Modelling speed reduction behaviour on variable speed limit-controlled highways considering surrounding traffic pressure: A random parameters duration modelling approach

IF 12.5 1区 工程技术 Q1 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Yasir Ali , Mark P.H. Raadsen , Michiel C.J. Bliemer
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引用次数: 1

Abstract

Variable speed limits are frequently used to improve traffic safety and harmonise traffic flow. This study investigates how, and to what extent, drivers reduce their speed upon passing a variable speed limit sign. We specifically consider the impact on braking behaviour due to the systematic inclusion of different social pressures exerted by surrounding traffic. This social pressure is the natural result of having two vehicle cohorts created by a change in the variable speed limit (the new speed limit being higher than the original). The cohort with the higher speed limit overtakes vehicles with the lower speed limit, instigating a specific passing rate on drivers in the lower speed cohort. A driving simulator study is employed to obtain individual driver data whilst being able to systematically change the social pressure applied. A sample comprising sixty-seven participants conducted multiple randomised drives, with varying passing rates from as low as 90 veh/h to as high as 360 veh/h. The speed reduction behaviour of the participants is modelled using a random parameter duration modelling approach. Both the panel nature of the data and unobserved heterogeneity are captured through a correlated grouped random parameters with heterogeneity-in-the-mean model. The random parameters are predicated on the different passing rate scenarios, allowing drivers to take shorter or longer to reduce their speeds compared to the reference passing rate. It is shown that the extent of social pressure impacts braking behaviour and therefore affects safety measures, which is a function of the magnitude of the speed limit change. In addition, an extensive decision tree analysis is conducted to understand differential braking behaviour. Results reveal that, on average, female drivers take a shorter time to reduce their speed under a high passing rate but longer in a low passing rate scenario compared to males. Similarly, young drivers are found to take longer to reduce their speeds in a high passing rate scenario compared to other age groups. Our main findings indicate that the within-cohort safety is lowest under low passing rates due to comparatively larger speed differences between drivers. Yet, under a high passing rate, we observe an increase in violation of the speed limit by the lower speed limit vehicles (but less within cohort speed differences). Whilst normally this would be an undesired effect across cohorts, this violation is argued to lead to increased safety due to the smaller discrepancy in speed.

考虑周边交通压力的可变限速高速公路减速行为建模:随机参数持续时间建模方法
可变速度限制经常用于改善交通安全和协调交通流量。这项研究调查了司机在通过可变限速标志时如何以及在多大程度上降低速度。我们特别考虑了由于系统地包含周围交通施加的不同社会压力而对制动行为的影响。这种社会压力是由于可变速度限制的变化(新的速度限制高于原来的速度限制)而产生的两个车辆队列的自然结果。限速较高的队列超过限速较低的车辆,对限速较低队列的驾驶员产生特定的过路率。采用驾驶模拟器研究来获取个体驾驶员数据,同时能够系统地改变所应用的社会压力。由67名参与者组成的样本进行了多次随机驾驶,其通过率从低至90车速/小时到高至360车速/小时不等。使用随机参数持续时间建模方法对参与者的减速行为进行建模。数据的面板性质和未观察到的异质性都是通过具有异质性均值模型的相关分组随机参数捕获的。这些随机参数基于不同的过路率情景,与参考过路率相比,驾驶员可以花更短或更长的时间来降低速度。研究表明,社会压力的程度会影响制动行为,从而影响安全措施,这是速度限制变化幅度的函数。此外,还进行了广泛的决策树分析,以了解差动制动行为。结果显示,平均而言,与男性相比,女性司机在高通过率情况下减速所需的时间更短,而在低通过率情况下减速所需的时间更长。同样,与其他年龄组相比,年轻司机在高过路率的情况下需要更长的时间来减速。我们的主要研究结果表明,由于驾驶员之间相对较大的速度差异,在低通过率下,队列内安全性最低。然而,在高通过率下,我们观察到较低限速车辆违反速度限制的增加(但在队列速度差异内较少)。虽然通常情况下,这将是一个不希望在队列中产生的影响,但由于速度差异较小,这种违规行为被认为可以提高安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
22.10
自引率
34.10%
发文量
35
审稿时长
24 days
期刊介绍: Analytic Methods in Accident Research is a journal that publishes articles related to the development and application of advanced statistical and econometric methods in studying vehicle crashes and other accidents. The journal aims to demonstrate how these innovative approaches can provide new insights into the factors influencing the occurrence and severity of accidents, thereby offering guidance for implementing appropriate preventive measures. While the journal primarily focuses on the analytic approach, it also accepts articles covering various aspects of transportation safety (such as road, pedestrian, air, rail, and water safety), construction safety, and other areas where human behavior, machine failures, or system failures lead to property damage or bodily harm.
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