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QUANTITATIVE ANALYSIS OF THE EFFORT-FATIGUE TRADEOFF IN THE CONCEPTUAL DESIGN PROCESS: A MULTISTATE EEG APPROACH

机译:概念设计过程中努力疲劳权衡的定量分析:多态脑电图

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Physiological signals are at the core of affective and cognitive engineering methods which aim at providing a more human-centric perspective to engineering concepts and systems. Labelling physiological signals with meaningful words such as concentration, fatigue or effort is a hard task. Although those labels are well-documented in the medical and related literature, their meaning gets lost in translation in engineering and design sciences. Multistate analysis of physiological signals aims at alleviating this process by identifying pittfalls and errors backed by hard numerical and statistical evidence. In this paper, we use multistate analysis of EEG signals to revisit the effort-fatigue tradeoff in the conceptual design process. Many rules of thumb and intuitions may exist about the effort-fatigue tradeoff and the goal is to provide a quantitative framework where this tradeoff can bear meaning. Following our multistate analysis, we define different types of fatigue (TYPE 1-5 Fatigue) which behave differently based on our numerical analysis and conclude that fatigue and by extension effort are multidimensional concepts.
机译:生理信号处于情感和认知工程方法的核心,其目的在于为工程概念和系统提供更为人性化的视角。用有意义的词语标记诸如集中,疲劳或努力的有意义词的生理信号是一项艰巨的任务。虽然这些标签在医学和相关文献中被充分记录,但它们的意思在工程和设计科学中丢失了翻译。生理信号的多态分析旨在通过识别缺点和由硬数字和统计证据支持的缺陷和错误来缓解这一过程。在本文中,我们使用EEG信号的多态分析来重新审视概念设计过程中的努力疲劳权衡。关于努力 - 疲劳权衡可能存在许多拇指和直觉的规则,目标是提供该权衡可以承受意义的定量框架。在我们的多态分析之后,我们根据我们的数值分析定义了不同类型的疲劳(类型1-5疲劳),这是根据我们的数值分析和结论,疲劳和延长努力是多维概念。

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