Platoon Merging Approach Based on Hybrid Trajectory Planning and CACC Strategies

Author:

Hidalgo CarlosORCID,Lattarulo Ray,Flores Carlos,Pérez Rastelli Joshué

Abstract

Currently, the increase of transport demands along with the limited capacity of the road network have increased traffic congestion in urban and highway scenarios. Technologies such as Cooperative Adaptive Cruise Control (CACC) emerge as efficient solutions. However, a higher level of cooperation among multiple vehicle platoons is needed to improve, effectively, the traffic flow. In this paper, a global solution to merge two platoons is presented. This approach combines: (i) a longitudinal controller based on a feed-back/feed-forward architecture focusing on providing CACC capacities and (ii) hybrid trajectory planning to merge platooning on straight paths. Experiments were performed using Tecnalia’s previous basis. These are the AUDRIC modular architecture for automated driving and the highly reliable simulation environment DYNACAR. A simulation test case was conducted using five vehicles, two of them executing the merging and three opening the gap to the upcoming vehicles. The results showed the good performance of both domains, longitudinal and lateral, merging multiple vehicles while ensuring safety and comfort and without propagating speed changes.

Funder

European Project SHOW

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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1. A safety-guaranteed game-theoretical velocity planning for autonomous vehicles on sharp curve roads;Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering;2024-01-09

2. Distributed model predictive control for heterogeneous vehicle platoon with unknown input of leading vehicle;Transportation Research Part C: Emerging Technologies;2023-10

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