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首页> 外文期刊>Journal of advanced transportation >Implications of a Narrow Automated Vehicle-Exclusive Lane on Interstate 15 Express Lanes
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Implications of a Narrow Automated Vehicle-Exclusive Lane on Interstate 15 Express Lanes

机译:狭窄的自动化车辆独家车道对15 Express Lanes的影响

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The main objective of this study is to evaluate the safety and operational impacts of an innovative infrastructure solution for safe and efficient integration of Automated Vehicle (AV) as an emerging technology into an existing transportation system. Filling the gap in the limited research on the effect of AV technology on infrastructure standards, this study investigates implications of adding a narrow reversible AV-exclusive lane to the existing configuration of I-15 expressway in San Diego, resulting in a 9?ft AV reversible lane and, in both directions, two 12-feet lanes for HOV and FasTrak vehicles. Given the difference between the operation of AVs and human-driven vehicles and reliance of AVs on sensors as opposed to human capabilities, the question is should we provide narrower AV-exclusive roadways assuming AVs are more precise in lateral and longitudinal lane keeping behaviour? To accomplish the goal of the project, a historical crash data analysis and a traffic simulation analysis were conducted. Crash data analysis revealed that unsafe speed, improper turning, and unsafe lane change are the most recurring primary collision factors on I-15 ELs. AVs’ automated longitudinal and lateral control systems could potentially reduce these types of collisions on an AV-exclusive lane with proper infrastructure features for AV sensor operation (e.g., distinct lane marking). Microsimulation findings indicated an AV-exclusive lane may increase traffic flow and density by up to 14% and 24%, respectively. It also showed that average speed is reduced. However, this could lead to the speed differential increase between the exclusive lane and adjacent lane requiring careful consideration if additional treatments or barriers are needed. The results of this study contribute to infrastructure adaptation to AV technology and future AV-exclusive lanes implementations.
机译:本研究的主要目的是评估创新基础设施解决方案的安全性和运行影响,以便将自动化车辆(AV)作为新兴技术进入现有运输系统。填补了对基础设施标准的AV技术效果有限的研究中的差距,研究了向圣地亚哥I-15高速公路的现有配置增加了一个狭窄的可逆AV专用车道的影响,导致9?FT AV可逆车道,在两个方向,两辆12英尺的HOV和Fastrak车辆。鉴于AVS和人类驱动的车辆的操作与AVS对传感器的依赖与人类能力相反,问题是,如果我们在横向和纵向车道保持行为中更精确地提供较窄的AV-独家道路?为了实现该项目的目标,进行了历史崩溃数据分析和流量模拟分析。崩溃数据分析显示,不安全的速度,不正当的转弯和不安全的车道变化是I-15 ELS上最严重的主要碰撞因子。 AVS的自动纵向和横向控制系统可能会在AV-Insivally车道上潜在地减少这些类型的碰撞,用于AV传感器操作的适当基础设施特征(例如,不同的车道标记)。微仿化结果表明,AV-Intuallus Lane可以分别将交通流量和密度增加到14%和24%。它还表明平均速度降低。然而,如果需要额外的治疗或障碍,则这可能导致专用车道和相邻车道之间的速度差异增加。本研究的结果有助于对AV技术和未来AV专用车道实现的基础设施。

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