Estimating freeway accident-prone sections: research on vehicle dynamic simulation and accident prediction model

IF 1 4区 工程技术 Q4 ENGINEERING, CIVIL Proceedings of the Institution of Civil Engineers-Transport Pub Date : 2023-06-26 DOI:10.1680/jtran.23.00016
Yi Hu, Yonghong Yang, Jian Liu, Minglei Bai
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Abstract

Accident-prone sections are usually the most dangerous areas on a freeway, and identifying and studying them is of great significance. In this study, accident-prone sections were estimated using a 77-km long freeway section as an example located in Zhejiang province, China. This research obtained accident data and horizontal alignment data of the freeway and used two statistical methods, namely the improved cumulative frequency method considering equivalent accident numbers and the accident matrix method, to identify the accident-prone sections of the freeway. Additionally, a new method that combines vehicle dynamic simulation (using CarSIM) and speed consistency theory was introduced and used to estimate the accident-prone sections of this freeway. Furthermore, an accident prediction model was established by analyzing the relationships between the horizontal alignment geometric parameters and accident data to provide design advice. The results show that the new method has certain reliability, making it applicable for designers to verify the safety condition of newly-designed freeway and help enhance freeway security. The established model is logically reasonable and has certain precision, which can provide a valuable reference for freeway designers.
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高速公路事故多发路段估计:车辆动态仿真与事故预测模型研究
事故多发路段通常是高速公路上最危险的路段,对其进行识别和研究具有重要意义。在本研究中,以位于中国浙江省的77公里长的高速公路路段为例,估计了易发生事故的路段。本研究获取高速公路的事故数据和水平线形数据,采用考虑等效事故数的改进累积频率法和事故矩阵法两种统计方法对高速公路的事故易发路段进行识别。此外,提出了一种将车辆动态仿真(CarSIM)与速度一致性理论相结合的新方法,并将其用于该高速公路事故易发路段的估计。在此基础上,通过分析水平走向几何参数与事故数据之间的关系,建立了事故预测模型,为设计提供建议。结果表明,该方法具有一定的可靠性,可用于设计人员对新建高速公路的安全状况进行验证,有助于提高高速公路的安全性。所建立的模型逻辑合理,具有一定的精度,可为高速公路设计人员提供有价值的参考。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
42
审稿时长
5 months
期刊介绍: Transport is essential reading for those needing information on civil engineering developments across all areas of transport. This journal covers all aspects of planning, design, construction, maintenance and project management for the movement of goods and people. Specific topics covered include: transport planning and policy, construction of infrastructure projects, traffic management, airports and highway pavement maintenance and performance and the economic and environmental aspects of urban and inter-urban transportation systems.
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