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Computational Functional Failure Analysis to Identify Human Errors During Early Design Stages

机译:计算功能故障分析,以识别早期设计阶段的人类错误

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摘要

Detection of potential failures and human error and their propagation over time at an early design stage will help prevent system failures and adverse accidents. Hence, there is a need for a failure analysis technique that will assess potential functional/component failures, human errors, and how they propagate to affect the system overall. Prior work has introduced functional failure identification and propagation (FFIP), which considers both human error and mechanical failures and their propagation at a system level at early design stages. However, it fails to consider the specific human actions (expected or unexpected) that contributed toward the human error. In this paper, we propose a method to expand FFIP to include human action/error propagation during failure analysis so a designer can address the human errors using human factors engineering principals at early design stages. The capabilities of the proposed method is presented via a hold-up tank example, and the results are coupled with digital human modeling to demonstrate how designers can use these tools to make better design decisions before any design commitments are made.
机译:在早期设计阶段检测潜在的失败和人为错误及其随着时间的推移,将有助于防止系统故障和不利事故。因此,需要一种失败分析技术,其将评估潜在的功能/组件故障,人类错误以及如何传播以影响系统总体。前工作引入了功能故障识别和传播(FFIP),其考虑了人为错误和机械故障及其在早期设计阶段的系统级别的传播。但是,它未能考虑对人为错误做出贡献的具体人类行为(预期或意外)。在本文中,我们提出了一种扩展FFIP的方法,以包括在故障分析期间的人为动作/误差传播,因此设计人员可以在早期设计阶段使用人类因素工程原则来解决人类错误。所提出的方法的能力通过保持载体示例呈现,结果与数字人类建模相结合,以演示设计人员如何在进行任何设计承诺之前使用这些工具进行更好的设计决策。

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