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Travel experience matters: Expected personal mobility impacts after simulated L3/L4 automated driving

Author

Listed:
  • Esko Lehtonen

    (VTT Technical Research Centre of Finland Ltd.)

  • Johanna Wörle

    (Würzburger Institut Für Verkehrswissenschaften GmbH)

  • Fanny Malin

    (VTT Technical Research Centre of Finland Ltd.)

  • Barbara Metz

    (Würzburger Institut Für Verkehrswissenschaften GmbH)

  • Satu Innamaa

    (VTT Technical Research Centre of Finland Ltd.)

Abstract

Automated vehicles (AVs) are expected to change personal mobility in the near future. Most studies on the mobility impacts of AVs focus on fully automated (SAE L5) vehicles, but the gradual development of the technology will probably bring AVs with more limited capabilities to begin with. This stated-preference study focused on the potential mobility impacts of conditionally automated (L3) and highly automated cars (L4). We investigated personal mobility impacts among 59 participants who experienced automated driving repeatedly in a driving simulator. Half of them drove with an L3 and half with an L4 motorway function. After the first and final drive they answered questions on their travel experience and how automated vehicles could change their mobility. After the drives, participants in both groups were willing to accept 30–50% longer travel times for a 30 min trip if they did not need to drive the whole trip themselves. This translates into savings of around 30% for the perceived value of travel time on routes where automation is available. There were no statistically significant differences between L3 and L4 in the accepted travel times. Most participants did not expect to make more trips with automated cars, but around half of them anticipated making longer trips. The amount of car travel may increase more with L4 than with L3 automation, possibly due somewhat to changes in the experienced travel quality. The results suggest that the mobility impacts of automated driving may increase with a higher level of automation.

Suggested Citation

  • Esko Lehtonen & Johanna Wörle & Fanny Malin & Barbara Metz & Satu Innamaa, 2022. "Travel experience matters: Expected personal mobility impacts after simulated L3/L4 automated driving," Transportation, Springer, vol. 49(5), pages 1295-1314, October.
  • Handle: RePEc:kap:transp:v:49:y:2022:i:5:d:10.1007_s11116-021-10211-6
    DOI: 10.1007/s11116-021-10211-6
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    References listed on IDEAS

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    1. Kouwenhoven, Marco & de Jong, Gerard, 2018. "Value of travel time as a function of comfort," Journal of choice modelling, Elsevier, vol. 28(C), pages 97-107.
    2. Wadud, Zia & MacKenzie, Don & Leiby, Paul, 2016. "Help or hindrance? The travel, energy and carbon impacts of highly automated vehicles," Transportation Research Part A: Policy and Practice, Elsevier, vol. 86(C), pages 1-18.
    3. Le, Huyen T.K. & Buehler, Ralph & Fan, Yingling & Hankey, Steve, 2020. "Expanding the positive utility of travel through weeklong tracking: Within-person and multi-environment variability of ideal travel time," Journal of Transport Geography, Elsevier, vol. 84(C).
    4. Mark Wardman & Phani Chintakayala & Chris Heywood, 2020. "The valuation and demand impacts of the worthwhile use of travel time with specific reference to the digital revolution and endogeneity," Transportation, Springer, vol. 47(3), pages 1515-1540, June.
    5. Hardman, Scott PhD, 2020. "Travel Behavior Changes Among Users of Partially Automated Vehicles," Institute of Transportation Studies, Working Paper Series qt8p0351m1, Institute of Transportation Studies, UC Davis.
    6. Kröger, Lars & Kuhnimhof, Tobias & Trommer, Stefan, 2019. "Does context matter? A comparative study modelling autonomous vehicle impact on travel behaviour for Germany and the USA," Transportation Research Part A: Policy and Practice, Elsevier, vol. 122(C), pages 146-161.
    7. DeSerpa, A C, 1971. "A Theory of the Economics of Time," Economic Journal, Royal Economic Society, vol. 81(324), pages 828-846, December.
    8. Wardman, Mark & Chintakayala, V. Phani K. & de Jong, Gerard, 2016. "Values of travel time in Europe: Review and meta-analysis," Transportation Research Part A: Policy and Practice, Elsevier, vol. 94(C), pages 93-111.
    9. Kolarova, Viktoriya & Steck, Felix & Bahamonde-Birke, Francisco J., 2019. "Assessing the effect of autonomous driving on value of travel time savings: A comparison between current and future preferences," Transportation Research Part A: Policy and Practice, Elsevier, vol. 129(C), pages 155-169.
    10. Aggelos Soteropoulos & Martin Berger & Francesco Ciari, 2019. "Impacts of automated vehicles on travel behaviour and land use: an international review of modelling studies," Transport Reviews, Taylor & Francis Journals, vol. 39(1), pages 29-49, January.
    11. Small, Kenneth A., 2012. "Valuation of travel time," Economics of Transportation, Elsevier, vol. 1(1), pages 2-14.
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    Cited by:

    1. Dilshad Mohammed & Balázs Horváth, 2023. "Travel Demand Increment Due to the Use of Autonomous Vehicles," Sustainability, MDPI, vol. 15(11), pages 1-20, June.

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