Exploring the effect of human-drone communication modality on safety and balance control in virtual construction environments.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-24 DOI:10.1080/00140139.2024.2380342
Boyi Hu, Shuyan Xia, Zixian Zhu, Jiun-Yao Cheng, Yue Luo, Idris Jeelani, Masoud Gheisari
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Abstract

This study examines the impact of Human-Drone Interaction (HDI) modalities on construction workers' safety and balance control within virtual environments. Utilising virtual reality (VR) simulations, the study explored how gesture and speech-based communications influence workers' physical postures and balance, contrasting these modalities with a non-interactive control group. One hundred participants were recruited, and their movements and balance control were tracked using motion sensors while they interacted with virtual drones through either gesture, speech, or without communication. Results showed that interactive modalities significantly improved balance control and reduced the risk of falls, suggesting that advanced HDI can enhance safety on construction sites. However, speech-based interaction increased cognitive workload, highlighting a trade-off between physical safety and mental strain. These findings underscore the potential of integrating intuitive communication methods into construction operations, although further research is needed to optimise these interactions for long-term use and in diverse noise environments.

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探索人机通信模式对虚拟施工环境中安全和平衡控制的影响。
本研究探讨了人机交互(HDI)模式对建筑工人在虚拟环境中的安全和平衡控制的影响。研究利用虚拟现实(VR)模拟,探讨了手势和语音通信如何影响工人的身体姿势和平衡,并将这些模式与非交互式对照组进行对比。研究招募了 100 名参与者,在他们通过手势、语音或无交流与虚拟无人机互动时,使用运动传感器对他们的动作和平衡控制进行了跟踪。结果表明,互动模式明显改善了平衡控制,降低了跌倒风险,这表明先进的人类发展指数可以提高建筑工地的安全性。然而,基于语音的交互增加了认知工作量,突出了身体安全和精神压力之间的权衡。这些发现强调了将直观交流方法融入建筑作业的潜力,不过还需要进一步的研究来优化这些互动,以便在不同的噪音环境中长期使用。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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