连接自动车辆和行人的混合式交叉口协同管理

Pinlong Cai;Jia He;Yikang Li
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引用次数: 0

摘要

近年来,互联自动车辆(CAV)引起了人们的广泛关注。高可靠性的自动化技术可以帮助CAV很好地遵循给定的轨迹。然而,由于CAV和行人之间的相互作用是复杂的问题,因此很难确保安全性和效率。因此,本研究的重点是CAV和行人的交叉口协同管理。为了避免行人行为的不确定性影响,一种间接的方法是使用行人的信号灯来引导行人的移动,这种带有通信设备的灯可以与CAV共享信息,共同做出决策。在时域中,根据CAV和人行横道的位置,建立了一个通用的无冲突规则。几何分析和坐标计算用于准确确定可行的车辆轨迹和信号灯变绿的合理周期。在仿真实验中比较了相同条件下的四种控制策略,并分析了它们的性能。我们证明了所提出的合作策略不仅平衡了车辆和行人的利益,而且提高了交叉口的交通效率。
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Hybrid cooperative intersection management for connected automated vehicles and pedestrians
Connected Automated Vehicles (CAVs) have drawn much attention in recent years. High reliable automatic technologies can help CAVs to follow given trajectories well. However, safety and efficiency are hard to be ensured since the interactions between CAVs and pedestrians are complex problems. Thus, this study focuses on cooperative intersection management for CAVs and pedestrians. To avoid the effects of uncertainty about pedestrian behaviors, an indirect way is to use pedestrians' signal lights to guide the movements of pedestrians, and such lights with communication devices can share information with CAVs to make decisions together. In time domains, a general conflict-free rule is established depending on the positions of CAVs and crosswalks. Geometric analysis with coordinate calculation is used to accurately determine the feasible vehicle trajectories and the reasonable periods for signal lights turning green. Four control strategies for the same conditions are compared in simulation experiments, and their performances are analyzed. We demonstrate that the proposed cooperative strategy not only balances the benefits of vehicles and pedestrians but also improves the traffic efficiency at the intersection.
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Front Cover Contents Advancements and Prospects in Multisensor Fusion for Autonomous Driving Extracting Networkwide Road Segment Location, Direction, and Turning Movement Rules From Global Positioning System Vehicle Trajectory Data for Macrosimulation Decision Making and Control of Autonomous Vehicles Under the Condition of Front Vehicle Sideslip
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