Blinded windows and empty driver seats: The effects of automated vehicle characteristics on cyclists’ decision‐making
629
Transportation engineering
TA1001-1280
OA-Fund TU Delft
Electronic computers. Computer science
0502 economics and business
05 social sciences
QA75.5-76.95
16. Peace & justice
DOI:
10.1049/itr2.12235
Publication Date:
2022-10-11T04:40:43Z
AUTHORS (5)
ABSTRACT
AbstractAutomated vehicles (AVs) may feature blinded (i.e. blacked‐out) windows and external human–machine interfaces (eHMIs), and the driver may be inattentive or absent, but how these features affect cyclists is unknown. In a crowdsourcing study, participants viewed images of approaching vehicles from a cyclist's perspective and decided whether to brake. The images depicted different combinations of traditional vehicles versus AVs, eHMI presence, vehicle approach direction, driver visibility/window‐blinding, visual complexity of the surroundings, and distance to the cyclist (urgency). The results showed that the eHMI and urgency level had a strong impact on crossing decisions, whereas visual complexity had no significant influence. Blinded windows caused participants to brake for the traditional vehicle. A second crowdsourcing experiment aimed to clarify the findings of Experiment 1 by also requiring participants to detect the vehicle features. It was found that the eHMI ‘GO’ and blinded windows yielded high detection rates and that driver eye contact caused participants to continue pedalling. To conclude, blinded windows increase the probability that cyclists brake, and driver eye contact stimulates cyclists to continue cycling. Our findings, which were obtained with large international samples, may help elucidate how AVs (in which the driver may not be visible) affect cyclists’ behaviour.
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