Freeway traffic management via kinetic compartmental models
Övrigt konferensbidrag, 2025

In this study, a family of finite volume discretization schemes for LWR-type first order traffic flow models (with possible on- and off-ramps) is proposed: the Traffic Reaction Model (TRM). These schemes yield systems of ordinary differential equations (ODEs) that are formally equivalent to the kinetic systems used to model chemical reaction networks. An in-depth numerical analysis of the TRM is performed. The paper assesses incremental asymptotic stability for TRM discretized systems of ordinary differential equations (ODEs), hinting a new freeway traffic state estimation concept: open-loop stable state estimators. Finally, it proposes a unified freeway dynamic speed and ramp metering control approach via the modification of the reaction dynamics.

traffic flow

mass-kinectic

hyperbolic PDE

PDE

ODE

numerical scheme

state estimation

reaction network

flux function

Författare

Sondre Chanon Wiersdalen

Chalmers, Elektroteknik, System- och reglerteknik

Jean Auriol

Université Paris-Saclay

Mike Pereira

Université de recherche Paris Sciences et Lettres

Balázs Adam Kulcsár

Chalmers, Elektroteknik, System- och reglerteknik

Gabor Szederkenyi

Pázmány Péter Katolikus Egyetem

Annika Lang

Chalmers, Matematiska vetenskaper, Tillämpad matematik och statistik

2025 SIAM Conference on Control and Its Applications (CT25)
Montréal, Québec, Canada,

STOchastic Traffic NEtworks (STONE)

CHAIR, -- .

Chalmers, 2020-02-01 -- 2022-01-31.

Learning in Stochastic Traffic Networks

Chalmers, 2021-08-15 -- 2026-06-01.

Styrkeområden

Transport

Ämneskategorier (SSIF 2025)

Transportteknik och logistik

Beräkningsmatematik

Reglerteknik

Mer information

Senast uppdaterat

2026-07-03