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Safety analysis of work zone complexity with respect to driver characteristics - A simulator study employing performance and gaze measures

机译:关于驾驶员特征的工作区复杂性安全分析 - 采用绩效和凝视措施的模拟器研究

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摘要

Driving is a complex task that consists of several physical (motor-related) and physiological (biological changes within the body) processes occurring simultaneously. The complexity of the task depends on several factors, but this research focuses on work zone configurations and their effect on driver performance and gaze behavior. The increase in work zone fatalities in the United States between 2015 and 2018 coupled with the limited literature of driver behavior in these complex environments requires a more comprehensive study. Given the nature of these crashes, typically lane departures, gaze behavior provided an additional physiological dimension to the present research. A framework that comprises of the interactions between driver characteristics, mental workload, and situation awareness, with longitudinal control, lateral control, and gaze behavior is proposed. Crash analysis and a simulator study with 90 participants were carried out to investigate the performance and gaze-based changes with respect to various work zone configurations. Distracted driving was also studied by including a secondary task. The results showed a significant interaction between the longitudinal control and the standard deviation of horizontal gaze position in predicting lateral control. Also, significant differences in lateral control and horizontal gaze variations were observed between genders. Female drivers showed lower lateral position deviations and lower horizontal gaze variability. This was a key finding given the inherently higher number of work zone crashes involving male drivers. Placing work zone barriers further away, by up to one meter from pavement edges, could significantly decrease mental workload and improve safety in work zones.
机译:驾驶是一种复杂的任务,包括几种物理(电动机相关)和生理(体内的生物变化)同时发生的过程。任务的复杂性取决于几个因素,但本研究侧重于工作区配置及其对驾驶员性能和凝视行为的影响。 2015年和2018年期间,美国在2015年至2018年之间的工作区死亡率与这些复杂环境中的驾驶员行为的有限文献需要更加全面的研究。鉴于这些崩溃的性质,典型的车道偏离,凝视行为为目前的研究提供了额外的生理维度。提出了一种框架,包括驾驶员特征,心理工作量和情况意识之间的相互作用,具有纵向控制,横向控制和凝视行为。进行了崩溃分析和具有90名参与者的模拟器研究,以调查各种工作区配置的性能和凝视的变化。通过包括二次任务,还研究了分散的驾驶。结果表明,纵向控制与水平凝视位置的标准偏差在预测横向控制方面之间具有显着的相互作用。此外,在树脂之间观察到横向控制和水平凝视变化的显着差异。女性司机展示了较低的横向位置偏差和较低的水平凝视变异性。这是鉴于涉及男性司机的固有更高数量的工作区崩溃的关键发现。将工作区障碍物放在远离路面边缘的一米,可以显着降低心理工作量,提高工作区安全。

著录项

  • 来源
    《Accident Analysis & Prevention 》 |2020年第7期| 105566.1-105566.13| 共13页
  • 作者单位

    Univ Kansas Dept Civil Environm & Architectural Engn 2160 Learned Hall 1530 W 15th St Lawrence KS 66045 USA;

    Univ Kansas Dept Civil Environm & Architectural Engn 2160 Learned Hall 1530 W 15th St Lawrence KS 66045 USA|2159A Learned Hall 1530 15th St Lawrence KS 66045 USA;

    Drexel Univ Dept Psychol Philadelphia PA 19104 USA|Stratton Hall 324 3201 Chestnut St Philadelphia PA 19104 USA;

    Univ Kansas Dept Civil Environm & Architectural Engn 2160 Learned Hall 1530 W 15th St Lawrence KS 66045 USA|2159B Learned Hall 1530 W 15th St Lawrence KS 66045 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gaze concentration; Work zone; Cluster analysis; Mental; Workload; Lateral control;

    机译:凝视浓度;工作区;集群分析;心理;工作量;横向控制;

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