Modeling of cycle time for signalized intersections in urban areas: Ankara case study
2004
0 views
0 downloads
Advisor: Y.doç.dr. Kürşat Çubuk
Abstract (EN)
MODELING OF CYCLE TIME FOR SIGNALIZED INTERSECTIONS IN URBAN AREAS: ANKARA CASE STUDY (Ph.D Thesis) Ebru ARIKAN ÖZTÜRK GAZI UNIVERSITY INSTITUTE OF SCIENCE AND TECHNOLOGY October 2004 ABSTRACT A significant amount of travel time is spent at highway networks with signal controlled intersections during highway transportation in urban areas. Therefore performance of urban highway transportation is closely related to the quality attained in controlling traffic signals at intersections. In design of intersection control process, minimization of performance losses due to stops and delays, and maximization of benefits to the users are targeted. Basic control mechanism used in intersection control is signal timing. In this study, a mathematical model, which incorporates local traffic conditions (hourly traffic demand, vehicle type composition) and driver behavior at intersections, is developed to estimate signal cycle time and green times for signalized intersection in Ankara. Science Code : 963 Keywords : Signalization, Signalized Intersection, Traffic Control, Cycle Time, Green Time Number of Pages : 243 Advisor : Asst.Prof.Dr. M.Kürşat ÇUBUK
Author
Dr. Ebru Arıkan Öztürk
Institution
How to Cite
Ebru Arıkan Öztürk (Doctorate thesis). Modeling of cycle time for signalized intersections in urban areas: Ankara case study, 2004, Gazi University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Gazi University
- Occupational accident analysis and modelling in oil and gas drilling sector Turkey(2021)
- The use of verbal memory in the context of sustainability and power at the museums of Turk(2010)
- XVI. yüzyıl Anadolu'sunda Oğuzların Karkın Boyu(2004)
- Sharing of real life geometry samples via a social learning environment: A case study(2021)
- Evaluatıon of calcium hydroxide removal efficiency of two different irrigation activation techniques from artificial internal resorption cavities prepared at different root levels(2021)
- Experimental development of the interfacial bond-slip model between textile reinforced mortar strips and masonry walls(2025)
