2013/01/03 by C. J. J. Vleugels, A. Muntean, Vleugels, C. J. J. +8
Engineering · Mathematics · Physics and Astronomy · Social Sciences · #49-XX #Evacuation and Crowd Dynamics #FOS: Mathematics #FOS: Physical sciences #Optimization and Control (math.OC) #Physics and Society (physics.soc-ph) #Traffic control and management #Transportation Planning and Optimization #math.OC #msc:49-XX #physics.soc-ph
paper · pdf · doi:10.48550/arxiv.1301.0482
7 pages, 9 figures
arxiv created 2013/01/03 · openalex publication_date 2013/01/03 · arxiv updated 2013/01/04 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
Urban traffic is a logistic issue which can have many societal implications, especially when, due to a too high density of cars, the network of streets of a city becomes blocked, and consequently, pedestrians, bicycles, and cars start sharing the same traffic conditions potentially leading to high irritations (of people) and therefore to chaos. In this paper we focus our attention on a simple scenario: We model the driver's irritation induced by the presence of a roadblock. As a natural generalization, we extend the model for the two one-way crossroads traffic presented by M.E. Fouladvand and M. Nematollahi to that of a roadblock. Our discrete model defines and minimizes the total waiting time. The novelty lies in introducing the (total) driver's irritation and its minimization. Finally, we apply our model to a real-world situation: rush hour traffic in Hillegom, The Netherlands. We observe that minimizing the total waiting time and minimizing the total driver's irritation lead to different traffic light strategies.