English

Controlling Automated Vehicles on Large Lane-free Roundabouts (Extended Version)

Systems and Control 2023-11-29 v2 Systems and Control

Abstract

Controlling automated vehicles on large lane-free roundabouts is challenging because of the geometrical complexity and frequent conflicts among entering, rotating, and exiting vehicles. This paper proposes a comprehensive methodology to control the vehicles within the roundabout and the connected road branches. The developed real-time vehicle movement strategy relies on offline-computed wide overlapping movement corridors, one for each Origin-Destination (OD) movement, which delineate the admissible movement zones of corresponding OD vehicles. Also, space-dependent desired orientations are determined by destination, so as to mitigate potential vehicle conflicts and reduce trip distance. A distributed (per vehicle) movement control strategy, using two nonlinear feedback controllers (NLFC), for circular and straight movements, respectively, is employed to navigate each vehicle within the respective OD corridor toward its destination, accounting for the desired orientation and avoiding collisions with other vehicles; while boundary controllers guarantee that the corridor boundaries will not be violated, and the exit will not be missed. As an overly complicated case study, we consider the famous roundabout of Place Charles de Gaulle in Paris, featuring a width of 38 m and comprising a dozen of bidirectional radial streets, hence a total of 144 ODs. The pertinence and effectiveness of the presented method is verified via microscopic simulation and evaluation of macroscopic data.

Keywords

Cite

@article{arxiv.2310.17357,
  title  = {Controlling Automated Vehicles on Large Lane-free Roundabouts (Extended Version)},
  author = {Mehdi Naderi and Markos Papageorgiou and Dimitrios Troullinos and Iasson Karafyllis and Ioannis Papamichail},
  journal= {arXiv preprint arXiv:2310.17357},
  year   = {2023}
}

Comments

16 pages, 21 figures, 1 table, and 47 equations As compared with the previous version: - Some minor changes in the text - The first simulation is replaced with a new one to have more clear figures

R2 v1 2026-06-28T13:02:43.031Z