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A Systematic Review of PTV Vissim Applications in Urban Vehicle Traffic Management (#966)

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Date of Conference

July 15-17, 2026

Published In

"Engineering without Borders: Artificial Intelligence, Knowledge, Innovation, and Alliances for a Future from the Americas"

Location of Conference

Santiago (Chile)

Authors

Huaco Panca, Yonatan

Yarin Achachagua, Anwar Julio

Abstract

In recent years, traffic congestion has become a global problem that worsens annually, impacting mobility and quality of life in modern cities. The objective of this systematic review of scientific literature published between 2012 and 2025 is to analyze the application strategies of Vissim PTV (Public Traffic Management) systems to improve urban traffic management. To this end, a systematic search was conducted in two databases: Scopus and ScienceDirect, applying the PRISMA method with a PICO question approach to identify articles that met the eligibility criteria for the search, selection, and data extraction. The STROBE tool was used to assess the risk of bias, along with Robvis for domain analysis. Results: Thirty-five studies (n=478) were included to compile different vehicular mobility management strategies, which are divided into geometric and control improvements. The study showed that the efficiency level of the simulated measure in Vissim varies depending on traffic volume, type, and road geometry. In conclusion, Vissim software is used to model everything from intersections to complex networks, and the solutions focus on geometric interventions (roundabouts and grade separations) for structural problems and dynamic management (adaptive traffic lights) to optimize road capacity. The reliability of the simulation depends on calibration and validation using GEH<5 and MAPE<15%~25%. In summary, geometric improvements achieve the greatest delay reductions (>60~90%).

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