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A Behavioral Model of Drivers’ Mean Speed Influenced by Weather Conditions, Road Geometry, and Driver Characteristics Using a Driving Simulator Study

机译:使用驾驶模拟器研究的天气条件,道路几何和驾驶员特性影响的司机平均速度的行为模型

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Driving above the speed limit is one of the factors that significantly affect safety. Many studies examined the factors affecting the speed of vehicles in the simulated environment. The present study aimed to analyze drivers’ characteristics, time and weather conditions, and geometric features’ effect on mean speed in simulated conditions simultaneously. In this regard, the simulator experiment data of 70 drivers were collected in a two-lane rural highway at six different times, and weather scenarios and their socioeconomic characteristics were collected by a questionnaire. Structural equation modeling (SEM) was used to capture the complex relationships among related variables. Eleven variables were grouped into four latent variables in the structural model. Latent variables including “Novice Drivers,” “Experienced Drivers,” “Sight Distance,” and “Geometric Design” were defined and found significant on their mean speed. The results showed that “Novice Drivers” have a positive correlation with the mean speed. Meanwhile, “Experienced Drivers,” who drive 12% slower than the novice group, negatively affect the mean speed with a standard regression weight of ?0.08. This relation means that young and novice drivers are more inclined to choose higher speeds. Among variables, the latent variable “Sight Distance” has the most significant effect on the mean speed. This model shows that foggy weather conditions strongly affect the speed selection behavior and reduce the mean speed by 40%. Nighttime also reduces mean speed due to poor visibility conditions. Furthermore, “Geometric design” as the latent variable indicates the presence of curves on the simulated road, and it can be concluded that the existence of a curve on the road encourages drivers to slow down, even young drivers. It is noteworthy that the parts of the simulated road with a horizontal curve act as a speed reduction tool for drivers.
机译:驾驶超出速度限制是显着影响安全性的因素之一。许多研究检查了影响模拟环境中车辆速度的因素。本研究旨在同时分析司机的特征,时间和天气条件,几何特征对模拟条件的平均速度影响。在这方面,在六个不同时间的双车道农村公路上收集了70例司机的模拟器实验数据,并通过调查问卷收集了天气场景及其社会经济特征。结构方程建模(SEM)用于捕获相关变量之间的复杂关系。将十一个变量分为结构模型中的四个潜变量。潜在的变量包括“新手司机”,“经验丰富的司机”,“瞄准距离”和“几何设计”是在其平均速度下显着的。结果表明,“新手司机”与平均速度有正相关。同时,“经验丰富的司机”,驾驶比新手集团慢12%,对均衡重量的平均速度产生负面影响?0.08。这一关系意味着年轻人和新手司机更倾向于选择更高的速度。在变量中,潜在的变量“视线距离”对平均速度具有最显着的影响。该模型显示有雾的天气条件强烈影响速度选择行为,并将平均速度降低40%。由于可见性条件差,夜间也降低了平均速度。此外,随着潜在变量的“几何设计”表示模拟道路上的曲线存在,可以得出结论,道路上的曲线存在促使驱动器减速,甚至年轻的司机。值得注意的是,具有水平曲线的模拟道路的部件作为驱动器的减速工具。

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