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Transportation Letters
The International Journal of Transportation Research
Volume 2, 2010 - Issue 4
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Original

Work zone queue length and delay methodology

Pages 273-283 | Published online: 07 Sep 2013

REFERENCES

  • Adeli, H. (2004). An intelligent decision support system for work zone traffic management and planning. Ohio Department of Transportation.
  • Benekohal, R.F., Kaja-Mohideen, A.Z. and Chitturi, M.V. (2003). Evaluation of Construction Work Zone Operational Issues: Capacity, Queue and Delay. Illinois Transportation Research Center, Edwardsville, ITRC FR 00/01–4.
  • Benekohal, R. F., Kaja-Mohideen, A.Z. and Chitturi, M.V. (2004). A methodology for estimating operating speed and capacity in work zones. Transportation Research Record: Journal of the Transportation Research Board, No. 1883, 103–111.
  • Benekohal R.F., Resende, P.T.V. and Orloski, R.L. (1992a). Effects of police presence on speed in a highway work zone: circulating marked police car experiment. Technical Report UILU-ENG-92-2020, University of Illinois at Urbana-Champaign.
  • Benekohal R.F., Resende, P.T.V. and Zhao, W. (1992b). Speed reduction effects of drone radar in rural inter-state work zones. Technical Report UILU-ENG-92-2018, University of Illinois at Urbana-Champaign.
  • Benekohal R.F. and Shu, J. (1992). Speed reduction effects of changeable message signs in a construction zone. Technical Report UILU-ENG-92-2019, University of Illinois at Urbana-Champaign.
  • Benekohal, R. F., Wang, Orloski, Kastel. (1992c). Speed reduction profiles of vehicles in a highway construction zone. UILU-ENG-92-2021, University of Illinois at Urbana-Champaign.
  • Chien, S.I.J., Goulias, D.G., Yahalom, S. and Chowdhury, S.M. (2002). Simulation-based estimates of delays at free-way work zones. Journal of Advanced Transportation, 36 (2), 131–156.
  • Chitturi, M.V. (2007). Development of a methodology for delay-based passenger car equivalents of heavy vehicles in work zones. Ph D Dissertation, University of Illinois at Urbana-Champaign.
  • Chitturi, M.V. and Benekohal, R.F. (2004). Comparison of QUEWZ, FRESIM and QuickZone with field data for work zones. 83rd TRB Annual Meeting CD-ROM.
  • Chitturi, M.V. and Benekohal, R.F. (2005). Effect of lane width on speeds of cars and heavy vehicles in work zones. Transportation Research Record: Journal of the Transportation Research Board, 1920, 41–48.
  • Chitturi, M.V., Benekohal, R.F. and Kaja-Mohideen, A.Z. (2008). Methodology for Computing Delay and User Costs in Work Zones. Transportation Research Record: Journal of the Transportation Research Board, 2055, 31–38.
  • Federal Highway Administration. (2004a). Final rule on work zone safety and mobility. Federal Register/ Rules and Regulations, 69 (174).
  • Federal Highway Administration. (2004b). Intelligent transportation systems in work zones: a case study. Reducing congestion with the use of a traffic management contract incentive during the reconstruction of Arizona state route 68, FHWA-HOP–04–032.
  • Fontaine, M. D., Carlson, P.J. and Hawkins, H.G. (2000). Evaluation of traffic control devices for rural high-speed maintenance work zones: second year activities and final recommendations. Texas Transportation Institute.
  • Highway capacity Manual 2000. (2000). Washington, D.C. Transportation Research Board, National Research Council, 2000.
  • Jiang, Y. (1998). Traffic capacities and methods to estimate traffic delays and user costs at Indiana freeway work zones. Federal Highway Administration, FHWA/ INDOT/SPR–2121.
  • Jiang, Y. (1999a). Traffic capacity, speed, and queue-dis-charge rate of Indiana's four-lane freeway work zones. Transportation Research Record 1657, 10–17.
  • Jiang, Y. (1999b). A model for estimating excess user costs at highway work zones. Transportation Research Record No. 1657, 31–41.
  • Jiang, Y. (2001). A model for estimating traffic delays and vehicle queues at freeway work zones. Journal of the Transportation Research Forum, 40 (4), 65–81.
  • Jiang, X. and Adeli, H. (2003). Freeway work zone traffic delay and cost optimization model, Journal of Transportation Engineering, 129 (3), 230–241.
  • Karim, A. and Adeli, H. (2003). Radial basis function neural network for work zone capacity and queue estimation. Journal of Transportation Engineering, 129 (5), 494–503.
  • Porter, R.J. and Mason, J.M. (2008). Modeling Speed Behavior of Passenger Cars and Trucks in Freeway Construction Work Zones: Implications on Work Zone Design and Traffic Control Decision Processes. ASCE Journal of Transportation Engineering, Vol. 134, No. 11.
  • McCoy, P. T., Bonneson, J.A. and Kollbaum, J.A. (1995). Speed reduction effects of speed monitoring dis-plays with radar in work zones on interstate high-ways. Transportation Research Record: Journal of the Transportation Research Board, No. 1509, 65–72.
  • Ullman, G. L. (1991). Effect of radar transmissions on traf-fic operations at highway work zones. Transportation Research Record: Journal of the Transportation Research Board, No. 1304, 261–269.
  • Wunderlich, K. and Hardesty D. (2002). A Snapshot of Work Zone Activity Reported on State Road Closure and Construction Websites. Technical report, Mitretek Systems, Falls Church VA.

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