评估混合交通环境中孤立环岛的互联车辆和自动驾驶车辆排序配置

Junfan Zhuo;Feng Zhu
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引用次数: 0

摘要

排队行驶已成为互联和自动驾驶车辆(CAV)最有前途的应用之一。然而,有关排成一排的配置效果的研究仍然有限。本研究旨在调查在混合交通环境下典型的孤立环岛中 CAV 排队配置的效果。调查的排配置包括最大排规模、排意愿和排类型。在模拟城市交通(SUMO)中进行了广泛的模拟实验,考虑了各种交通条件,包括不同的渗透率、交通流量和转弯率。结果表明(1) 增加最大排数和排数意愿通常能提高吞吐量和减少延迟;(2) 在所有交通条件下,异构排数都优于同构排数。
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Evaluation of Platooning Configurations for Connected and Automated Vehicles at an Isolated Roundabout in a Mixed Traffic Environment
Platooning has emerged to be one of the most promising applications for connected and automated vehicles (CAVs). However, there is still limited research on the effect of platooning configurations. This study sets out to investigate the effect of CAV platoon configurations at a typical isolated roundabout in a mixed traffic environment. Investigated platoon configurations include maximum platoon size, platoon willingness, and platoon type. Extensive simulation experiments are carried out in simulation of urban mobility (SUMO), considering various traffic conditions, including different penetration rates, traffic flows, and turning percentages. Results show that: (1) increasing the maximum platoon size and platoon willingness generally improves the throughput increment and delay reduction; and (2) heterogeneous platoons outperform homogeneous platoons in all traffic conditions.
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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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