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通过路面 - 车辆参数评估的通行过程评估

An evaluation of the passing process through road - vehicle parameters assessment

作者:Stergios Mavromatis;Vassilios Matragos;Konstantinos Apostoleris;Fotios Fotos;George Yannis;

关键词:Passing sight distance,ADAS,Passing maneuver,PSD assessment,Road design guidelines

DOI:https://doi.org/10.1186/s12544-023-00582-5

发表时间:2023年

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摘要

目的本文研究了超车过程中车辆动力学参数与道路几何形状之间的相互作用。方法该方法基于对超车任务相对于道路标定速度和能力的真实表示路过(检查)的车辆执行此类操作。关于通过距离输出,利用了现有的车辆动力学模型,为了评估模型的准确性,进行了仪器化现场测量。分析模型的计算要求很高。因此,根据德国农村道路设计指南,制定了统计模型,通过安排4个关键车辆-道路参数的组合来确定超车视距(PSD);即车辆马力率、通过车辆速度与道路标定速度之间的差异、峰值摩擦供给系数和坡度值。结果 分析表明,通过车辆速度与道路标定速度之间的差异值以及评估参数的某些相互作用过度影响 PSD,特别是对于低于 20 km/h 的值。人们发现,预测 PSD 的对数正态建模方法非常有效,并且对于旨在评估所用道路车辆参数在确定 PSD 以及通行区域方面的相互作用的研究人员和从业者可能有用。结论尽管车辆之间或车辆与道路环境之间更先进的通信似乎是在超车操作期间实现综合引导的先决条件,目前的研究包括如何标准化超车过程并因此部署在高级驾驶员辅助系统(ADAS)中的开放范例)。


Abstract

PurposeThis paper investigates the interaction between vehicle dynamics parameters and road geometry during the passing process.Methodology The methodology is based on a realistic representation of the passing task with respect to roadway’s posted speed and the ability of the passing (examined) vehicle to perform such maneuvers. Regarding passing distance outputs, an existing vehicle dynamics model was utilized, where aiming to assess the model’s accuracy, instrumented field measurements were performed. The analytical model is computationally demanding. Therefore statistical models were worked out, in line with the German rural road design guidelines, to determine passing sight distances (PSDs) by arranging combinations of 4 critical vehicle—roadway parameters; namely, vehicle horsepower rates, variations between the passed vehicle’s speed and roadway’s posted speed, peak friction supply coefficients and grade values.Results The analysis revealed that the difference between the speed of the passed vehicle and the posted speed value, as well as certain interactions of the assessed parameters impact excessively PSD, especially for values below 20 km/h. The lognormal modelling approach for predicting PSDs was found efficient and may be useful to researchers and practitioners aiming to evaluate the interaction of the utilized road—vehicle parameters in terms of determining PSDs as well as passing zones.Conclusions Although more advanced communication between vehicles or between vehicles and road environment seems a prerequisite in order integrated guidance during passing maneuvers to be enabled, the present research consists an opening paradigm of how the passing process can be standardized and therefore deployed in advanced driver assistance systems (ADAS).