Human Reliability Analysis using a Human Factors Hazard Model

Dustin S. Birch, Erika E. Miller, Thomas H. Bradley
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Abstract

Human Reliability Analysis (HRA) has found application within a diverse set of engineering domains, but the methods used to apply HRA are often complicated, time-consuming, costly to apply, specific to particular (i.e., nuclear) applications, and are not suitable for direct comparison amongst themselves. This paper proposes a Human Factors Hazard Model (HFHM), which builds an HRA method from the tools of Fault Tree Analysis (FTA), Event Tree Analysis (ETA), and a novel model of considering serial Human Error Probability (HEP) more relevant to psychomotor-intensive industrial and commercial applications such as manufacturing, teleoperation, and vehicle operation. The HEP approach uses Performance Shaping Factors (PSFs) relevant to human behavior, as well as specific characteristics unique to a system architecture and its corresponding operational behavior. The HFHM tool is intended to establish a common analysis approach, to simplify and automate the modeling of the likelihood of a mishap due to a human-system interaction during a hazard event. The HFHM is executed commercial software tools (MS Excel and SysML) such that trade and sensitivity studies can be conducted and iterated automatically. The results generated by the HFHM can be used to guide risk assessment, safety requirements generation and management, design options, and safety controls within the system design architecting process. Verification and evaluation of the HFHM through simulation and subject matter expert evaluation illustrate the value of the HFHM as a tool for HRA and system safety analysis in a set of key industrial applications.
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基于人因危害模型的人的可靠性分析
人类可靠性分析(HRA)已经在不同的工程领域中得到了应用,但是用于应用HRA的方法通常是复杂的,耗时的,昂贵的,特定于特定的(例如核)应用,并且不适合在它们之间进行直接比较。基于故障树分析(FTA)、事件树分析(ETA)等工具,构建了一种基于故障树分析(HRA)方法的人因危害模型(HFHM),并提出了一种考虑系列人为错误概率(HEP)的新模型,该模型更适用于制造、远程操作和车辆操作等精神运动密集型工业和商业应用。HEP方法使用与人类行为相关的性能塑造因子(psf),以及系统架构及其相应的操作行为所特有的特定特征。HFHM工具旨在建立一种通用的分析方法,以简化和自动化在危险事件中由于人类系统相互作用而发生事故的可能性的建模。HFHM是由商业软件工具(MS Excel和SysML)执行的,这样就可以自动进行贸易和敏感性研究。HFHM生成的结果可用于指导系统设计架构过程中的风险评估、安全需求生成和管理、设计选项和安全控制。通过仿真和主题专家评估对HFHM进行验证和评估,说明了HFHM作为HRA和系统安全分析工具在一系列关键工业应用中的价值。
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