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A platoon ordering algorithm on reservation based intersection management systems
DOI:10.1016/j.aej.2023.12.064.png)
Abstract
En 中文
Traffic intersections act as pivotal junctions where various streams of traffic intersect and intersecting movements occur. When traffic volumes are high, intersections that are efficiently designed and equipped with intelligent traffic control systems can optimize the movement of vehicles. Accordingly, the time spent by vehicles intersections increases, and these vehicles cause the vehicles behind them to slow down. This study aims to enhance the efficacy of reservation -based intersection control for platoons comprising vehicles arriving intersections and turning in various directions. To assess the impact of different platooning algorithms on the average speed of vehicles within the platoons and the total time spent at intersections, simulations were conducted using the SUMO environment. These simulations observed variations in the average speed values vehicles and the duration spent by vehicles at intersections. The simulation results showed that the proposed reservation -based platoon ordering algorithm significantly contributed to increasing the average speed reducing waiting time.
Keywords:
Intersection management
Multiagent systems
Autonomous vehicles
Platooning
Reservation-based scheduling
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