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Application of 3D scanning for the creation of 3d models suitable for immersive virtual reality

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Finding a suitable method of 3D model creation for a specific task is becoming more important with the rapid spread of digitalization. This paper deals with the use of 3D scanning as a method of creating 3D models for immersive virtual reality applications. A methodology is presented that covers all the steps, from initial object selection to importing a scanned 3D model into a virtual reality environment. Various objects were selected and scanned to test this methodology and its utilization potential. Finally, the paper evaluates the potential utilization of this methodology for immersive virtual reality applications for education and various methods of industrial engineering.
Rocznik
Strony
12--18
Opis fizyczny
Bibliogr. 11 poz., il. kolor., fot.
Twórcy
autor
  • Department of Industrial Engineering, Faculty of Mechanical Engineering, University of Zilina, Univerzitna 1, 010 26, Zilina, Slovakia
  • Department of Industrial Engineering, Faculty of Mechanical Engineering, University of Zilina, Univerzitna 1, 010 26, Zilina, Slovakia
  • Department of Industrial Engineering, Faculty of Mechanical Engineering, University of Zilina, Univerzitna 1, 010 26, Zilina, Slovakia
Bibliografia
  • [1] Gregor M., Hodon R., Binasova V., Dulina L., Gaso M., Design of simulation-emulation system, MM Science Journal, pp. 2498–2502, 2018, doi: 10.17973/MMSJ.2018 10 201878.
  • [2] Grznár P., Mozol Š., Gregor M., Vavrík V., An optimization methodology for sustainable development of production lines, Zarządzanie Przedsiebiorstwem. Enterprise Management, 22, 4, 2–6, 2020, doi: 10.25961/ent.manag.22.04.01.
  • [3] Hořejší P., Polcar J., Rohlíková L., Digital factory and virtual reality: Teaching virtual reality principles with game engines, Virtual Learning, pp. 155–174, doi: 10.5772/65218.
  • [4] Krajcovic M., Furmannova B., Grznar P., Furmann R., Plinta D., Svitek R., Antoniuk I., System of parametric modelling and assessing the production staff utilisation as a basis for aggregate production planning, Appl. Sci., 11, 9347, 2021.
  • [5] Krajcovic M., Gabajova G., Matys M., Grznar P., Dulina L., Kohar R., 3D interactive learning environment as a tool for knowledge transfer and retention, Sustainability, 13, 7916, 2021.
  • [6] Matter And Form, Matter and Form 3D scanner Tech Specs, 2016 [online], available: https://matterandform.net/scanner (8 March 2023).
  • [7] Matter And Form, Matter and Form 3D scanner User Manual, 2016 [online], available: https://matterandform.net/downloads/Matter-and-Form 3D-Scanner User-Manual.pdf (8 March 2023).
  • [8] Matys M., Krajcovic M., Gabajova G., Creating 3D models of transportation vehicles using photogrammetry, Transportation Research Procedia, 14th International Scientific Conference on Sustainable, Modern and Safe Transport, Vysok´e Tatry, pp. 584–591, 2021, doi: 10.1016/j.trpro.2021.07.025.
  • [9] Pekarčíková M., Trebuňa P., Kliment M., Rosocha L., Material flow optimization through E-Kanban system simulation, International Journal of Simulation Modelling, 19, 2, 243–254, 2020, doi: 10.2507/ijsimm19-2-513.
  • [10] Stefanik A., Grznar P., Micieta B., Tools for continual process improvement – Simulation and benchmarking, Annals of DAAAM for 2003 & Proceedings of the 14th International DAAAM Symposium, Sarajevo, pp. 443–444, 2003.
  • [11] Vavrík V., Gregor M., Grznár P., Mozol Š., Schickerle M., Ďurica L., Marschall M., Bielik T., Design of manufacturing lines using the reconfigurability principle, Mathematics, 8, 8, 1227, 2020, doi: 10.3390/math8081227.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f42d4674-d29c-4f30-9bcc-a6943e449548
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