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Simulation-based evaluation of I2V systems' impact on traffic performance: case study - COOPERS

机译:基于模拟的I2V系统对交通绩效影响的评估:案例研究 - Coopers

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In-vehicle technologies and cooperative services are attracting a lot of attention for their potential to deal with congestion problems and improve traffic safety. This paper aims to investigate the impact of infrastructure-to-vehicle cooperative systems, case of COOPERS, at the aggregate level, on traffic performance. A factorial experiment is designed with two factors: traffic demand and penetration of the system with three levels each. In total, nine scenarios are investigated. To replicate driving behavior with and without the system, speed distributions from a simulator experiment are used. A motorway section of 4 km is built in VISSIM simulation software. Indicators such as speed, density, delays and travel times are chosen to evaluate and compare the motorway performance with and without the system. The results show that drivers driving with the system activated are more aware and alert to near future traffic conditions compared to driving without the system. Driving with the system activated is characterized by smoother and longer speed decelerations when approaching critical incident/accident events. The results show as well that the factors investigated significantly impact the motorway performance. Congestion reduces the impact of the system whereas higher penetration levels improve traffic operation on the motorway. Future research directions can include (1) investigating the impact of the system at the micro level such as lane changing or car-following behaviors; (2) levels of compliance with the system, which is an important aspect as well.
机译:车载技术和合作服务正在吸引他们对处理拥堵问题的潜力并提高交通安全的潜力。本文旨在调查基础设施 - 车辆合作系统,康乐者案例在汇总水平对交通绩效的影响。阶乘实验采用两个因素设计:系统的交通需求和系统的渗透,每个都有三个级别。总共调查了九种情况。为了复制与系统的驾驶行为,使用模拟器实验的速度分布。高速公路部分4公里内置于Vissim仿真软件。选择速度,密度,延迟和旅行时间等指示器来评估和比较高速公路性能,并没有系统。结果表明,与没有系统的驾驶相比,使用系统驱动的驱动器更加了解并警觉到近期交通情况。随着系统驱动的驱动是在接近临界事故/事故事件时更平滑和更长的速度减速。结果表明,调查的因素显着影响了高速公路性能。拥堵减少了系统的影响,而更高的穿透水平改善了高速公路上的交通运行。未来的研究方向可以包括(1)调查系统在诸如车道变化或汽车跟踪行为之类的微观水平上的影响; (2)遵守系统的水平,也是一个重要的方面。

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