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基于优化支持向量回归的特长高速公路隧道进出口视荷安全评价。

Safety evaluation of visual load at entrance and exit of extra-long expressway tunnel based on optimized support vector regression.

机构信息

School of Traffic & Transportation, Chongqing Jiaotong University, Chongqing, 400074, China.

School of Economics & Management, Chongqing Jiaotong University, Chongqing, 400074, China.

出版信息

PLoS One. 2022 Aug 4;17(8):e0272564. doi: 10.1371/journal.pone.0272564. eCollection 2022.

Abstract

The traffic environment of an extra-long expressway tunnel is more complex than that of a long tunnel, which increases the driving risk. The visual load of drivers can be used to evaluate driving safety and comfort. To reveal drivers' visual load characteristics at the entrance and exit of extra-long tunnels on mountainous expressways, this study conducted vehicle tests with 12 drivers at Gonghe extra-long tunnel on the Yu-Xiang expressway in the Wulong District. An eye tracker, non-contact multifunctional velocimetry, illuminometer, and other test equipment were used to record drivers' pupil areas, velocity, and illuminance when entering and leaving the tunnel. The change characteristics of drivers' pupil areas were studied. The maximum transient velocity value (MTPA) of the pupil area was selected as an index to evaluate the visual load degree. Based on velocity and illuminance coupling, a visual load model was constructed using the optimized support vector machine (GA-SVM). The influence of velocity and illuminance on the MTPA in the tunnel's approach, entrance, exit, and departure section was analyzed. The results show that drivers' psychological tension order at the entrance and exit is entrance section ≈ exit section > departure section > approach section. In the approach section, the visual load is mainly affected by environmental illumination. In the entrance and exit sections, the visual load is positively correlated with velocity and negatively correlated with illuminance, and velocity has a greater impact on visual load. In the tunnel departure section, the two variables synergistically influence the driving visual load. The research results provide theoretical support for the safety design and management of extra-long tunnel entrances and exits.

摘要

特长公路隧道的交通环境比长隧道更为复杂,这增加了驾驶风险。驾驶员的视觉负荷可用于评估驾驶安全性和舒适性。为了揭示山区特长公路隧道进出口驾驶员的视觉负荷特征,本研究在重庆市武隆区渝湘高速公路共和特长隧道进行了 12 名驾驶员的车辆试验。使用眼动仪、非接触多功能测速仪、照度计等测试设备记录驾驶员进出隧道时的瞳孔面积、速度和照度。研究了驾驶员瞳孔面积的变化特征。选择瞳孔面积的最大瞬态速度值(MTPA)作为评价视觉负荷程度的指标。基于速度和照度的耦合,利用优化支持向量机(GA-SVM)构建了视觉负荷模型。分析了速度和照度对隧道入口、出口和出口段 MTPA 的影响。结果表明,驾驶员在进出口处的心理紧张程度顺序为入口段≈出口段>出口段>入口段。在入口段,视觉负荷主要受环境照度的影响。在进出口段,视觉负荷与速度呈正相关,与照度呈负相关,速度对视觉负荷的影响更大。在隧道出口段,两个变量协同影响驾驶视觉负荷。研究结果为特长隧道进出口的安全设计和管理提供了理论支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ca0/9352028/7a80b7a0c7c6/pone.0272564.g001.jpg

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