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特长隧道进出口段不同时段驾驶员视觉负荷。

Drivers' visual load at different time periods in entrance and exit zones of extra-long tunnel.

机构信息

School of Transportation, Wuhan University of Technology, Wuhan, China.

出版信息

Traffic Inj Prev. 2020;21(8):539-544. doi: 10.1080/15389588.2020.1821196. Epub 2020 Oct 12.

Abstract

OBJECTIVE

As the number of tunnels and traffic accidents increase, it is necessary to study the drivers' visual characteristic in the tunnels. Considering that freeway tunnels have limited space and narrow sight zone, drivers usually have a short visual blind zone and visual shock when entering and exiting the tunnels. This study aims to investigate the characteristics of drivers' visual load in the entrance and exit zones of extra-long tunnels, and to provide a theoretical basis for the traffic safety prevention and control measures of the engineering design.

METHODS

20 drivers were enrolled to conduct real vehicle tests in the Guizhou Sifangdong Tunnel at different time periods (daytime, twilight, and nighttime). The drivers' pupil area was collected by an eye tracker. The maximum transient vibration value (MTVV) of the pupil area was selected as the index of visual load. In addition, the changing characteristics of visual load in the entrance and exit zones were examined. Using ANOVA, the significant difference of visual load in different zones and at different time periods were performed. Accordingly, the overall drivers' visual load in the entrance and the exit zones were compared. Exponential function models of the MTVV value and the speed of pupil area change were constructed, where the pattern of mutual influence was examined.

RESULTS

The changing pattern of the drivers' visual load at different time periods in the entrance and exit zones were markedly different. The comparison of the overall visual load was as follows: exit zones at nighttime > entrance zones at nighttime > entrance zones at twilight > exit zones at twilight ≈ entrance zones at daytime ≈ exit zones at daytime. Moreover, the MTVV value positively correlated with the speed of the pupil area change. Finally, this study proposes an evaluation standard of visual comfort based on the speed of the pupil area change.

CONCLUSION

This study highlights the driving risk in extra-long tunnel. These findings could provide a basis for studying the setting method of visual guidance facilities in entrance and exit zones of extra-long tunnel. Also, this study could provide a theoretical basis for the evaluation of drivers' visual load in the tunnel.

摘要

目的

随着隧道数量和交通事故的增加,有必要研究驾驶员在隧道中的视觉特征。考虑到高速公路隧道空间有限,视距狭窄,驾驶员进出隧道时通常会出现短暂的视觉盲区和视觉冲击。本研究旨在调查特长隧道进出口区域驾驶员视觉负荷特征,为工程设计中交通安全预防和控制措施提供理论依据。

方法

在不同时段(白天、黄昏和夜间),20 名驾驶员在贵州四方洞隧道进行了实车测试。通过眼动仪采集驾驶员的瞳孔面积,选择瞳孔面积的最大瞬态振动值(MTVV)作为视觉负荷指标。此外,还检测了进出口区域视觉负荷的变化特征。通过方差分析,对不同区域和不同时段视觉负荷的显著性差异进行了检验。据此,比较了进出口区域驾驶员的整体视觉负荷。构建了 MTVV 值和瞳孔面积变化率的指数函数模型,检验了相互影响的模式。

结果

不同时段进出口区域驾驶员视觉负荷的变化模式明显不同。整体视觉负荷的比较结果如下:夜间出口区>夜间入口区>黄昏入口区>黄昏出口区≈白天入口区≈白天出口区。此外,MTVV 值与瞳孔面积变化率呈正相关。最后,本研究提出了基于瞳孔面积变化率的视觉舒适度评价标准。

结论

本研究强调了特长隧道的驾驶风险。这些发现可为研究特长隧道进出口区域视觉引导设施的设置方法提供依据,也可为隧道内驾驶员视觉负荷评价提供理论基础。

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