IEEE Trans Vis Comput Graph. 2020 May;26(5):2115-2125. doi: 10.1109/TVCG.2020.2973055. Epub 2020 Feb 13.
Immersive environments have been successfully applied to a broad range of safety training in high-risk domains. However, very little research has used these systems to evaluate the risk-taking behavior of construction workers. In this study, we investigated the feasibility and usefulness of providing passive haptics in a mixed-reality environment to capture the risk-taking behavior of workers, identify at-risk workers, and propose injury-prevention interventions to counteract excessive risk-taking and risk-compensatory behavior. Within a mixed-reality environment in a CAVE-like display system, our subjects installed shingles on a (physical) sloped roof of a (virtual) two-story residential building on a morning in a suburban area. Through this controlled, within-subject experimental design, we exposed each subject to three experimental conditions by manipulating the level of safety intervention. Workers' subjective reports, physiological signals, psychophysical responses, and reactionary behaviors were then considered as promising measures of Presence. The results showed that our mixed-reality environment was a suitable platform for triggering behavioral changes under different experimental conditions and for evaluating the risk perception and risk-taking behavior of workers in a risk-free setting. These results demonstrated the value of immersive technology to investigate natural human factors.
沉浸式环境已成功应用于高风险领域的广泛安全培训中。然而,很少有研究使用这些系统来评估建筑工人的冒险行为。在这项研究中,我们研究了在混合现实环境中提供被动触觉的可行性和有效性,以捕捉工人的冒险行为,识别有风险的工人,并提出预防伤害的干预措施来对抗过度冒险和风险补偿行为。在类似洞穴的 CAVE 显示系统的混合现实环境中,我们的研究对象在一个郊区的早晨,在一个(虚拟的)两层住宅建筑的(物理)倾斜屋顶上安装了木瓦。通过这种受控的、被试内实验设计,我们通过操纵安全干预的水平,将每个被试暴露在三种实验条件下。然后将工人的主观报告、生理信号、心理物理反应和反应行为视为存在的有前途的衡量标准。结果表明,我们的混合现实环境是一个合适的平台,可以在不同的实验条件下触发行为变化,并在无风险环境中评估工人的风险感知和冒险行为。这些结果证明了沉浸式技术在研究自然人为因素方面的价值。