Position weighted backpressure intersection control for urban networks
Li Li, Saif Eddin Jabari

TL;DR
This paper introduces a position weighted backpressure (PWBP) control policy for urban traffic networks that captures spatial vehicle distribution and spill-back dynamics, improving stability and performance over existing methods.
Contribution
It develops a novel PWBP control method based on continuum traffic modeling, proving its stability and demonstrating superior network performance in simulations.
Findings
PWBP outperforms traditional BP in capacity and delay.
PWBP effectively manages congestion and incidents.
The method is computationally efficient and scalable.
Abstract
Decentralized intersection control techniques have received attention in the literature as tools that address scalability issues of network intersection control. Chief among these techniques are backpressure (BP) control algorithms, which were originally developed of for large wireless networks. In addition to being light-weight computationally, they come with guarantees of performance at the network level, specifically network-wide stability. The dynamics in backpressure control are represented using networks of point queues and this also applies to all of the applications to traffic control. As such, BP in traffic fail to capture the spatial distribution of vehicles along the intersection links and, consequently, spill-back dynamics. This paper derives a position weighted backpressure (PWBP) control policy for network traffic applying continuum modeling principles of traffic dynamics…
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