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The role of road infrastructures in the usage of bikeshare and private bicycle

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  • Ji, Shujuan
  • Liu, Xiaojie
  • Wang, Yuanqing

Abstract

Differences in travel behaviors and user attributes exist between bikeshare users and regular cyclists. However, little is known about the preference difference in cycling facilities and other built environment elements for regular cyclists and share-bike users, and how the cycling infrastructure and street pattern factors affect the choice between shared bikes and regular bikes. To address this gap, we applied t-test and mode choice generalized additive mixed model (GAMM) to explore the nonlinear effects of cycling facilities and street patterns on the selection of bikeshare and regular bikes. Additionally, we examined the heterogeneous effects across education levels, distinguishing between high and low education. By analyzing bike travel data from Xi'an, China, the GAMM model results reveal the diverse impacts of built environment elements on bike choices at different education levels. Notably, the average geodesic distance (a street pattern indicator) negatively correlated with the likelihood of choosing a shared bike over a regular one. While high intersection density encourages more bikeshare trips compared to regular trips, it has a more pronounced effect on encouraging highly educated cyclists to opt for regular bikes over bikeshare. Bikeshare riders exhibit a preference for riding in areas with a single type of bike lane. Especially, highly educated bikeshare users are more inclined to cycle in areas with a high proportion of bike lanes separated by lines, while less educated cyclists tend to favor areas with a specific type of bike lane without specifying the exact type. Our study has the potential to provide valuable recommendations for planning of cycling facilities to accommodate a substantial number of bikeshare trips.

Suggested Citation

  • Ji, Shujuan & Liu, Xiaojie & Wang, Yuanqing, 2024. "The role of road infrastructures in the usage of bikeshare and private bicycle," Transport Policy, Elsevier, vol. 149(C), pages 234-246.
  • Handle: RePEc:eee:trapol:v:149:y:2024:i:c:p:234-246
    DOI: 10.1016/j.tranpol.2024.01.020
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    References listed on IDEAS

    as
    1. Tao, Tao & Wang, Jueyu & Cao, Xinyu, 2020. "Exploring the non-linear associations between spatial attributes and walking distance to transit," Journal of Transport Geography, Elsevier, vol. 82(C).
    2. Cherry, Christopher & Cervero, Robert, 2007. "Use characteristics and mode choice behavior of electric bike users in China," Transport Policy, Elsevier, vol. 14(3), pages 247-257, May.
    3. Reid Ewing & Robert Cervero, 2010. "Travel and the Built Environment," Journal of the American Planning Association, Taylor & Francis Journals, vol. 76(3), pages 265-294.
    4. Lei Kang & Jon Fricker, 2013. "Bicyclist commuters’ choice of on-street versus off-street route segments," Transportation, Springer, vol. 40(5), pages 887-902, September.
    5. Simon N. Wood, 2003. "Thin plate regression splines," Journal of the Royal Statistical Society Series B, Royal Statistical Society, vol. 65(1), pages 95-114, February.
    6. João Filipe Teixeira & Cecília Silva & Frederico Moura e Sá, 2021. "Empirical evidence on the impacts of bikesharing: a literature review," Transport Reviews, Taylor & Francis Journals, vol. 41(3), pages 329-351, May.
    7. Simon N. Wood, 2011. "Fast stable restricted maximum likelihood and marginal likelihood estimation of semiparametric generalized linear models," Journal of the Royal Statistical Society Series B, Royal Statistical Society, vol. 73(1), pages 3-36, January.
    8. Zhang, Yuanyuan & Bigham, John & Ragland, David & Chen, Xiaohong, 2015. "Investigating the associations between road network structure and non-motorist accidents," Journal of Transport Geography, Elsevier, vol. 42(C), pages 34-47.
    9. Ma, Xinwei & Ji, Yanjie & Yang, Mingyuan & Jin, Yuchuan & Tan, Xu, 2018. "Understanding bikeshare mode as a feeder to metro by isolating metro-bikeshare transfers from smart card data," Transport Policy, Elsevier, vol. 71(C), pages 57-69.
    10. Zhang, Ying & Thomas, Tom & Brussel, Mark & van Maarseveen, Martin, 2017. "Exploring the impact of built environment factors on the use of public bikes at bike stations: Case study in Zhongshan, China," Journal of Transport Geography, Elsevier, vol. 58(C), pages 59-70.
    11. Ding, Chuan & Cao, Xinyu (Jason) & Næss, Petter, 2018. "Applying gradient boosting decision trees to examine non-linear effects of the built environment on driving distance in Oslo," Transportation Research Part A: Policy and Practice, Elsevier, vol. 110(C), pages 107-117.
    12. Mateo-Babiano, Iderlina & Bean, Richard & Corcoran, Jonathan & Pojani, Dorina, 2016. "How does our natural and built environment affect the use of bicycle sharing?," Transportation Research Part A: Policy and Practice, Elsevier, vol. 94(C), pages 295-307.
    13. Faghih-Imani, Ahmadreza & Eluru, Naveen & El-Geneidy, Ahmed M. & Rabbat, Michael & Haq, Usama, 2014. "How land-use and urban form impact bicycle flows: evidence from the bicycle-sharing system (BIXI) in Montreal," Journal of Transport Geography, Elsevier, vol. 41(C), pages 306-314.
    14. Mosabbir Pasha & Shakil Rifaat & Richard Tay & Alex de Barros, 2016. "Urban design and planning influences on the share of trips taken by cycling," Journal of Urban Design, Taylor & Francis Journals, vol. 21(4), pages 471-480, July.
    15. Wafic El-Assi & Mohamed Salah Mahmoud & Khandker Nurul Habib, 2017. "Effects of built environment and weather on bike sharing demand: a station level analysis of commercial bike sharing in Toronto," Transportation, Springer, vol. 44(3), pages 589-613, May.
    16. Wardman, Mark & Hatfield, Richard & Page, Matthew, 1997. "The UK national cycling strategy: can improved facilities meet the targets?," Transport Policy, Elsevier, vol. 4(2), pages 123-133, April.
    17. Ding, Chuan & Cao, Xinyu & Yu, Bin & Ju, Yang, 2021. "Non-linear associations between zonal built environment attributes and transit commuting mode choice accounting for spatial heterogeneity," Transportation Research Part A: Policy and Practice, Elsevier, vol. 148(C), pages 22-35.
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