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首页> 外文期刊>Advanced engineering informatics >Immersive technology-driven investigations on influence factors of cognitive load incurred in construction site hazard recognition, analysis and decision making
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Immersive technology-driven investigations on influence factors of cognitive load incurred in construction site hazard recognition, analysis and decision making

机译:建筑现场危险认可,分析和决策中产生的认知载荷影响因素的沉浸式技术驱动的研究

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摘要

Digital technologies such as Virtual Reality (VR) are gaining momentum in its use to implement and deepen construction health and safety education. In this study, researchers first developed a VR-driven immersive system incorporating real construction site hazard scenarios. Immersive experiments were then conducted by recruiting 40 individuals in construction-related disciplines. Experimental data were collected to evaluate the effects of tasking mode and time pressure on individuals' cognitive load in performing virtual site tasks. The self-evaluation method and task performance-based data were adopted as the complementary ways to measure individuals' cognitive load in completing given tasks. Compared to the single tasking mode of solely focusing on site hazard recognition, analysis, and reaction, the added secondary task was found significantly increasing individuals' cognitive load and lowering task performance. Time pressure could be a double-edged effect depending on the task feature. Recommendations were provided for real site safety management in balancing employees' wellbeing and site productivity. The current study extends prior research on enhancing construction health and safety where the main focus has been on hazard detection but now incorporates also hazard analysis and reaction. It also leads to more future research such as measuring individuals' cognitive load in a real site environment.
机译:虚拟现实(VR)等数字技术在其用来实现和深化建筑健康和安全教育的势头。在这项研究中,研究人员首先制定了一个包含真正的施工现场危险情景的VR驱动的沉浸式系统。然后通过在与施工相关学科中招募40个个体进行沉浸式实验。收集实验数据以评估任务模式和时间压力对个人认知负荷在执行虚拟站点任务中的影响。采用自我评估方法和基于任务性能的数据作为衡量个人认知负荷在完成给定任务时的互补方法。与单独关注现场危险识别,分析和反应的单一任务模式相比,发现增加的二次任务显着增加了个体的认知负荷和降低任务性能。根据任务特征,时间压力可能是双重效果。在平衡员工的幸福和网站生产力方面提供了现场安全管理的建议。目前的研究介绍了提高建筑健康和安全的研究,其中主要重点在危险检测中,但现在也包含危害分析和反应。它还导致更具未来的研究,如测量真实地区环境中的个人的认知负荷。

著录项

  • 来源
    《Advanced engineering informatics》 |2021年第4期|101298.1-101298.13|共13页
  • 作者单位

    Faculty of Civil Engineering and Mechanics Jiangsu University 301 Xuefu Road Zhenjiang 212013 Jiangsu China;

    Faculty of Civil Engineering and Mechanics Jiangsu University 301 Xuefu Road Zhenjiang 212013 Jiangsu China;

    Faculty of Civil Engineering and Mechanics Jiangsu University 301 Xuefu Road Zhenjiang 212013 Jiangsu China;

    School of Built Environment and Architecture London South Bank University 103 Borough Rd London SE1 0AA UK;

    School of Built Environment and Architecture London South Bank University 103 Borough Rd London SE1 0AA UK;

    School of Built Environment and Architecture London South Bank University 103 Borough Rd London SE1 0AA UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Construction safety; Cognitive load; Safety hazard; Virtual reality; Immersive technologies; Safety education;

    机译:建筑安全;认知载荷;安全隐患;虚拟现实;沉浸式技术;安全教育;

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