DocumentCode
1848276
Title
An assessment of VMS-rerouting and traffic signal planning with emission objectives in an urban network — A case study for the city of Graz
Author
Kolbl, Robert ; Heilmann, Bernhard ; Bauer, Dietmar ; Lenz, Gernot ; Litzenberger, Martin ; Cagran, Bernd ; Mascia, Margherita ; Hu, Simon
Author_Institution
Dept. Mobility, AIT (Austrian Inst. of Technol.), Vienna, Austria
fYear
2015
fDate
3-5 June 2015
Firstpage
169
Lastpage
176
Abstract
This paper discusses a case study evaluating the potential impact of ITS traffic management on CO2 and Black carbon tailpipe emissions. Results are based on extensive microsimulations performed using a calibrated VISSIM model in combination with the AIRE model for calculating the tailpipe emissions from simulated vehicle trajectories. The ITS traffic management options hereby consist of easily implementable actions such as the usage of a variable message sign (VMS) or the setting of fixed time signal plans. Our simulations show that in the current case shifting 5% of vehicles from one route to another one leads to an improvement in terms of emissions only if the VMS is complemented with an adaptation of the signal programs, while the VMS sign or the change of the signal plans alone do not yield benefits. This shows that it is not sufficient to evaluate single actions in a ceteris paribus analysis, but their joint network effects need to be taken into account.
Keywords
air pollution; environmental science computing; intelligent transportation systems; road traffic; road vehicles; vehicle routing; AIRE model; Black carbon tailpipe emissions; City of Graz; ITS traffic management; VMS sign; VMS-rerouting assessment; calibrated VISSIM model; ceteris paribus analysis; emission objectives; fixed time signal plans; microsimulations; signal programs; simulated vehicle trajectories; traffic signal planning; urban network; variable message sign; vehicle route; Atmospheric modeling; Biological system modeling; Calibration; Cities and towns; Roads; Vehicles; air emissions; microsimulation; traffic management measures;
fLanguage
English
Publisher
ieee
Conference_Titel
Models and Technologies for Intelligent Transportation Systems (MT-ITS), 2015 International Conference on
Conference_Location
Budapest
Print_ISBN
978-9-6331-3140-4
Type
conf
DOI
10.1109/MTITS.2015.7223253
Filename
7223253
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