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Variable speed limits as a mainline metering device for freeways

Papamichail Ioannis, Papageorgiou Markos, Albert Messmer, Rodrigo Castelan Carlson

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URIhttp://purl.tuc.gr/dl/dias/9754796A-D938-4950-AEDF-6602805E3C2C-
Γλώσσαen-
ΤίτλοςVariable speed limits as a mainline metering device for freewaysen
ΔημιουργόςPapamichail Ioannisen
ΔημιουργόςPapageorgiou Markosen
ΔημιουργόςΠαπαγεωργιου Μαρκοςel
ΔημιουργόςAlbert Messmeren
ΔημιουργόςRodrigo Castelan Carlsonen
ΠερίληψηThe impact of variable speed limits (VSL) on the aggregate traffic flow behavior on freeways is shown to bear, in case of appropriate VSL operation, similarities with the impact of ramp metering, in particular when addressing potentially active bottlenecks. While ramp metering holds traffic back in metered on-ramps, VSL may be used to hold traffic back on the mainline, i.e., be operated as a mainline metering device. To verify this approach, a quantitative model of the VSL impact is proposed which allows for VSL to be incorporated in a macroscopic second order traffic flow model as an additional control component. The integrated freeway network traffic control problem involving ramp metering and VSL control measures, is formulated as a constrained discrete-time optimal control problem and is solved efficiently by a suitable feasible direction algorithm. An illustrative example of a hypothetical freeway stretch is investigated under different control scenarios, and it is shown that traffic flow efficiency can be substantially improved when VSL control measures are used to address potentially active bottlenecks, with or without integration with ramp metering.en
ΤύποςΠλήρης Δημοσίευση σε Συνέδριοel
ΤύποςConference Full Paperen
Άδεια Χρήσηςhttp://creativecommons.org/licenses/by/4.0/en
Ημερομηνία2015-11-09-
Ημερομηνία Δημοσίευσης2010-
Βιβλιογραφική ΑναφοράR.C. Carlson, I. Papamichail, M. Papageorgiou, A. Messmer, "Variable speed limits as a mainline metering device for freeways," presented at 89th Transportation Research Board Annual Meeting, Washington, DC, USA, 2010.en

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