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Articles

A Wizard-of-Oz experimental approach to study the human factors of automated vehicles: Platform and methods evaluation

ORCID Icon, , , ORCID Icon, & ORCID Icon
Pages S140-S144 | Received 06 Mar 2020, Accepted 10 Aug 2020, Published online: 28 Aug 2020

References

  • Du N , Zhou F , Pulver E , Tilbury DM , Robert LP , Pradhan AK , Yang XJ. 2020. Examining the effects of emotional valence and arousal on takeover performance in conditionally automated driving. Transp Res Part C Emerg Technol. 112:78–87. doi:10.1016/j.trc.2020.01.006
  • Eriksson A , Banks VA , Stanton NA. 2017. Transition to manual: comparing simulator with on-road control transitions. Accid Anal Prev. 102:227–234. doi:10.1016/j.aap.2017.03.011
  • Gould JD , Conti J , Hovanyecz T. 1983. Composing letters with a simulated listening typewriter. Commun Acm. 26(4):295–308. doi:10.1145/2163.358100
  • Green P , Wei-Haas L. 1985. The rapid development of user interfaces: Experience with the Wizard of Oz method. Proc Hum Factors Soc Annu Meeting. 29(5):470–474. doi:10.1177/154193128502900515
  • Hancock PA. 2019. Some pitfalls in the promises of automated and autonomous vehicles. Ergonomics. 62(4):479–495. doi:10.1080/00140139.2018.1498136
  • Hart SG. 2006. NASA-task load index (NASA-TLX); 20 years later. Proc Hum Factors Ergon Soc Annu Meeting. 50(9):904–908. doi:10.1177/154193120605000909
  • Jarosch O , Paradies S , Feiner D , Bengler K. 2019. Effects of non-driving related tasks in prolonged conditional automated driving–A Wizard of Oz on-road approach in real traffic environment. Transp Res Part F: Traffic Psychol Behav. 65:292–305. doi:10.1016/j.trf.2019.07.023
  • Jian JY , Bisantz AM , Drury CG. 2000. Foundations for an empirically determined scale of trust in automated systems. Int J Cognit Ergon. 4(1):53–71. doi:10.1207/S15327566IJCE0401_04
  • Kidd DG , Cicchino JB , Reagan IJ , Kerfoot LB. 2017. Driver trust in five driver assistance technologies following real-world use in four production vehicles. Traffic Inj Prev. 18(sup1):S44–S50. doi:10.1080/15389588.2017.1297532
  • Kyriakidis M , de Winter JCF , Stanton N , Bellet T , van Arem B , Brookhuis K , Martens MH , Bengler K , Andersson J , Merat N , et al. 2019. A human factors perspective on automated driving. Theor Issues Ergon Sci. 20(3):223–249. doi:10.1080/1463922X.2017.1293187
  • Lee JD , Moray N. 1994. Trust, self-confidence, and operators' adaptation to automation. Int J Hum Comput Stud. 40(1):153–184. doi:10.1006/ijhc.1994.1007
  • Mok BK-J , Sirkin D , Sibi S , Miller DB , Ju W. 2015. Understanding driver-automated vehicle interactions through Wizard of Oz design improvisation. Proceedings of the Eighth International Driving Symposium on Human Factors in Driver Assessment, Training and Vehicle Design; June 2015; Salt Lake City, Utah. p. 22–25.
  • Molnar LJ , Ryan LH , Pradhan AK , Eby DW , Louis RMS , Zakrajsek JS. 2018. Understanding trust and acceptance of automated vehicles: an exploratory simulator study of transfer of control between automated and manual driving. Transp Res Part F: Traffic Psychol Behav. 58:319–328. doi:10.1016/j.trf.2018.06.004
  • Müller AI , Weinbeer V , Bengler K. 2019. Using the wizard of Oz paradigm to prototype automated vehicles: methodological challenges. Proceedings of the 11th International Conference on Automotive User Interfaces and Interactive Vehicular Applications: Adjunct Proceedings. p. 181–186.
  • Ono S , Sasaki H , Kumon H , Fuwamoto Y , Kondo S , Narumi T , Tanikawa T , Hirose M. 2019. Improvement of driver active interventions during automated driving by displaying trajectory pointers—A driving simulator study. Traffic Inj Prev. 20(sup1):S152–S156. doi:10.1080/15389588.2019.1610170
  • Realtime Technologies . 2020. Product Catalog. [accessed June 5, 2020]. https://cdn.faac.com/wp-content/uploads/2017/12/Reatime-Technologies-Product-Catalog.pdf.
  • Rudin-Brown CM , Parker HA. 2004. Behavioural adaptation to adaptive cruise control (ACC): implications for preventive strategies. Transp Res Part F: Traffic Psychol Behav. 7(2):59–76. doi:10.1016/j.trf.2004.02.001
  • SAE . 2018. Taxonomy and definitions for terms related to driving automation systems for on-road motor vehicles. SAE International: Warrendale, PA, USA.
  • Seppelt BD , Victor TW. 2016. Potential solutions to human factors challenges in road vehicle automation. In: Meyer G, Beiker S, editors. Road vehicle automation 3. Lecture notes in mobility. Cham (Switzerland): Springer. doi:10.1007/978-3-319-40503-2_11
  • USDOT . 2018. Preparing for the future of transportation: automated vehicles 3.0. [accessed 2020 Aug 17]. https://www.transportation.gov/av/3.

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