DocumentCode :
3466503
Title :
Improved action point model in traffic flow based on driver´s cognitive mechanism
Author :
Wang, Wuhong ; Zhang, Wei ; Li, Dehui ; Hirahara, Kiyotaka ; Ikeuchi, Katsushi
Author_Institution :
Sch. of Vehicle & Transp. Eng., Beijing Inst. of Technol., China
fYear :
2004
fDate :
14-17 June 2004
Firstpage :
447
Lastpage :
452
Abstract :
Car-following modelling in traffic flow theory has been becoming of increasing importance in traffic engineering and Intelligent Transport System(ITS), the point of concentration in this research field is how to analysis and measurement of driver cognitive behaviour. Based on qualitative description of driving behaviour with the new concept of driver´s multi-typed information process and multi-ruled decision-making mechanism, this paper has analysed in more detail the AP (action point) model, and ameliorated AP model by eliminating its deficiency. The emphasis of this paper is placed on the deduction of the acceleration equations by considering that the following car is subjected in congested traffic flow. Furthermore, from the cybernetics perspective, this paper has carried out numeral simulation to car-following behaviour with deceleration and acceleration algorithms. The model validation and simulation results have shown that the improved action point car-following model can replicated car-following behaviour and be able to use to reveal the essence of traffic flow characteristics.
Keywords :
automobiles; behavioural sciences computing; decision making; driver information systems; road traffic; acceleration algorithms; acceleration equations; car following behaviour; car following modelling; deceleration algorithm; driver cognitive behaviour; driver multityped information process; improved action point model; intelligent transport system; multiruled decision making mechanism; numeral simulation; qualitative description; traffic engineering; traffic flow characteristics; traffic flow theory; Acceleration; Automotive engineering; Computer vision; Educational programs; Equations; Road safety; Road vehicles; Traffic control; Vehicle driving; Vehicle safety;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Vehicles Symposium, 2004 IEEE
Print_ISBN :
0-7803-8310-9
Type :
conf
DOI :
10.1109/IVS.2004.1336425
Filename :
1336425
Link To Document :
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