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Impact of slot controls with a market-based allocation mechanism at San Francisco International Airport

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  • Mehndiratta, Shomik Raj
  • Kiefer, Mark

Abstract

This paper presents an empirical analysis of the possible impact of the application of slot controls as a demand-management measure at San Francisco International Airport (SFO). We examine the specific case of slot controls allocated with a market-based mechanism. The paper first describes the nature of the delay problem at SFO and how slot controls would work to manage demand, briefly reviewing their history in the US. We then describe the methodology used to analyze their potential impact given the assumption of a market-based allocation mechanism and present our findings on their predicted impacts on arrival delays and the nature and level of scheduled passenger air service at the airport. Finally, we present conclusions as to the overall potential of slot controls to alleviate delay at SFO and their non-delay consequences. The methods presented in the paper facilitate a detailed analysis of the incidence of the impact of slot controls on passengers, airlines and individual communities that depend on SFO for access to the national air transportation system.

Suggested Citation

  • Mehndiratta, Shomik Raj & Kiefer, Mark, 2003. "Impact of slot controls with a market-based allocation mechanism at San Francisco International Airport," Transportation Research Part A: Policy and Practice, Elsevier, vol. 37(7), pages 555-578, August.
  • Handle: RePEc:eee:transa:v:37:y:2003:i:7:p:555-578
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    References listed on IDEAS

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    1. Steven Berry & Michael Carnall & Pablo T. Spiller, 1996. "Airline Hubs: Costs, Markups and the Implications of Customer Heterogeneity," NBER Working Papers 5561, National Bureau of Economic Research, Inc.
    2. Borenstein, Severin, 1990. "Airline Mergers, Airport Dominance, and Market Power," American Economic Review, American Economic Association, vol. 80(2), pages 400-404, May.
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    Cited by:

    1. Lay Eng Teoh & Hooi Ling Khoo, 2016. "Fleet Planning Decision-Making: Two-Stage Optimization with Slot Purchase," Journal of Optimization, Hindawi, vol. 2016, pages 1-12, June.
    2. Hansen, Mark & Smirti, Megan & Zou, Bo, 2008. "A Comparative Evaluation of Greenhouse Gas Emission Reduction Strategies for the Maritime Shipping and Aviation Sectors," University of California Transportation Center, Working Papers qt4j3573wm, University of California Transportation Center.
    3. Lee, Heeyeon & Jung, Jihyeok & Lee, Deok-Joo, 2024. "An auction-based airport slot reallocation scheme considering the grandfather rights of airlines," Journal of Air Transport Management, Elsevier, vol. 118(C).
    4. Lei, Zheng & Papatheodorou, Andreas, 2010. "Measuring the effect of low-cost carriers on regional airports' commercial revenue," Research in Transportation Economics, Elsevier, vol. 26(1), pages 37-43.
    5. Daniel, Joseph I, 2014. "The untolled problems with airport slot constraints," Economics of Transportation, Elsevier, vol. 3(1), pages 16-28.
    6. Noto, Claudio, 2020. "Airport slots, secondary trading, and congestion pricing at an airport with a dominant network airline," Research in Transportation Economics, Elsevier, vol. 79(C).
    7. Bard, Jonathan F. & Mohan, Dinesh Natarajan, 2008. "Reallocating arrival slots during a ground delay program," Transportation Research Part B: Methodological, Elsevier, vol. 42(2), pages 113-134, February.
    8. Schank, Joshua L., 2005. "Solving airside airport congestion: Why peak runway pricing is not working," Journal of Air Transport Management, Elsevier, vol. 11(6), pages 417-425.
    9. Yimga, Jules, 2025. "Schedule padding effects following airport slot reforms: A synthetic difference-in-differences procedure," Transport Policy, Elsevier, vol. 168(C), pages 112-132.

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