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An aggregate demand model for intercity passenger travel in Sri Lanka

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Abstract

Inspite of the inherent weaknesses in aggregate demand models, they continue to be used in everyday applications, especially in developing countries. The largely data intensive disaggregate model preclude its application in many cases. This paper attempts the formulation and calibration of an aggregate total demand model for estimating inter-district passenger travel by public transport in Sri Lanka. In its process, an investigation is made of the common problems in the aggregate approach while examining possible remedial measures to improve the accuracy and (hence) the usability of the aggregate model. It is argued that commonly used variables and functional forms are inappropriate for making accurate estimates in developing countries. Consequently, the model calibration is shown to incorporate variables representing urbanisation, under-development, transfers, a mode-abstract cost function and intrinsic features. The necessity for functional form for each variable to be based on behavioral assumptions that are tested using the Box-Cox transformation for ensuring the best fit of the data is also observed. Although, the model form was calibrated for Sri Lanka, the model is generalised in order for its applications to other countries as well as, both, inter-district and intercity travel demand estimation.

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References

  • Central Bank of Sri Lanka (1985) Economic and Social Statistics of Sri Lanka, Colombo, Sri Lanka.

  • Department of Census & Statistics (1986) Statistical Pocketbook of the Socialist Republic of Sri Lanka, Ministry of Plan Implementation, Colombo, Sri Lanka.

    Google Scholar 

  • DeSerpas AC (1971) A theory of the economics of time. Economics Journal 81(324): 828-845.

    Google Scholar 

  • Gaudry MJI & Wills MJ (1978) Estimating the functional form of travel demand models. Transportation Research 12: 259-289.

    Google Scholar 

  • Gronau R (1970) The Value of Time in Passenger Transportation: The Demand for Air Transportation. New York, USA: Columbia University Press.

    Google Scholar 

  • Khanna SK & Kumar V (1985) Interurban travel demand estimation. Indian Highways 13(9): 19-23.

    Google Scholar 

  • Koppelman FS, Kuah G & Hirsh M (1984) Review of Intercity Passenger Travel Demand Modelling: Mid-60's to Mid-80's, Transportation Centre, Northwestern University, Illinois, USA.

    Google Scholar 

  • Kumar V & Khanna SK (1984) Validation of intercity mode choice disaggregate models. Indian Highways 12(6): 7-12.

    Google Scholar 

  • Kumarage AS, Wirasinghe SC & Ratnayake LL (1989) Intercity passenger travel in Sri Lanka. Final Report: Passenger Transportation — Sri Lanka Project, Research Report No. CE89-1, Volumes I, II(A) & II(B), Department of Civil Engineering, University of Calgary, Alberta, Canada.

    Google Scholar 

  • Kumarage AS & Wirasinghe SC (1989) Mobility indices for intercity travel demand estimation for a developing country (Sri Lanka), Proceedings, 5th World Conference on Transportation Research, Yokohama, Japan, July 1989.

  • Kumarage AS (1990a) Intercity Travel Demand Modelling for Developing Countries, Ph.D. Thesis, Department of Civil Engineering, The University of Calgary, Calgary, Alberta, Canada.

    Google Scholar 

  • Kumarage AS (1990b) 1986/87 Sri Lanka Inter-District Passenger Data Base, Department of Civil Engineering, University of Moratuwa, Moratuwa, Sri Lanka.

    Google Scholar 

  • Kumarage AS & Wirasinghe SC (1994) Transferability of Aggregate Total Demand Model. Canadian Journal of Civil Engineering, Accepted for Publication.

  • Louis Berger et al. (1989) Sri Lanka Transport Sector Planning Study, Orange. New Jersey, USA.

  • Lansing JB, Lin J & Suits DB (1961) An analysis of interurban air travel. Quarterly Journal of Economics LXXV(1): 87-96.

    Google Scholar 

  • Liem TC, Dagenais MG & Gaudry MJI (1983) L-1.1: A program for Box-Cox transformation in regression models with heteroscedastic errors and autoregressive residuals. Centre de Recherche sur les Transports, Publication No. 301. Canada: Universite de Montreal.

    Google Scholar 

  • Nie NH et al. (1975) Statistical Package for the Social Sciences (SPSS), 2nd Edition. New York, USA: McGraw Hill.

    Google Scholar 

  • Rice RG, Miller EJ, Steuart GN & Brown M (1981) Review and development of intercity passenger demand models. Research Report No. 77, Joint Program in Transportation, University of Toronto/York University, Toronto, Canada.

    Google Scholar 

  • Walmsley DA (1979) A parametric model of intercity passenger transport. Transport and Road Research Laboratory, LR 866, Transport and Road Research Laboratory, Berkshire, UK.

    Google Scholar 

  • Watson PL (1974) The Value of Time; Behavioral Models of Modal Choice. London, UK: Lexington Books.

    Google Scholar 

  • Wirasinghe SC & Kumarage AS (1990) Transferability of intercity total demand models. In Preparation.

Download references

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Wirasinghe, S.C., Kumarage, A.S. An aggregate demand model for intercity passenger travel in Sri Lanka. Transportation 25, 77–98 (1998). https://doi.org/10.1023/A:1004985506022

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  • DOI: https://doi.org/10.1023/A:1004985506022

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