Multi-Level Conditional Transit Signal Priority in Connected Vehicle Environments

Author:

Cvijovic Zorica1,Zlatkovic Milan1,Stevanovic Aleksandar2,Song Yu3

Affiliation:

1. University of Wyoming, Department of Civil and Architectural Engineering

2. University of Pittsburgh, Department of Civil and Environmental Engineering

3. University of Wisconsin, Department of Civil and Environmental Engineering

Abstract

Connected Vehicles (CV) are an emerging technology with a large potential to improve traffic operations and safety. This paper develops and tests advanced CV-based multi-level conditional Transit Signal Priority (TSP). The algorithms are using the latitude/longitude (lat/lon) coordinates of CV vehicles and intersections to establish communication, share information and request priority. The TSP strategies are implemented through controllers’ built-in features and logic processor, using Econolite ASC/3 as a representative traffic signal controller. The tests were performed in VISSIM microsimulation with the ASC/3 Software-in-the-Loop (SIL) controller emulator. State Street in Salt Lake City, UT, is selected as a test-case corridor. The paper shows that the developed signal control priority (SCP) algorithms are successful in reducing delays for target vehicles in excess of 6%, without significant impacts on other traffic. The information obtained from CV vehicles can be used to further enhance control algorithms and create adaptive SCP programs.

Publisher

The Road Association of Serbia Via-vita

Subject

Microbiology (medical),Immunology,Immunology and Allergy

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