1. Abdi, L., Abdallah, F.B., Meddeb, A.: In-vehicle augmented reality traffic information system: a new type of communication between driver and vehicle. Procedia Comput. Sci. https://www.researchgate.net/profile/Lotfi_Abdi/publication/291013097_In-Vehicle_Augmented_Reality_Traffic_Information_System_A_New_Type_of_Communication_Between_Driver_and_Vehicle/links/56e6da7908ae9e803e7bee6d.pdf (2015)
2. Agarwal, R.: Validation of a pedestrian simulator for interaction between pedestrians and autonomous vehicles. In: de Winter Joost, H.R. (ed.) Master thesis, Delft University of Technology. https://repository.tudelft.nl/islandora/object/uuid%3Ae1581f7c-aa7e-4606-991b-bbaf7940c79c (2019)
3. Alvarez, I., Rumbel, L., Adams, R.: Skyline: a rapid prototyping driving simulator for user experience. In: Proceedings of the 7th International Conference on Automotive User Interfaces and Interactive Vehicular Applications, pp. 101–108 (2015). https://doi.org/10.1145/2799250.2799290
4. Azuma, R.T.: A survey of augmented reality. Presence: Teleoper. Virtual Environ. 6(4), 355–385 (1997). https://doi.org/10.1162/pres.1997.6.4.355
5. Barić, D., Havârneanu, G.M., Măirean, C.: Attitudes of learner drivers toward safety at level crossings: Do they change after a 360° video-based educational intervention? Transport. Res. Part F Traffic Psychol. Behav. 69, 335–348 (2020). https://doi.org/10.1016/j.trf.2020.01.018