Shibo Zhang, Quanlin Chen, Xixi Zhou, Jianbin Qiu, Xin Li, Yong Luo, Rui Wang
School of Automobile and Transportation, Xihua University, Chengdu, 610039, China.
Sichuan Xihua Jiaotong Forensic Center, Chengdu, 610039, China.
Sci Rep. 2025 Mar 24;15(1):10058. doi: 10.1038/s41598-025-94277-7.
To solve the problem of high traffic accident rates in freeway work zones, an in-depth analysis of freeway work zone scenes under an autonomous driving environment was conducted, and traffic conflicts in work zones were analyzed, as were warning areas and upstream transition areas, which are the key road sections where the most potential conflicts occur. Using the National Vehicle Accident In-depth Investigation System (NAIS) database, representative accident cases were selected and studied for various work zones, and specific scenes of the work zone were summarized accordingly. A joint simulation platform was constructed using PreScan and Simulink software, and the behaviors of the main vehicle with lane changes and without lane changes were simulated. The simulation results reveal the main factors influencing of the potential conflict between the warning area and upstream transition area under the condition of no lane change behavior, which is comprehensively analyzed via correlation analysis and the gray correlation analysis method. Specific requirements for the length of the zone and the length of the upstream transition zone are proposed accordingly. In the case of lane change behavior, the analysis identified the key influencing factors for potential conflicts when the target vehicle changes lanes to the front of the main vehicle and when the main vehicle changes lanes to the front of the target vehicle. Based on this foundation, appropriate recommendations are proposed for the speed limit of borrowing from the opposite lane work zone.
为解决高速公路作业区交通事故率高的问题,对自动驾驶环境下的高速公路作业区场景进行了深入分析,分析了作业区的交通冲突以及警告区和上游过渡区,这两个区域是潜在冲突最易发生的关键路段。利用国家车辆事故深度调查系统(NAIS)数据库,选取并研究了各作业区具有代表性的事故案例,并据此总结了作业区的具体场景。使用PreScan和Simulink软件构建了联合仿真平台,对主车有换道和无换道行为时的情况进行了模拟。仿真结果揭示了在无换道行为条件下影响警告区和上游过渡区潜在冲突的主要因素,并通过相关性分析和灰色关联分析方法对其进行了综合分析。据此提出了对该区域长度和上游过渡区长度的具体要求。在有换道行为的情况下,分析确定了目标车辆换道到主车前方以及主车换道到目标车辆前方时潜在冲突的关键影响因素。在此基础上,针对借用对向车道作业区的限速提出了适当建议。