“GroundFlow: Multiple Flows Feedback for Enhancing Immersive Experience on the Floor in the Wet Scenes” – ACM SIGGRAPH HISTORY ARCHIVES

“GroundFlow: Multiple Flows Feedback for Enhancing Immersive Experience on the Floor in the Wet Scenes”

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    GroundFlow: Multiple Flows Feedback for Enhancing Immersive Experience on the Floor in the Wet Scenes

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Description:


    We present GroundFlow, a water recirculation system that provides multiple flows feedback on the floor in immersive virtual reality. Our demonstration also implemented a virtual excursion that allows users to experience different water flows and their corresponding wet scenes.

References:


    [1]
    Seungwoo Je, Hyunseung Lim, Kongpyung Moon, Shan-Yuan Teng, Jas Brooks, Pedro Lopes, and Andrea Bianchi. 2021. Elevate: A Walkable Pin-Array for Large Shape-Changing Terrains. In Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems. 1–11.
    Digital Library
    Google Scholar
    [2]
    Hideki Koike, Yasushi Matoba, and Yoichi Takahashi. 2013. AquaTop display: interactive water surface for viewing and manipulating information in a bathroom. In Proceedings of the 2013 ACM international conference on Interactive tabletops and surfaces. 155–164.
    Digital Library
    Google Scholar
    [3]
    Denys JC Matthies, Thijs Roumen, Arjan Kuijper, and Bodo Urban. 2017. CapSoles: who is walking on what kind of floor?. In Proceedings of the 19th International Conference on Human-Computer Interaction with Mobile Devices and Services. 1–14.
    Digital Library
    Google Scholar
    [4]
    Glenn Pearson and Mark Weiser. 1988. Exploratory evaluation of a planar foot-operated cursor-positioning device. In Proceedings of the SIGCHI conference on Human factors in computing systems. 13–18.
    Digital Library
    Google Scholar
    [5]
    Dominik Schmidt, Rob Kovacs, Vikram Mehta, Udayan Umapathi, Sven Köhler, Lung-Pan Cheng, and Patrick Baudisch. 2015. Level-ups: Motorized stilts that simulate stair steps in virtual reality. In Proceedings of the 33rd Annual ACM Conference on Human Factors in Computing Systems. 2157–2160.
    Google Scholar
    [6]
    Shan-Yuan Teng, Cheng-Lung Lin, Chi-huan Chiang, Tzu-Sheng Kuo, Liwei Chan, Da-Yuan Huang, and Bing-Yu Chen. 2019. Tilepop: Tile-type pop-up prop for virtual reality. In Proceedings of the 32nd Annual ACM Symposium on User Interface Software and Technology. 639–649.
    Digital Library
    Google Scholar
    [7]
    Tae-Heon Yang, Hyungki Son, Sangkyu Byeon, Hyunjae Gil, Inwook Hwang, Gwanghyun Jo, Seungmoon Choi, Sang-Youn Kim, and Jin Ryong Kim. 2020. Magnetorheological Fluid Haptic Shoes for Walking in VR. IEEE Transactions on Haptics 14, 1 (2020), 83–94.
    Crossref
    Google Scholar
    [8]
    Tomohiro Yokota, Motohiro Ohtake, Yukihiro Nishimura, Toshiya Yui, Rico Uchikura, and Tomoko Hashida. 2015. Snow walking: motion-limiting device that reproduces the experience of walking in deep snow. In Proceedings of the 6th Augmented Human International Conference. 45–48.
    Digital Library
    Google Scholar


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