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Beyond solving the last mile problem: the substitution effects of bike-sharing on a ride-sharing platform

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  • Juan Qin
  • Stephanie Lee
  • Xiangbin Yan
  • Yong Tan

Abstract

Ride-sharing services have been popularly used for both short-distance and long-distance trips. The recent introduction and growth of bike-sharing services can help solve the last mile problem and provide a good mobility option, especially for short-distance travellers. We examine the extent to which bike-sharing platforms solve the last mile problem and affect short-distance travels by studying their impacts on ride-sharing orders. To do so, we exploit a natural experiment setting in which bike-sharing platforms were newly launched in Chengdu, China. We combine detailed granular one-month order data collected from DiDi with Chengdu’s geographic information data from Gaode Map, a Chinese leading map provider. We find that the introduction of bike-sharing platforms significantly reduces short-distance ride-sharing orders. We additionally examine the heterogeneity in substitution effects across different pickup and drop-off locations and find that location attributes significantly affect bike-sharing’s substitution effects on ride-sharing platforms.

Suggested Citation

  • Juan Qin & Stephanie Lee & Xiangbin Yan & Yong Tan, 2018. "Beyond solving the last mile problem: the substitution effects of bike-sharing on a ride-sharing platform," Journal of Business Analytics, Taylor & Francis Journals, vol. 1(1), pages 13-28, January.
  • Handle: RePEc:taf:tjbaxx:v:1:y:2018:i:1:p:13-28
    DOI: 10.1080/2573234X.2018.1506686
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    Cited by:

    1. Krämer, Andreas & Bongaerts, Robert, 2019. "Shared Mobility: Wege aus der Nische?," Marketing Review St.Gallen, Universität St.Gallen, Institut für Marketing und Customer Insight, vol. 36(4), pages 80-87.
    2. Li, Chunzhi & Xiao, Wei & Zhang, Dayong & Ji, Qiang, 2021. "Low-carbon transformation of cities: Understanding the demand for dockless bike sharing in China," Energy Policy, Elsevier, vol. 159(C).
    3. Dillon T. Fitch & Hossain Mohiuddin & Susan L. Handy, 2021. "Examining the Effects of the Sacramento Dockless E-Bike Share on Bicycling and Driving," Sustainability, MDPI, vol. 13(1), pages 1-26, January.
    4. Liu, Yixiao & Tian, Zihao & Pan, Baoran & Zhang, Wenbin & Liu, Yunqi & Tian, Lixin, 2022. "A hybrid big-data-based and tolerance-based method to estimate environmental benefits of electric bike sharing," Applied Energy, Elsevier, vol. 315(C).

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