Implementation of Screen Archery Studio for Realistic Screen Sports Experiences

  • Authors

    • Green Bang
    • Youngik Kil
    • Sangwon Lee
    • Ilju Ko
    https://doi.org/10.14419/ijet.v7i3.24.22841
  • Virtual sports, Screen archery, Virtual archery shooter, Alternative experience, Studio for experience
  • Background/Objectives: The need for realistic indoor screen sports has increased due to environmental and social factors. This paper aims to develop a screen archery studio where the general public may enjoy archery, an elite sport.

    Methods/Statistical analysis: A studio for screen archery consists of a video output component, including a projector and screen, and a system recognition component, comprised of a VR archery shooter, IR camera, and NFC reader device. The VR archery shooter is a device that implements virtual reality in places where real arrows may not be used for safety reasons. The realistic studio for screen archery has an advantage in that it can provide dynamic game contents in a narrow space. The provided content has two modes: Olympic game mode and hunting mode.

    Findings: The studio in the proposed system provides elements that immerse players in the game as well as the experience of sports events that are not easily experienced in daily living. In particular, the recurve bow used in the VR archery shooter is the same equipment as is used in actual indoor archery fields or games to increase the feeling of realism.

    Improvements/Applications: Although the provided content is currently limited to Olympic and hunting modes only, more active screen archery content is in development, including moving archery targets, which are the goal of a future study. 

     

     

  • References

    1. [1] Pasch, M., Bianchi-Berthouze, N., van Dijk, B., &Nijholt, A. (2009). Movement-based sports video games: Investigating motivation and gaming experience. Entertainment Computing, 1(2), 49-61. Doi :https://doi.org/10.1016/j.entcom.2009.09.004

      [2] Bideau, B., Kulpa, R., Vignais, N., Brault, S., Multon, F., & Craig, C. (2010). Using virtual reality to analyze sports performance. IEEE Computer Graphics and Applications, 30(2), 14-21. Doi: https://doi.org/10.1109/MCG.2009.134

      [3] Göbel, S., Geiger, C., Heinze, C., &Marinos, D. (2010, May). Creating a virtual archery experience.In Proceedings of the International Conference on Advanced Visual Interfaces, (pp. 337-340).ACM. Doi :10.1145/1842993.1843056

      [4] Gray, R. (2002). Behavior of college baseball players in a virtual batting task. Journal of Experimental Psychology: Human Perception and Performance, 28(5), 1131-1148.

      [5] Nourrit, D., Delignières, D., Caillou, N., Deschamps, T., &Lauriot, B. (2003). On discontinuities in motor learning: A longitudinal study of complex skill acquisition on a ski-simulator. Journal of motor behavior, 35(2), 151-170. Doi :https://doi.org/10.1080/00222890309602130

      [6] Pan, Z., Xu, W., Huang, J., Zhang, M., & Shi, J. (2003). Easybowling: a small bowling machine based on virtual simulation. Computers & Graphics, 27(2), 231-238. Doi : https://doi.org/10.1016/S0097-8493(02)00280-7

      [7] Mueller, F. F., Edge, D., Vetere, F., Gibbs, M. R., Agamanolis, S., Bongers, B., & Sheridan, J. G. (2011, May). Designing sports: a framework for exertion games. In Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, (pp. 2651-2660).ACM. Doi : 10.1145/1978942.1979330

      [8] Park, K., & Lim, S. (2013). An indoor golf simulator for continuous golf games.Int J Smart Home, 7(3), 75-84.

      [9] Kenny, I. C., Wallace, E. S., Brown, D., & Otto, S. R. (2006). Validation of a full-body computer simulation of the golf drive for clubs of differing length.In The Engineering of Sport6, (pp. 11-16).Springer, New York, NY.Doi : https://doi.org/10.1007/978-0-387-46051-2_3

      [10] Ahn, S. H., Kang, K. B., Kim, E. J., Kim, S. J., Lee, J. W., & Song, C. G. (2006). Interactive 3D golf simulator. Lecture Notes in Computer Science.

      [11] Yang, J., Oh, K., &Ko, I. (2017). Interactive Experience Room Using Infrared Sensors and User's Poses. Journal of Information Processing Systems, 13(4).

      [12] Benes, B., & Millán, E. U. (2002). Virtual climbing plants competing for space. In Computer Animation, 2002. Proceedings of (pp. 33-42). IEEE. Doi : 10.1109/CA.2002.1017504

      [13] Liljedahl, M., Lindberg, S., & Berg, J. (2005, June). Digiwall: an interactive climbing wall. In Proceedings of the 2005 ACM SIGCHI International Conference on Advances in computer entertainment technology (pp. 225-228).ACM. Doi : 10.1145/1178477.1178513

      [14] Kim, J., Chung, D., &Ko, I. (2017). A climbing motion recognition method using anatomical information for screen climbing games. Human-centric Computing and Information Sciences, 7(1), 25.

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  • How to Cite

    Bang, G., Kil, Y., Lee, S., & Ko, I. (2018). Implementation of Screen Archery Studio for Realistic Screen Sports Experiences. International Journal of Engineering & Technology, 7(3.24), 680-684. https://doi.org/10.14419/ijet.v7i3.24.22841