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A Framework to Assess Human Performance in Normal and Emergency Situations

机译:在正常和紧急情况下评估人类性能的框架

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Human error is one of the primary reasons for accidents in complex industries like aviation, nuclear power plant management, and health care. Physical and cognitive workload, flawed information processing, and poor decision making are some of the reasons that make humans vulnerable to error and lead to failures and accidents. In many accidents and failures, oftentimes, vulnerabilities that are embedded in the system, in the form of design deficiencies and poor human factors, lead to latent or catastrophic failures, but the last link is a human operator who gets blamed or worse, injured. This paper introduces an early design human performance assessment framework to identify what type of digital prototyping methodologies are appropriate to detect the deviation of the operator's performance due to an emergency condition. Fire in a civilian aircraft cockpit was introduced as a performance shaping factor (PSF). Ergonomics performance was evaluated using two prototyping strategies: (1) a computational prototyping framework includes digital human modeling (DHM) and computer-aided design; and (2) a novel mixed prototyping framework includes motion capture, DHM, and virtual reality. Results showed that the mixed prototyping framework can simulate emergency scenarios with increased realism and also has the potential to incorporate subjective aspects of ergonomics outcomes, overcoming the underlying lack of design knowledge in conventional early design methodologies.
机译:人为错误是航空,核电站管理和医疗保健等复杂行业事故的主要原因之一。物理和认知工作量,有缺陷的信息处理和差的决策是使人类容易受到错误的原因,并导致失败和事故。在许多事故和失败中,通常,嵌入系统中的脆弱性,以设计缺陷和差的人类因素,导致潜在或灾难性的失败,但最后一个环节是一个受责备或更糟糕的人的运营商受伤。本文介绍了一种早期设计人力绩效评估框架,以确定什么类型的数字原型设计方法是适合检测操作者由于紧急情况的偏差。平民驾驶舱中的火灾被引入作为性能塑造因子(PSF)。使用两个原型制作策略评估符合人体工程学性能:(1)计算原型框架包括数字人类建模(DHM)和计算机辅助设计; (2)一种新颖的混合原型制作框架包括运动捕获,DHM和虚拟现实。结果表明,混合原型制作框架可以模拟现实主义增加的紧急情况,也有可能纳入人体工程学结果的主观方面,克服传统早期设计方法中的潜在设计知识。

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