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Exploring relationships between microscopic kinetic parameters of tires under normal driving conditions, road characteristics and accident types

机译:在正常驾驶条件下,道路特征与事故类型探索轮胎微观动力学参数的关系

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摘要

Introduction: Freeway accidents are a leading cause of death in China, which also triggers substantial economic loss and an emotional burden to society. However, the internal mechanism of how microscopic kinetic parameters of vehicles influenced by road characteristics determine the occurrence of different types of accidents has not been explicitly studied. This research aimed to explore the "link role" of tire microscopic kinetic parameters in road characteristic variables and traffic accidents to aid in facilitating the traffic design and management, and thus to prevent traffic accident. Method: A mountain freeway in Zhejiang Province, China was used as the research object and the data used in this paper were obtained through a real-time vehicle experiment. Multiple estimation models, including the standard ordered logit (SOL) model, fixed parameters logit (FPL) model, and random parameters logit (RPL) model were established. Results: The findings show that road characteristics will affect the longitudinal kinetic characteristics of the vehicle and, consequently, map the level of risk of rear-end accidents. Driving compensation effects were also identified in this paper (i.e., the drivers tend to be more cautious in complicated driving circumstances). Another finding relating to the mountain freeway is that different tunnel characteristics (e.g., tunnel entrance and tunnel exit) have different effects on different types of traffic accidents. Practical Applications: The framework proposed in this article can provide new insight for researchers to enlarge the research subjects of both explanatory and outcome variables in accident analysis. Future research could be implemented to consider more driving conditions. (c) 2021 National Safety Council and Elsevier Ltd. All rights reserved.
机译:简介:高速公路事故是中国死亡的主要原因,这也触发了大量的经济损失和社会情感负担。然而,通过道路特征影响的车辆的微观动力学参数如何确定不同类型事故的发生的内部机制尚未明确研究。该研究旨在探讨道路特征变量和交通事故中轮胎微观动力学参数的“联系作用”,以帮助促进交通设计和管理,从而防止交通事故。方法:浙江省山地高速公路被用作研究对象,通过实时车实验获得本文中使用的数据。建立了多个估计模型,包括标准有序的Logit(SOL)模型,固定参数Logit(FPL)模型和随机参数Logit(RPL)模型。结果表明,调查结果表明,道路特性将影响车辆的纵向动力学特性,从而映射后端事故的风险水平。在本文中还识别出驾驶补偿效果(即,司机在复杂的驾驶环境中往往更加谨慎)。与山地高速公路有关的另一个发现是不同的隧道特征(例如,隧道入口和隧道出口)对不同类型的交通事故产生了不同的影响。实际应用:本文提出的框架可以为研究人员提供新的洞察,以扩大事故分析中的解释性和结果变量的研究主题。未来的研究可以实施以考虑更多的驾驶条件。 (c)2021国家安全委员会和elestvier有限公司保留所有权利。

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