论文标题

一项模拟研究对驾驶员对道路维护中自动卡车安装的衰减系统的反应

A Simulation Study of Passing Drivers' Responses to the Autonomous Truck-Mounted Attenuator System in Road Maintenance

论文作者

Li, Yu, Wang, Bill, Li, William, Qin, Ruwen

论文摘要

自动卡车安装的衰减器(ATMA)系统是基于自动驾驶和连接的车辆技术的铅驾驶汽车系统。领先的卡车在道路上执行维护任务,无人追随者卡车提醒通过车辆传递有关移动工作区的车辆,并保护工人和设备。尽管最近通过运输维护和运营机构正在测试ATMA,但基于模拟器的测试能力是一种补充,尤其是在涉及人类受试者的情况下。本文旨在发现传球司机如何在道路维护中对ATMA系统的感知,理解和反应。随着为这项ATMA研究而开发的驾驶模拟器,该论文进行了一项模拟研究,其中基于屏幕的眼球跟踪器收集了16名受试者的凝视点和瞳孔直径。数据分析证明了通过ATMA时受试者的视觉注意力模式的变化。平均而言,ATMA开始吸引受试者在追随者卡车后面500英尺的关注。大多数(87.50%)理解了追随者卡车的保护目的,许多(60%)推理了两辆卡车之间的关联。然而,将近一半的参与者(43.75%)并未认识到ATMA是一种连接的自动驾驶汽车系统。尽管所有受试者都安全地改变了车道并试图通过缓慢的ATMA,但他们对ATMA的理解不足是一种潜在的风险,例如切入ATAM。结果暗示,运输维护和运营机构应考虑建立部署指南的考虑。

The Autonomous Truck-Mounted Attenuator (ATMA) system is a lead-follower vehicle system based on autonomous driving and connected vehicle technologies. The lead truck performs maintenance tasks on the road, and the unmanned follower truck alerts passing vehicles about the moving work zone and protects workers and the equipment. While the ATMA has been under testing by transportation maintenance and operations agencies recently, a simulator-based testing capability is a supplement, especially if human subjects are involved. This paper aims to discover how passing drivers perceive, understand, and react to the ATMA system in road maintenance. With the driving simulator developed for this ATMA study, the paper performed a simulation study wherein a screen-based eye tracker collected sixteen subjects' gaze points and pupil diameters. Data analysis evidenced the change in subjects' visual attention patterns while passing the ATMA. On average, the ATMA starts to attract subjects' attention from 500 ft behind the follower truck. Most (87.50%) understood the follower truck's protection purpose, and many (60%) reasoned the association between the two trucks. Nevertheless, nearly half of the participants (43.75%) did not recognize that ATMA is a connected autonomous vehicle system. While all subjects safely changed lanes and attempted to pass the slow-moving ATMA, their inadequate understanding of the ATMA is a potential risk, like cutting into the ATAM. Results implied that transportation maintenance and operations agencies should consider this in establishing the deployment guidance.

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