A Production of Virtual Reality Technology Learning Materials: Driving for Preparator of Practical Driving License Test

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Komsan Sukwinya

Abstract

        This research aims to 1) produce virtual reality technology learning materials of driving test for practical driving license test-takers and 2) to study the samples’ satisfaction on virtual reality technology learning materials. The samples are 18-year-old and older eligible for a practical driving license test to get the benefits of the use of virtual reality technology at driving training as well as training in real situations at Rajamangala University of Technology Tawan-Ok : Chakrabongse Bhuvanarth Campus Bangkok. There are 30 people in the trial, 15 are drivers and possess a driving license, and the remaining 15 are potential test-takers for a driving license test. There are four steps in the process: 1) study the principles and criteria of a practical driving test, 2) design and develop virtual reality technology media using developed and proposed 3D driving simulation software, 3) study the results of the trials; and 4) analyze and evaluate the samples’ behaviors. The overall samples’ satisfaction on virtual reality technology learning materials was deemed ‘very satisfied’ with a mean of 4.21, and a standard deviation of 0.71. Also, it was found that age differences affected the satisfaction level of virtual reality technology, 20-30 years old were more satisfied than 31- 50 years old adults. Virtual Reality Sickness was common to everyone according to age; yet in older samples, they were quicker to become lightheaded after a prolonged use of the technology. It is hoped that if these samples could drive in real-world situations, they could also drive in a virtual world, except for those who had problems with Virtual Reality Sickness. For aspiring license test-takers, it is but a rule of thumb that they study and practice driving safely before they do in a real situation. Therefore, this developed Virtual Reality technology learning material is hoped to assist aspirants in their endeavors; 15-minute maximum use is also recommended to minimize VR sickness.


Keywords: learning materials, virtual reality, virtual reality sickness, driving license, car driving  simulation

