Abstract
This research deals with the design of external human-machine interfaces (eHMI) for two differently sized highly automated vehicle types (passenger car vs. bus) focusing on the interaction between highly automated vehicles (HAVs) and pedestrians of different age groups. Research has shown that at least in some situations HAVs need to be able to communicate explicitly via an eHMI with their surrounding traffic environment ensuring a safe and accepted interaction among all traffic participants (TPs), e.g., pedestrians. Therefore, their messages should be universally understood. The question that arises is how TPs’ information needs may differ for different vehicle types, how this needs to be considered in the eHMI design and if different TP age groups, especially elderly, need other information for a safe and accepted interaction. However, little research addressing this question was done so far. Results of our current experimental online study (N = 321) in a shared space setting revealed that especially explicit communication via an eHMI is beneficial for interaction. Furthermore, results indicated an overall good implementation of the explicit eHMI communication strategies. Pedestrians felt safer, better informed, and indicated a more positive affective valence in interaction with HAVs with dynamic eHMI vs. static eHMI vs. no eHMI. In terms of a universal design, this was true for all age groups. As vehicle type had a significant effect on the pedestrians’ feelings of safety and their perceived affective valence in interaction, eHMI might have an especially beneficial effect when interacting as a pedestrian with a large vehicle.
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References
Schieben, A., Wilbrink, M., Kettwich, C., Madigan, R., Louw, T., Merat, N.: Designing the interaction of automated vehicles with other traffic participants: design considerations based on human needs and expectations. Cogn. Technol. Work 21(1), 69–85 (2018). https://doi.org/10.1007/s10111-018-0521-z
Dey, D., et al.: Taming the eHMI jungle: a classification taxonomy to guide, compare, and assess the design principles of automated vehicles’ external human-machine interfaces. Transp. Res. Interdiscip. Perspect. 7, 100174 (2020). https://doi.org/10.1016/j.trip.2020.100174
Rasouli, A., Tsotsos, J.K.: Autonomous vehicles that interact with pedestrians: a survey of theory and practice. IEEE Trans. Intell. Transp. Syst. 21(3), 900–918 (2020). https://doi.org/10.1109/TITS.2019.2901817
Lau, M., Jipp, M., Oehl, M.: One solution fits all? Evaluating different communication strategies of a light-based external human-machine interface for differently sized automated vehicles from a pedestrian’s perspective. Accid. Anal. Prev. 171, 106641 (2022). https://doi.org/10.1016/j.aap.2022.106641
Wilbrink, M., Lau, M., Illgner, J., Schieben, A., Oehl, M.: Impact of external human-machine interface communication strategies of automated vehicles on pedestrians’ crossing decisions and behaviors in an urban environment. Sustainability 13(15), 8396 (2021). https://doi.org/10.3390/su13158396
Franke, T., Attig, C., Wessel, D.: A personal resource for technology interaction: development and validation of the affinity for technology interaction (ATI) scale. Int. J. Hum.-Comput. Interact. 35(6), 456–467 (2019). https://doi.org/10.1080/10447318.2018.1456150
Bradley, M.M., Lang, P.J.: Measuring emotion: the self-assessment manikin and the semantic differential. J. Behav. Ther. Exp. Psychiatry 25(1), 49–59 (1994). https://doi.org/10.1016/0005-7916(94)90063-9
Field, A.: Discovering Statistics Using SPSS, 3rd edn. Sage Publications, London (2009)
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This research was funded by the German Federal Ministry for Economic Affairs and Climate Action within the project @CITY: Automated Cars and Intelligent Traffic in the City, grant number 19A17015B. The authors are solely responsible for the content.
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Oehl, M., Lau, M., Gehreke, L., Wilbrink, M. (2022). Towards a Universal Explicit Communication Design of External Human-Machine Interfaces (eHMI) for Differently Sized Highly Automated Vehicles Evaluated by Different Pedestrian Age Groups. In: Stephanidis, C., Antona, M., Ntoa, S., Salvendy, G. (eds) HCI International 2022 – Late Breaking Posters. HCII 2022. Communications in Computer and Information Science, vol 1655. Springer, Cham. https://doi.org/10.1007/978-3-031-19682-9_50
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