DocumentCode :
679258
Title :
Microscopic simulation analysis of Mainstream Traffic Flow Control with Variable Speed Limits
Author :
Muller, Eduardo Rauh ; Carlson, Rodrigo Castelan ; Kraus, Werner ; Papageorgiou, Markos
Author_Institution :
Post-Grad. Program in Autom. & Syst. Eng., Fed. Univ. of Santa Catarina, Florianopolis, Brazil
fYear :
2013
fDate :
6-9 Oct. 2013
Firstpage :
998
Lastpage :
1003
Abstract :
Mainstream Traffic Flow Control (MTFC) with Variable Speed Limits (VSL) is a freeway traffic control method which aims to maximize throughput by regulating the mainstream flow upstream from a bottleneck. Recent studies in a macroscopic simulator have shown optimal and feedback MTFC potential to improve traffic conditions. In this paper, local feedback MTFC is applied in microscopic simulation for an on-ramp merge bottleneck. Traffic behavior reveals important aspects that had not been previously captured in macroscopic simulation. Mainly, the more realistic VSL application at specific points instead of along an entire freeway section produces a slower traffic response to speed limit changes. In addition, the nonlinear speed limit-flow relation observed in the microscopic model is more pronounced than what was observed at the macroscopic level. After appropriate modifications in the control law significant improvements in traffic conditions were obtained.
Keywords :
road traffic control; velocity control; MTFC; MTFC potential; VSL; control law; freeway section; freeway traffic control method; macroscopic simulator; mainstream traffic flow control; microscopic simulation; microscopic simulation analysis; nonlinear speed limit-flow relation; on-ramp merge bottleneck; traffic behavior; traffic conditions; traffic response; variable speed limits; Acceleration; Delays; Detectors; Microscopy; Modeling; Traffic control; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Transportation Systems - (ITSC), 2013 16th International IEEE Conference on
Conference_Location :
The Hague
Type :
conf
DOI :
10.1109/ITSC.2013.6728362
Filename :
6728362
Link To Document :
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