References

Abrar, T. (2016). Integration of Oculus Rift based Virtual Reality with Unity 3D in a Driving Simulator. Retrieved from https://doi.org: 10.13140/RG.2.1.5167.0648
Aykent, B., Yang, Z., Merienne, F., & Kemeny, A.(2014). Simulation Sickness Comparison between a Limited Field of View Virtual Reality Head Mounted Display (Oculus) and a Medium Range Field of View Static Ecological Driving Simulator (ECO2). Driving Simulation Conference 2014, 31(1), 31-37.
Bailey, S. K., Johnson, C. I., Chroeder, B. L. S., & Marraffino, M. D. (2017). Using Virtual Reality for Training Maintenance Procedures. Interservice/Industry Training, Simulation, and Education Conference (I/ITSEC) 2017, 17108, 1-11.
Chang, E., Kim, H. T., & Yoo, B. (2020).Virtual Reality Sickness : A Review of Causes and Measurements. International Journal of Human-Computer Interaction, 36, 1658-1682. https://doi.org/10.1080/
10447318.2020.1778351
Cipresso, P., Giglioli, I. A. C., Raya, M. A., & Riva, G. (2018). The Past, Present, and Future of Virtual and Augmented Reality Research : A Network and Cluster Analysis of the Literature. Frontiers in Psychology. Retrieved from https://doi.org/10.3389/fpsyg.2018.02086
Freeman, D., Reeve, S., Robinson, A., Ehlers, A., & Spanlang, B. (2017). Virtual Reality in the Assessment, Understanding, and Treatment of Mental Health Disorders. Psychological Medicine, 47, 2393–2400. Retrieved from https://doi.org/10.1017/S00332917 1700040X
Galvan, Q., Lin, I., Christie, M., & Li, T. (2018). One Man Movie : A VR Authoring Tool for Film Previsualisation. Retrieved from https://doi: 10.1145/3214822.3214831
Gerschütz, B., Fechter, M., Schleich, B., & Wartzack, S. (2019). A Review of Requirements and Approaches for Realistic Visual Perception in Virtual Reality. In Proceedings of the Design Society : International Conference on Engineering Design, Delft, The Netherlands, 5–8 August 2019 (pp. 1893–1902) Cambridge, UK: Cambridge University Press.
Hwang, S., & Ryu, J. (2010). The Haptic Steering Wheel : Vibro-tactile Base Navigation for the Driving Environment. Retrieved from https://doi.org/10.1109/PERCOMW.2010.5470517
Kanchanasamranwong, P. (2018). Driving License Exam Guide : Written and Practical Test for Drivers and Motorcyclists. Nonthaburi: IDC Premier.
Kitsiripaisarn, S. (2016). A Complete Guide for Drivers and Motorcyclists’ Driving License. Bangkok: MIS Publishing.
Krokos, E., Plaisant, C., & Varshney, A. (2019). Correction to : Virtual memory Palaces : immersion aids recall. Virtual Reality, 23, 17. Retrieved from https://doi.org/10.1007/s10055-018-0360-5
Kuang, Y., & Bai, X. (2018). The Research of Virtual Reality Scene Modeling based on Unity 3D. Retrieved from https://doi.org/10.1109/ ICCSE.2018.8468687
Lau, K. W., & Lee, P. Y. (2015). The Use of Virtual Reality for Creating Unusual Environmental Stimulation to Motivate Students to Explore Creative Ideas. Interactive Learning Environments, 23, 3–18. Retrieved from https://doi.org/10.1080/10494820.2012.745426
Lau, K. W., & Lee, P. Y. (2019). Exploring the Use of a Stereoscopic 360 Degree Learning Environment for Business Education. International Journal of Information and Education Technology, 9, 110–114. Retrieved from https://doi.org/10.18178/ijiet.2019.9.2.1183
Lu, D. (2016). Virtual Reality Sickness during Immersion : An Investigation of Potential Obstacles towards General Accessibility of VR Technology. Retrieved from http://www.diva-portal.org/
smash/record.jsf?pid=diva2%3A1129675&dswid=-9856
Oculus. (2020). Rendering to the Oculus Rift. Retrieved from https://developer.oculus.com/documentation/
native/pc/dg-render/?locale=zh_TW
Office of Transport and Traffic Policy and Planning : Office of Safety Planning. (2019). Ministry of Transport's Road Accident Situation Analysis Report of the year 2019. Ministry of Transport
Schulze, J. P., Hughes, C. E., Zhang, L., Edelstein, E., & Macagno, E. (2014). CaveCaD : A Tool for Architectural Design in immersive Virtual Environments. Retrieved from https://www.researchgate.
net/publication/262993464_CaveCAD_A_Tool_for_Architectural_Design_in_Immersive_Virtual_Environments
Slater, M., & Sanchez-Vives, M. V. (2016). Enhancing our lives with Immersive Virtual Reality. Front Robot. AI3:74. Retrieved from https://doi.org/10.3389/frobt.2016.00074
Smith, J. W., & Salmon, J. L. (2017). Development and Analysis of Virtual Reality Technician-Training Platform and Methods. Retrieved from https://www.semanticscholar.org/paper/Development-and-Analysis-of-Virtual-Reality-and-Smith-Salmon/7f1fba32eb8153bad2eeb808808b45d23ad6a511
Tang, Y. M. & Ho, H. L. (2019). 3D Modeling and Computer Graphics in Virtual Reality, Mixed Reality and Three-Dimensional Computer Graphics, Branislav Sobota and Dragan Cvetković, IntechOpen. Retrieved from https://doi.org/10.5772/intechopen.91443.
Unity. (2020). Reflection Probe. Retrieved from https://docs.unity3d.com/2020.1/Documentation/
Manual/class-ReflectionProbe.html
Walch, M., Hock, P., Frommel, J., Dobbelstein, D., Rogers, K., Weber, M., & Schussel, F. (2017). Evaluating VR Driving Simulation from a Player Experience Perspective. Retrieved from https://doi.
org/10.1145/ 3027063.3053202

Section
Research Articles

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How to Cite
SUKWINYA, Komsan. A Production of Virtual Reality Technology Learning Materials: Driving for Preparator of Practical Driving License Test. Naresuan University Journal: Science and Technology (NUJST), [S.l.], v. 30, n. 1, p. 1-17, may 2021. ISSN 2539-553X. Available at: <https://www.journal.nu.ac.th/NUJST/article/view/Vol-30-No-1-2022-1-17>. Date accessed: 16 apr. 2024. doi: https://doi.org/10.14456/nujst.2022.1.