Technical Papers
Oct 19, 2015

Determination of Passenger-Car Units on Two-Lane Intercity Highways under Heterogeneous Traffic Conditions

Publication: Journal of Transportation Engineering
Volume 142, Issue 2

Abstract

The introduction of the passenger car unit (PCU) concept by the 1965 edition of the Highway Capacity Manual (HCM) enabled researchers around the world to deal with mixed traffic flow. Though some researchers have tried to show the dynamic nature of PCU factors, most of the studies in the world, as well as the latest standards being followed, still provide static PCU values for various types of vehicle categories. The present study demonstrates the dynamic nature of PCU factors on two-lane intercity highways under highly heterogeneous traffic composition. They are estimated based on speed and size of vehicle type in the traffic stream with respect to a standard passenger car. Simultaneous equations are formulated to calculate the speeds of different types of vehicles for a given traffic composition and traffic volume on the road, which lead to the determination of PCU factors. While many plots are made to describe the effect of traffic composition and volume on PCU of a vehicle type, it is felt that they are not enough to explain the complete variation. Therefore, the concept of a stream equivalency factor is suggested to convert a heterogeneous traffic stream into a homogeneous stream consisting of passenger cars. A simple linear equation is developed using data from three sites to calculate this factor for a known traffic volume and proportional composition of a traffic stream. Field data from a fourth site are used to validate the proposed model. The proposed model is quite simple to use and would avoid estimation of PCU factors for individual types of vehicles on a two-lane intercity highway.

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Acknowledgments

The work reported in this paper is a part of ongoing research project on “Development of Indian Highway Capacity Manual (INDO-HCM),” sponsored by CSIR-CRRI, New Delhi, India. The financial assistance provided by the sponsoring agency for traffic studies is gratefully acknowledged.

References

Bains, M. S., Ponnu, B., and Arkatkar, S. S. (2012). “Modeling of traffic flow on Indian expressways using simulation technique.” Procedia Social Behav. Sci., 43, 475–493.
Ben-Edigbe, I. E., and Ferguson, N. S. (2005). “Extent of capacity loss resulting from pavement distress.” Proc. Inst. Civ. Eng. Transp., 158(1), 27–32.
Bhattacharya, P. G., and Mandal, A. G. (1980). “Investigation of passenger car equivalents at controlled intersection in Calcutta.”, Indian Roads Congress, New Delhi, India, 41–64.
Chandra, S., and Kumar, U. (2003). “Effect of lane width on capacity under mixed traffic conditions in India.” J. Transp. Eng., 155–160.
Chandra, S., Kumar, V., and Sikdar, P. K. (1995). “Dynamic PCU and estimation of capacity of urban roads.” Indian Highways, Indian Road Congress, New Delhi, India, 17–28.
Chandra, S., and Sikdar, P. K. (2000). “Factors affecting PCU in mixed traffic situations on urban roads.” Road Transp. Res., 9(3), 40–50.
Craus, J., Polus, A., and Grinberg, I. (1980). “A revised method for determination of passenger car equivalents.” Transp. Res. Part A, 14(4), 241–246.
Dey, P. P., Chandra, S., and Gangopadhaya, S. (2006). “Speed distribution curves under mixed traffic conditions.” J. Transp. Eng., 475–481.
Dhamaniya, A., and Chandra, S. (2013). “Concept of stream equivalency factor for heterogeneous traffic on urban arterial roads.” J. Transp. Eng., 1117–1123.
Elefteriadou, L., Torbic, D., and Webster, N. (1997). “Development of passenger car equivalents for freeways, two-lane highways, and arterials.”, Transportation Research Board, Washington, DC, 51–58.
Highway Capacity Manual. (1965)., Highway Research Board, Washington, DC.
Huber, M. J. (1982). “Estimation of passenger car equivalents of trucks in traffic stream.”, Transportation Research Board, Washington, DC, 60–68.
IHCM. (1996). “Indonesian highway capacity manual.”, Directorates of Urban Road Development, Jakarta, Indonesia.
IRC (Indian Roads Congress). (1990). “Guidelines for capacity of roads in rural areas (first revision).”, Indian Code of Practice, New Delhi, India.
Transportation Research Board. (2010). “Highway capacity manual.” National Research Council, Washington, DC.
Werner, A., and Morrall, J. F. (1976). “Passenger car equivalencies of trucks, buses and recreational vehicles for two lane rural highways.”, Transportation Research Board, Washington, DC, 10–17.
Zhang, J. W., Dai, W. M., and Xiugang, L. (2006). “Developing passenger car equivalents for China highways based on vehicle moving space.” 85th Annual Meeting of Transportation Research Board 1562, National Academies of Sciences, Engineering, and Medicine, Washington, DC.

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Go to Journal of Transportation Engineering
Journal of Transportation Engineering
Volume 142Issue 2February 2016

History

Received: Jan 19, 2015
Accepted: Aug 17, 2015
Published online: Oct 19, 2015
Published in print: Feb 1, 2016
Discussion open until: Mar 19, 2016

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Authors

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Mohammad Mardani Nokandeh [email protected]
Ph.D. Candidate, Dept. of Civil Engineering, Indian Institute of Technology (IIT) Roorkee, Roorkee, Uttarakhand 247667, India. E-mail: [email protected]
Indrajit Ghosh, A.M.ASCE [email protected]
Assistant Professor, Dept. of Civil Engineering, Indian Institute of Technology (IIT) Roorkee, Roorkee, Uttarakhand 247667, India (corresponding author). E-mail: [email protected]
Satish Chandra, A.M.ASCE [email protected]
Professor, Dept. of Civil Engineering, Indian Institute of Technology (IIT) Roorkee, Roorkee, Uttarakhand 247667, India. E-mail: [email protected]

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