A simulation evaluation of a real-time traffic information system using probe vehicles
Xiaowen Dai, Martin A. Ferman, R.P. Roesser
Abstract
Xiaowen Dai, Martin A. Ferman, R.P. Roesser
Abstract
For probe vehicles to be the basis of a real-time traffic monitoring system, it is necessary that the travel-time measurements made by them be reliable, adequate and timely. One of the objectives of this feasibility study is to estimate the number of probe vehicles required for various types of road networks. Traffic simulation modeling analysis was used for determining probe-vehicle penetration required for different traffic conditions and different road networks (i.e., Troy, Detroit, and Grand Rapids) with a given set of system parameters. It is clear from the simulation results that the use of vehicles as probes is an attractive option for collecting real-time information in heavily traveled corridors (such as freeways) for probe penetration over 3%, during specific periods such as the peak hour. However, surface roads require considerably more than 5% penetration and need more study.
OpenAlex reports 54 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
For probe vehicles to be the basis of a real-time traffic monitoring system, it is necessary that the travel-time measurements made by them be reliable, adequate and timely. One of the objectives of this feasibility study is to estimate the number of probe vehicles required for various types of road networks. Traffic simulation modeling analysis was used for determining probe-vehicle penetration required for different traffic conditions and different road networks (i.e., Troy, Detroit, and Grand Rapids) with a given set of system parameters. It is clear from the simulation results that the use of vehicles as probes is an attractive option for collecting real-time information in heavily traveled corridors (such as freeways) for probe penetration over 3%, during specific periods such as the peak hour. However, surface roads require considerably more than 5% penetration and need more study.
Key concepts: Computer science, Real-time computing, Penetration (warfare), Floating car data, Simulation, Traffic simulation, Travel time, Real-time data