挖掘安全和危险识别的沉浸式虚拟现实培训

IF 3.5 Q3 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY Smart and Sustainable Built Environment Pub Date : 2023-02-16 DOI:10.1108/sasbe-10-2022-0235
Z. Feng, R. Lovreglio, T. Yiu, Dwayne Mark Acosta, Banghao Sun, Nan Li
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引用次数: 0

摘要

目的在建筑领域,现场挖掘是最危险和最具挑战性的活动之一。适当的培训是减少挖掘危险的有效方法。虚拟现实(VR)已被用作各行各业提高安全绩效的有效培训工具。然而,该技术在建筑开挖安全培训中的潜力却很少受到重视。设计/方法/方法本研究提出了一种沉浸式VR挖掘安全和危险识别培训系统。通过对照实验,将提出的虚拟现实培训系统与健康和安全手册进行了比较。基于培训后立即获得的分数的结果表明,VR培训显著提高了实践表现,知识获取和自我效能感。结果还表明,在训练后四周,知识被保留了下来。此外,虚拟现实培训在知识保留方面优于健康和安全手册。原创性/价值本研究通过测量实际表现来评估所提出的虚拟现实培训系统的有效性。此外,本研究还将虚拟现实培训系统与传统培训方法进行了比较,通过测量知识获取和记忆。结果表明,虚拟现实作为挖掘安全和危险培训工具的潜力。
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Immersive virtual reality training for excavation safety and hazard identification
PurposeIn the construction sector, site excavation is one of the most dangerous and challenging activities. Proper training can be an effective way to mitigate excavation hazards. Virtual reality (VR) has been used as an effective training tool to enhance safety performance in various industries. However, little attention has been paid to the potential of this technology for construction excavation safety training.Design/methodology/approachThis study proposes an immersive VR training system for excavation safety and hazard identification. The proposed VR training system was compared with a health and safety manual via a controlled experiment.FindingsResults based on scores obtained immediately after training indicate that VR training significantly enhanced practical performance, knowledge acquisition and self-efficacy. Results also show that knowledge was retained four weeks after training. In addition, VR training outperformed health and safety manuals regarding knowledge retention.Originality/valueThis study measures the practical performance to evaluate the effectiveness of the proposed VR training system. Also, this study compares the VR training system with a traditional training method by measuring knowledge acquisition and retention. The results demonstrate the potential of VR as a training tool for excavation safety and hazards.
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来源期刊
Smart and Sustainable Built Environment
Smart and Sustainable Built Environment GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
9.20
自引率
8.30%
发文量
53
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