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Virtual Reality as a Tool for Computer Aided Safety Engineering

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In recent years the use of virtual reality (VR) and augmented reality (AR) becomes more and more popular. The paper presents examples of virtual reality application in safety engineering, like safety training, different types of simulators, work place design, modelling of dangerous zones in manufacturing systems and testing of safety systems. The use of VR techniques seems to be particularly advantageous in situations where training under actual conditions is related to threats against human health and life. Therefore, training in virtual environments is often used in areas like firefighting, especially in the case of combating of internal fires.
Słowa kluczowe
Rocznik
Strony
115--125
Opis fizyczny
Bibliogr. 19 poz., il.
Twórcy
autor
  • National Research Institute, Central Institute for Labour Protection
Bibliografia
  • 1. Budziszewski, P., Grabowski, A., Milanowicz, M., and Jankowski, J. (2016). Workstations for people with disabilities: an example of a virtual reality approach. International Journal of Occupational Safety and Ergonomics, 22(3):367–373.
  • 2. Budziszewski, P., Grabowski, A., Milanowicz, M., Jankowski, J., and Dzwiarek, M. (2011). Designing a workplace for workers with motion disability with computer simulation and virtual reality techniques. International Journal on Disability and Human Development, 10(4):355–358.
  • 3. Dźwiarek, M. and Jankowski, J. (2011). A method for virtual modelling of dangeroushazard zones to support risk redaction by application of safety devices to the machinery and manufacturing systems. Production Engineering. Innovation & Technologies of the future. Chlebus, E.,(ed.)© Institute of Production Engeenering and Automation, Wrocław University of Technology, pages 15–26.
  • 4. Dzwiarek, M. and Luczak, A. (2008). Application prospects of the augmented reality technology for improving safety of machine operators. In Human Computer Interaction: New Developments. InTech.
  • 5. Dźwiarek, M., Saulewicz, A., and Kalwasiński, D. (2007). Investigation of appropriateness of the ve for training purposes using fork-lift vr simulator. In Proceedings of HCI International, pages 815–819.
  • 6. Dźwiarek, M., Strawiński T., and Jankowski, J. (2012). Usability analysis of the virtual reality techniques to risk assessment made in the course of machinery design process/badania użyteczności technik rzeczywistości wirtualnej do prowadzenia oceny ryzyka przy projektowaniu maszyn. Journal of KONBiN, 23(1):121–132.
  • 7. Grabowski, A. (2015). Sense of touch in training tasks demanding high precision and short time of execution. International Journal of Human-Computer Interaction, 31(12):861–868.
  • 8. Grabowski, A. and Jankowski, J. (2015). Virtual reality-based pilot training for underground coal miners. Safety science, 72:310–314.
  • 9. Grabowski, A., Jankowski, J., Dźwiarek, M., and Kosiński, R. A. (2014). Stereovision safety system for identifying workers’ presence: results of tests. International journal of occupational safety and ergonomics, 20(1):103–109.
  • 10. Grabowski, A., Kosiński, R., and Dźwiarek, M. (2011). Vision safety system based on cellular neural networks. Machine Vision and Applications, 22(3):581–590.
  • 11. Jankowski, J. (2013). Interactive methods of exploring virtual environments using immersive virtual reality technologies. Mechanik, 86(7CD):255–262.
  • 12. Jankowski, J. (2015a). Study of redirected method parameter’s used in the exploration interface of the virtual environment with large dimensions. Mechanik, (7CD).
  • 13. Jankowski, J. (2015b). Vans’s driving simulator equipped with motion platform – concept of research stand. Mechanik, (7CD).
  • 14. Jankowski, J. and Grabowski, A. (2015). Usability evaluation of vr interface for mobile robot teleoperation. International Journal of Human-Computer Interaction, 31(12):882–889.
  • 15. Jankowski, J. andWelenc, H. (2016). Development of vans’s driving simulator equipped with a 6 dof motion platform. Mechanik, (7CD).
  • 16. Kalwasiński, D. (2015). Simulation of the sense of touch with the use of a simulator. Zeszyty Naukowe Politechniki Poznańskiej – Organizacja i Zarzadzanie, 65:31–42.
  • 17. Kalwasiński, D. (2016). The position for experimental research to simulate sense of touch. Mechanik, 89(7):718–720.
  • 18. Malińska, M., Zużewicz, K., Bugajska, J., and Grabowski, A. (2015). Heart rate variability (hrv) during virtual reality immersion. International Journal of Occupational Safety and Ergonomics, 21(1):47–54.
  • 19. Podgórski, D. (2010). The use of tacit knowledge in occupational safety and health management systems. International Journal of Occupational Safety and Ergonomics, 16(3):283–310.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4e5873fb-fb42-4e20-b12c-63e4d22e140c
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