DocumentCode
2368914
Title
Immersion reality: combining microsimulation modelling and probe vehicles in traffic studies
Author
Taylor, Michael A P ; Woolley, Jeremy E. ; Zito, Rocco
Author_Institution
Transp. Syst. Centre, Univ. of South Australia, Adelaide, SA, Australia
fYear
2002
fDate
2002
Firstpage
610
Lastpage
615
Abstract
A Paramics micro-simulation model of an Adelaide radial road corridor has been constructed. The corridor includes a novel one-way reversible direction expressway equipped with an advanced traffic management system (ATMS). The modelled area included two alternative radial routes: an arterial road and the expressway. The model was used to analyse the performance of the corridor when an incident occurred on the expressway, in terms of traffic conditions and greenhouse gas emissions. Real world data was collected on both routes using an instrumented vehicle which records vehicle engine, positional and emissions data in real time. Paramics allows a representation of the probe vehicle to be introduced into the simulations. The paper describes the modelled results when this vehicle was immersed in the simulation modelling on incidents and the responses of the corridor´s ATMS, with particular regard to the estimation of the emission impacts of ATIS and INMS.
Keywords
air pollution; automated highways; digital simulation; road traffic; traffic engineering computing; virtual reality; Adelaide South Expressway; Paramics model; advanced traffic management system; emission impacts; greenhouse gas emissions; immersion reality; instrumented vehicle; intelligent transport systems; micro simulation model; road traffic; Acceleration; Detectors; Fuels; Global warming; Instruments; Performance analysis; Probes; Road vehicles; Telecommunication traffic; Traffic control;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Transportation Systems, 2002. Proceedings. The IEEE 5th International Conference on
Print_ISBN
0-7803-7389-8
Type
conf
DOI
10.1109/ITSC.2002.1041288
Filename
1041288
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