Dynamic Time-Step Max-Pressure Controller Considering Phase-Switching Gaps for Signalized Networks
Paper i proceeding, 2025

This paper presents a novel reformulation of the queue-based Max-Pressure (MP) traffic signal control strategy using a decentralized framework that leverages only local intersection data to dynamically determine optimal phase durations, maximizing traffic throughput. We critically analyze the conventional store-and-forward modeling approach and highlight its limitations in representing phase-switching gaps at intersections. To overcome these issues, we propose an enhanced store-and-forward model coupled with an improved MP control formulation that explicitly accounts for phase-switching losses. Additionally, we introduce a dynamic constraint on phase durations, challenging the traditional assumption that minimal green times are inherently optimal and stable. Simulation results demonstrate that the negative impact of switching gaps escalates with increasing demand, underscoring the necessity of adaptive phase timing. Our refined control strategy contributes to a more robust, realistic, and efficient traffic signal management, enhancing overall network performance.

Optimality

transportation

Traffic intersection

Traffic control

Max pressure

Transportation network

Back pressure

​Transportation, Mobility, ITS services

Författare

Razi Zoabi

Technion – Israel Institute of Technology

Balázs Adam Kulcsár

Chalmers, Elektroteknik, System- och reglerteknik

Jack Haddad

Technion – Israel Institute of Technology

Proceedings of the IEEE Conference on Decision and Control

07431546 (ISSN) 25762370 (eISSN)

218-223
9798331526276 (ISBN)

64th IEEE Conference on Decision and Control, CDC 2025
Rio de Janeiro, Brazil,

Styrkeområden

Transport

Ämneskategorier (SSIF 2025)

Transportteknik och logistik

Reglerteknik

DOI

10.1109/CDC57313.2025.11312328

Mer information

Senast uppdaterat

2026-03-13