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隧道建设(中英文) ›› 2022, Vol. 42 ›› Issue (10): 1738-1745.DOI: 10.3973/j.issn.2096-4498.2022.10.008

• 研究与探索 • 上一篇    下一篇

基于VR的公路隧道6DoF人员疏散试验系统构建及应用研究

安文娟1 2, 李远哲2, 谢耀华2, 王少飞2 *   

  1. 1. 重庆交通大学土木工程学院, 重庆〓400074 2. 招商局重庆交通科研设计院有限公司, 重庆〓400067
  • 出版日期:2022-10-20 发布日期:2022-11-05

Construction and Application of Virtual RealityBased 6DoF Experimental Platform for Pedestrian Evacuation in Highway Tunnel

AN Wenjuan1, 2, LI Yuanzhe2, XIE Yaohua2, WANG Shaofei2, *#br#   

  1. (1.School of Civil Engineering,Chongqing Jiaotong University,Chongqing 400074,China;2.China Merchants Chongqing Transportation Research and Design Institute Co.,Ltd.,Chongqing 400067,China)
  • Online:2022-10-20 Published:2022-11-05

摘要: 为提高公路隧道火灾场景下人员疏散虚拟现实试验的生态效度,以内嵌Inside-out定位技术的VRvirtual reality)一体机为基础,研发公路隧道6DoFsix degrees of freedom)人员疏散试验系统。该系统应用于试验时,参与者可摆脱鼠标、手柄等控制及设备线缆的束缚,在虚拟场景中6自由度感知信息及自主行动完成试验,且系统可通过对参与者实时跟踪定位获取其速度特征数据。为验证该试验系统的有效性,采用该系统开展真实空地、虚拟空隧道和虚拟火灾事故隧道3种场景下的人员疏散试验,采集30名参与者在不同场景中的移动速度、移动轨迹与情绪反应、沉浸感、临场感等数据,并分别对比真实空地与虚拟空隧道、虚拟空隧道与虚拟火灾事故隧道中的试验结果。试验结果表明: 1)采用该系统进行疏散试验时,头戴VR设备未引起参与者的眩晕感; 2)参与者在虚拟火灾场景中具有较强的临场感,其情绪反应、移动轨迹、移动速度等与在真实场景中基本一致,说明该系统具有较好的应用有效性。

关键词: 公路隧道, 虚拟现实技术, 人员疏散试验系统

Abstract: To improve the ecological validity of pedestrian evacuation under fire in highway tunnels, a 6DoF pedestrian evacuation experimental system based on the virtual reality(VR) allinone machine embedded with Insideout positioning for highway tunnels is developed. When the system was applied to the experiment, the participants could get away from the constraints of mouse, handle, and other control modes as well as equipment cables. The experiment was completed using perception information and autonomous action of 6DoF in the virtual scene, and the system could obtain the speed characteristic data of the participants through realtime tracking and positioning. To validate its effectiveness, the system was used to conduct evacuation experiments in three scenarios: real open space, virtual empty tunnel, and virtual fire accident tunnel. The data of 30 participants in different scenarios, including movement speed, movement track, emotional response, immersion sense, and presence sense, were collected. The experimental results of the real empty space tunnel and virtual empty tunnel, and virtual empty tunnel and virtual fire accident tunnel were compared. The experimental results indicate the following: (1) The headwearing VR device did not cause vertigo to participants. (2) The participants had a strong sense of presence in the virtual fire scene, and the characteristics of their emotional response, moving track, and moving speed were consistent with those in the real scene, indicating that the system has good application effectiveness. 

Key words: highway tunnel, virtual reality technology, pedestrian evacuation experiment system