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Identifying the Potential for Partial Integration of Private and Public Transportation

Author

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  • Iva Bojic

    (Singapore-MIT Alliance for Research and Technology, Singapore 138602, Singapore
    These authors contributed equally to this work.)

  • Dániel Kondor

    (Singapore-MIT Alliance for Research and Technology, Singapore 138602, Singapore
    These authors contributed equally to this work.)

  • Wei Tu

    (Guangdong Key Laboratory of Urban Informatics, Department of Urban Informatics, School of Architecture and Urban Planning, Shenzhen University, Shenzhen 518000, China)

  • Ke Mai

    (Guangdong Key Laboratory of Urban Informatics, Department of Urban Informatics, School of Architecture and Urban Planning, Shenzhen University, Shenzhen 518000, China)

  • Paolo Santi

    (Senseable City Laboratory, Massachusetts Institute of Technology, Cambridge, MA 02139, USA
    Istituto di Informatica e Telematica del CNR, 56127 Pisa, Italy)

  • Carlo Ratti

    (Singapore-MIT Alliance for Research and Technology, Singapore 138602, Singapore
    Senseable City Laboratory, Massachusetts Institute of Technology, Cambridge, MA 02139, USA)

Abstract

In this paper, we explore the potential for a partial integration of private and public transportation as provided by taxi and bus services on the level of individual trips. While these modes are typically separated for economic reasons, in the future with shared Autonomous Vehicles (AVs) providing cheap and efficient transportation services, such distinctions will blur. Consequently, optimization based on real-time data will allow exploiting parallels in demand in a dynamic way, such as the proposed approach in the current work. New operational and pricing strategies will then need to be considered, along with regulatory tools to limit congestion, encourage sharing and provide services in a more sustainable way by utilizing a dynamic landscape of urban transportation. In the current work, we evaluate existing parallels between individual bus and taxi trips in two Asian cities and show how exploiting these synergies could form the basis of achieving some of the above goals in the future.

Suggested Citation

  • Iva Bojic & Dániel Kondor & Wei Tu & Ke Mai & Paolo Santi & Carlo Ratti, 2021. "Identifying the Potential for Partial Integration of Private and Public Transportation," Sustainability, MDPI, vol. 13(6), pages 1-16, March.
  • Handle: RePEc:gam:jsusta:v:13:y:2021:i:6:p:3424-:d:520478
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    References listed on IDEAS

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    1. Millard-Ball, Adam, 2019. "The autonomous vehicle parking problem," Transport Policy, Elsevier, vol. 75(C), pages 99-108.
    2. Daziano, Ricardo A. & Sarrias, Mauricio & Leard, Benjamin, 2016. "Are consumers willing to pay to let cars drive for them? Analyzing response to autonomous vehicles," RFF Working Paper Series dp-16-35, Resources for the Future.
    3. Shen, Yu & Zhang, Hongmou & Zhao, Jinhua, 2018. "Integrating shared autonomous vehicle in public transportation system: A supply-side simulation of the first-mile service in Singapore," Transportation Research Part A: Policy and Practice, Elsevier, vol. 113(C), pages 125-136.
    4. Jeffery B. Greenblatt & Samveg Saxena, 2015. "Autonomous taxis could greatly reduce greenhouse-gas emissions of US light-duty vehicles," Nature Climate Change, Nature, vol. 5(9), pages 860-863, September.
    5. Bansal, Prateek & Kockelman, Kara M., 2017. "Forecasting Americans’ long-term adoption of connected and autonomous vehicle technologies," Transportation Research Part A: Policy and Practice, Elsevier, vol. 95(C), pages 49-63.
    6. Hawas, Yaser E. & Hassan, Mohammad Nurul & Abulibdeh, Ammar, 2016. "A multi-criteria approach of assessing public transport accessibility at a strategic level," Journal of Transport Geography, Elsevier, vol. 57(C), pages 19-34.
    7. Tu, Wei & Cao, Rui & Yue, Yang & Zhou, Baoding & Li, Qiuping & Li, Qingquan, 2018. "Spatial variations in urban public ridership derived from GPS trajectories and smart card data," Journal of Transport Geography, Elsevier, vol. 69(C), pages 45-57.
    8. Bian, Zheyong & Liu, Xiang, 2019. "Mechanism design for first-mile ridesharing based on personalized requirements part I: Theoretical analysis in generalized scenarios," Transportation Research Part B: Methodological, Elsevier, vol. 120(C), pages 147-171.
    9. Itf, 2015. "Urban Mobility System Upgrade: How shared self-driving cars could change city traffic," International Transport Forum Policy Papers 6, OECD Publishing.
    10. Cynthia Jacques & Kevin Manaugh & Ahmed El-Geneidy, 2013. "Rescuing the captive [mode] user: an alternative approach to transport market segmentation," Transportation, Springer, vol. 40(3), pages 625-645, May.
    11. Schikofsky, Jan & Dannewald, Till & Kowald, Matthias, 2020. "Exploring motivational mechanisms behind the intention to adopt mobility as a service (MaaS): Insights from Germany," Transportation Research Part A: Policy and Practice, Elsevier, vol. 131(C), pages 296-312.
    12. Hensher, David A., 2018. "Tackling road congestion – What might it look like in the future under a collaborative and connected mobility model?," Transport Policy, Elsevier, vol. 66(C), pages 1-8.
    13. 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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