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首页> 外文期刊>Journal of advanced transportation >Simulation Study of Rear-End Crash Evaluation considering Driver Experience Heterogeneity in the Framework of Three-Phase Traffic Theory
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Simulation Study of Rear-End Crash Evaluation considering Driver Experience Heterogeneity in the Framework of Three-Phase Traffic Theory

机译:考虑三相交通理论框架司机经验异质性后端碰撞评价的仿真研究

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摘要

Driving safety is considered to have a strong relationship with traffic flow characteristics. However, very few studies have addressed the safety impacts in the three-phase traffic theory that has been demonstrated to be an advancement in explaining the empirical features of traffic flow. Another important issue affecting safety is driver experience heterogeneity, especially in developing countries experiencing a dramatic growth in the number of novice drivers. Thus, the primary objective of the current study is to develop a microsimulation environment for evaluating safety performance considering the presence of novice drivers in the framework of three-phase theory. First, a car-following model is developed by incorporating human physiological factors into the classical Intelligent Driver Model (IDM). Moreover, a surrogate safety measure based on the integration concept is modified to evaluate rear-end crashes in terms of probability and severity simultaneously. Based on a vehicle-mounted experiment, the field data of car-following behavior are collected by dividing the subjects into a novice group and an experienced group. These data are used to calibrate the proposed car-following model to explain driver experience heterogeneity. The results indicate that our simulation environment is capable of reproducing the three-phase theory, and the changes in the modified surrogate safety measure are highly correlated with traffic phases. We also discover that the presence of novice drivers leads to different safety performance outcomes across various traffic phases. The effect of driver experience heterogeneity is found to increase the probability of the rear-end crashes as well as the corresponding severity. The results of this study are expected to provide a scientific understanding of the mechanisms of crash occurrences and to provide application suggestions for improving traffic safety performance.
机译:驾驶安全被认为具有与交通流特性有牢固的关系。然而,很少有研究已经解决了三相交通理论中的安全影响,这已被证明是解释交通流量的经验特征的进步。影响安全的另一个重要问题是司机经验异质性,特别是在发展中国家,在新手司机的数量中经历了戏剧性的增长。因此,目前研究的主要目的是开发用于评估安全性能的微仿环境,考虑到三相理论框架中的新手驱动程序的存在。首先,通过将人的生理因素纳入古典智能驾驶员模型(IDM)来开发车次的模型。此外,修改了基于集成概念的代理安全措施,以同时评估概率和严重程度的后端崩溃。基于车载实验,通过将受试者划分为新手组和经验组,收集汽车跟踪行为的现场数据。这些数据用于校准所提出的汽车之后模型以解释驾驶员经验异质性。结果表明,我们的仿真环境能够再现三相理论,并且改进的代理安全措施的变化与交通阶段高度相关。我们还发现新手司机的存在导致各种交通阶段的不同安全性能结果。发现驾驶员经验异质性的效果增加了后端碰撞的概率以及相应的严重程度。预计本研究的结果将提供对碰撞事件机制的科学理解,并为提高交通安全绩效提供应用建议。

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