TECHNICAL PAPERS
Mar 5, 2009

Illustrative Field Configuration and Evaluation of Traffic-Responsive Control

Publication: Journal of Transportation Engineering
Volume 135, Issue 9

Abstract

Traffic-responsive plan selection (TRPS) control is one of the largely underutilized control features in National Electircal Manufacturers Association traffic controllers. This control feature allows the controller to change timing plans in arterials or networks in response to changes in traffic patterns automatically, and can therefore result in better performance of the signal system. However, there is limited number of studies that document the procedure of TRPS configuration. The authors have previously published general guidelines on TRPS system setup and configuration, laying out a comprehensive approach that assumes general traffic patterns, a standardized arterial network, and some generic system detector locations. This paper fills a significant gap in literature by providing an illustrative procedure of actual field implementation of a TRPS system in Mexia, Texas. The paper demonstrates the configuration methodology on an arterial network that does not conform to the standardized guidelines. This implementation resulted in up to 75% reduction in delay and up to 33% increase in the lower arterial speed. In this paper, the authors provide some findings and insights into the TRPS configuration process, highlighting some solutions for potential field problems that the engineer might face when configuring a TRPS control system.

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Acknowledgments

The original guidelines and methodology for TRPS configuration were developed as part of TxDOT Project 0-4421, “A Simplified Approach for Selecting Optimal Traffic Responsive Control Parameters.” The writers would like to recognize the project director, Mr. Henry Wickes, for his support and guidance throughout the duration of this project.

References

Abbas, M., Chaudhary, N., Pesti, G., and Sharma, A. (2005a). “Configuration methodology for traffic-responsive plan selection: A global perspective.” Transportation Research Record. 1925, Transportation Research Board, National Research Council, Washington D.C., 195–204.
Abbas, M., Chaudhary, N., Pesti, G., and Sharma, A. (2005b). “Guidelines for determination of optimal traffic responsive plan selection control parameters.” Rep. No. FHWA/TX-05/0-4421-2, Texas Dept. of Transportation Research and Technology Implementation Office, College Station, Tex.
Abbas, M., Chaudhary, N., Sharma, A., Venglar, S. P., and Englbrecht, A. R. J. (2003). “Methodology for determination of optimal traffic responsive plan selection control parameters.” Rep. No. FHWA/TX-04/0-4421-1, Texas Dept. of Transportation Research and Technology Implementation Office, Texas Transportation Institute, College Station, Tex.
Abbas, M., and Sharma, A. (2006). “Multi-objective plan selection optimization for traffic responsive control.” J. Transp. Eng., 132(5), 376–384.
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Information & Authors

Information

Published In

Go to Journal of Transportation Engineering
Journal of Transportation Engineering
Volume 135Issue 9September 2009
Pages: 591 - 599

History

Received: May 20, 2008
Accepted: Nov 24, 2008
Published online: Mar 5, 2009
Published in print: Sep 2009

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Authors

Affiliations

Montasir M. Abbas, Ph.D. [email protected]
P.E.
Assistant Professor, Dept. of Civil and Environmental Engineering, Virginia Tech, 301-D1 Patton Hall, MC 0105, Blacksburg, VA 24061 (corresponding author). E-mail: [email protected]
Geza Pesti, Ph.D.
P.E.
Associate Research Engineer, Texas Transportation Institute, Texas A&M University System, TransLink Research Center-Gilchrist, Rm. 145, College Station, TX 77843-3135.
Nadeem A. Chaudhary, Ph.D.
P.E.
Senior Research Engineer, Texas Transportation Institute, Texas A&M University System, TransLink Research Center-Gilchrist, Rm. 147, College Station, TX 77843-3135.
Ph.D. Candidate; and Graduate Research Assistant, Dept. of Civil and Environmental Engineering, Virginia Tech, 200 Patton Hall, MC0105, Blacksburg, VA 24061. E-mail: [email protected]

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