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Research Article | Open Access

A PDE-ODE model for traffic control with autonomous vehicles

Thibault Liard1Raphael Stern2Maria Laura Delle Monache3( )
Univ. Limoges, CNRS, XLIM, UMR 7252, F-87000 Limoges, France
Department of Civil, Environmental, and Geo- Engineering, University of Minnesota, 500 Pillsbury Dr SE, Minneapolis, MN 55406, USA
Department of Civil and Environmental Engineering, University of California, Berkeley, Berkeley, CA, 94720, USA
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Abstract

We consider a partial differential equation - ordinary differential equation system to describe the dynamics of traffic flow with autonomous vehicles. In the model, the bulk flow of human drivers is represented by a scalar conservation law, while each autonomous vehicle is described by an ordinary differential equation. The coupled PDE-ODE model is introduced, and existence of solutions for this model is shown, along with a proposed algorithm to construct approximate solutions. Next, we propose a control strategy for the speeds of the autonomous vehicles to minimize the average fuel consumption of the entire traffic flow. Existence of solutions for the optimal control problem is proved, and we numerically show that a reduction in average fuel consumption is possible with an AV acting as a moving bottleneck.

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Networks and Heterogeneous Media
Pages 1190-1206

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Cite this article:
Liard T, Stern R, Monache MLD. A PDE-ODE model for traffic control with autonomous vehicles. Networks and Heterogeneous Media, 2023, 18(3): 1190-1206. https://doi.org/10.3934/nhm.2023051

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Received: 12 November 2021
Revised: 10 May 2022
Accepted: 08 July 2022
Published: 15 September 2023
©2023 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)