the working time. For this reason, PSFs after 8 hours (work standard) during emergency conditions were estimated. Therefore, the correlation between the advantages of these three methodologies allows proposing a HEP analysis during accident scenarios and emergencies; a fundamental issue to ensure the safety and reliability in industrial plants is emergency Mmnagement (EM). Applying EM methodology, two main aspects are analyzed: system reliability and human reliability. System reliability is strongly related to the reliability of its weakest component. During incidental situations, the weakest parts of the whole system are workers (human reliability) and accidental scenarios influence the operator’s ability to make decisions. This article proposes a new approach called Logit Human Reliability (LHR) that considers internal and external factors to estimate human reliability during emergencies. LHR has been applied in a pharmaceutical accident scenario, considering 24 hours of working time (more than 8 working hours). The results highlighted that the LHR method gives output data more in conformity with data banks than the conventional methods during the stress phase in an accident scenario.
机译:多年来,已经开发了几种人类可靠性分析(HRA)的方法。本研究的目的是提出一种杂种模型来评估人为误差概率(HEP)。新方法是基于Logit-Normal分布,核动作可靠性评估(NARA)和性能塑造因子(PSFS)关系。在研究中,分析了与文学方法相关的缺点,尤其是工作时间的局限性。因此,估计应急条件8小时后的PSFS(工作标准)。因此,这三种方法的优点之间的相关性允许在事故情景和紧急情况下提出HEP分析;确保工业厂房安全性和可靠性的基本问题是紧急MMNAGEMENT(EM)。应用EM方法,分析了两个主要方面:系统可靠性和人力可靠性。系统可靠性与其最薄弱部件的可靠性强烈相关。在偶然情况下,整个系统的最薄弱部分是工人(人类可靠性)和意外情况会影响运营商做出决策的能力。本文提出了一种称为Logit人类可靠性(LHR)的新方法,该方法考虑内部和外部因素,以估算紧急情况期间的人力可靠性。 LHR已应用于制药事故情景,考虑24小时的工作时间(超过8个工作时间)。结果强调,LHR方法更加符合数据库的输出数据,而不是事故情景中应力阶段的传统方法。

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