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Merging transport network companies and taxis in Curitiba’s BRT system

Author

Listed:
  • Rafael Milani Medeiros

    (HafenCity University for the Built Environment and Metropolitan Development)

  • Fábio Duarte

    (Massachusetts Institute of Technology)

  • Iva Bojic

    (Massachusetts Institute of Technology)

  • Yang Xu

    (The Hong Kong Polytechnic University)

  • Paolo Santi

    (Massachusetts Institute of Technology)

  • Carlo Ratti

    (Massachusetts Institute of Technology)

Abstract

The Brazilian city of Curitiba became known around the world for pioneering bus rapid transit (BRT) in the 1970s. Five decades later, public transport ridership is declining on the city’s bus-based system. One-person car trips and car ownership are soaring, and services provided by transport network companies rapidly proliferate and then disappear as congestion worsens and expands across the road network. This was the macro-scale scenario for mobility and modal trends in Curitiba until COVID-19 brought things to a screeching halt in 2020. The widespread use of information and communication technologies has allowed taxi and car ride-hailing transport network schemes to emerge while blurring the lines between public and private and individual and collective transport, locally as well as globally. In 2016, transport network company systems, apps, private cars, services, drivers and passengers disrupted Curitiba’s longstanding and well-regulated taxi system and market for licenses. In 2023, hailing a cab or a shared ride feels and costs the same for passengers (now customers). This study investigates whether these actors and technologies compete with or complement each other in this city, locating and quantifying the benefits for passengers of merging taxi and car ridesharing with the BRT system as first- and last-mile transport to and from BRT corridors. We developed mobile information and communication technologies and acquired, processed, and analyzed millions of data points for passenger location on BRT, ordinary bus, and taxi trips at the city scale. The shareability index for Curitiba’s taxi or car rides was calculated, demonstrating that 60% of all taxi trips have the potential to serve as first- and last-mile transport solution to and from the BRT terminals, stations, and corridors and that nearly 40% of taxi trips both originate and end near (

Suggested Citation

  • Rafael Milani Medeiros & Fábio Duarte & Iva Bojic & Yang Xu & Paolo Santi & Carlo Ratti, 2024. "Merging transport network companies and taxis in Curitiba’s BRT system," Public Transport, Springer, vol. 16(1), pages 269-293, March.
  • Handle: RePEc:spr:pubtra:v:16:y:2024:i:1:d:10.1007_s12469-023-00342-7
    DOI: 10.1007/s12469-023-00342-7
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    References listed on IDEAS

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    1. Renato Arbex & Claudio Barbieri Cunha & Roberto Speicys, 2021. "Before-and-after evaluation of a bus network improvement using performance indicators from historical smart card data," Public Transport, Springer, vol. 13(3), pages 483-501, October.
    2. Adler, Thomas & Ben-Akiva, Moshe, 1979. "A theoretical and empirical model of trip chaining behavior," Transportation Research Part B: Methodological, Elsevier, vol. 13(3), pages 243-257, September.
    3. Frank Primerano & Michael Taylor & Ladda Pitaksringkarn & Peter Tisato, 2008. "Defining and understanding trip chaining behaviour," Transportation, Springer, vol. 35(1), pages 55-72, January.
    4. S. C. Wirasinghe & L. Kattan & M. M. Rahman & J. Hubbell & R. Thilakaratne & S. Anowar, 2013. "Bus rapid transit - a review," International Journal of Urban Sciences, Taylor & Francis Journals, vol. 17(1), pages 1-31, March.
    5. repec:cdl:itsdav:qt82w2z91j is not listed on IDEAS
    6. Bwire, Hannibal & Zengo, Emil, 2020. "Comparison of efficiency between public and private transport modes using excess commuting: An experience in Dar es Salaam," Journal of Transport Geography, Elsevier, vol. 82(C).
    7. Fábio Duarte & Ricardo Álvarez, 2019. "The data politics of the urban age," Humanities and Social Sciences Communications, Palgrave Macmillan, vol. 5(1), pages 1-7, December.
    8. Fernando Martín Poó & Rubén Daniel Ledesma & Soledad Susana López, 2018. "The taxi industry: working conditions and health of drivers, a literature review," Transport Reviews, Taylor & Francis Journals, vol. 38(3), pages 394-411, May.
    9. Rick Grahn & Sean Qian & H. Scott Matthews & Chris Hendrickson, 2021. "Are travelers substituting between transportation network companies (TNC) and public buses? A case study in Pittsburgh," Transportation, Springer, vol. 48(2), pages 977-1005, April.
    10. Behrang Assemi & Azalden Alsger & Mahboobeh Moghaddam & Mark Hickman & Mahmoud Mesbah, 2020. "Improving alighting stop inference accuracy in the trip chaining method using neural networks," Public Transport, Springer, vol. 12(1), pages 89-121, March.
    11. Smith, Göran & Sochor, Jana & Karlsson, I.C. MariAnne, 2018. "Mobility as a Service: Development scenarios and implications for public transport," Research in Transportation Economics, Elsevier, vol. 69(C), pages 592-599.
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