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Haptic Rendering Technology for Touchable Video  

Lee, Hwan-Mun (인천대학교 컴퓨터공학)
Kim, Ki-Kwon (인천대학교 컴퓨터공학)
Sung, Mee-Young (인천대학교 컴퓨터공학)
Publication Information
Abstract
We propose a haptic rendering technology for touchable video. Our touchable video technique allows users for feeling the sense of touch while probing directly on 2D objects in video scenes or manipulating 3D objects brought out from video scenes using haptic devices. In our technique, a server sends video and haptic data as well as the information of 3D model objects. The clients receive video and haptic data from the server and render 3D models. A video scene is divided into small grids, and each cell has its tactile information which corresponds to a specific combination of four attributes: stiffness, damping, static friction, and dynamic friction. Users can feel the sense of touch when they touch directly cells of a scene using a haptic device. Users can also examine objects by touching or manipulating them after bringing out the corresponding 3D objects from the screen. Our touchable video technique proposed in this paper can lead us to feel maximum satisfaction the haptic-audio-vidual effects directly on the video scenes of movies or home-shopping video contents.
Keywords
Haptics; Touch; Video; Virtual Reality; Realistic Media; Multimedia;
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  • Reference
1 http://www.sensable.com/products-openhaptics-toolkit.htm.
2 V. Hayward and O. Astley, "Performance Measures for Haptic Interfaces," Robotics Research: 7th Int'l Symposium, Springer Verlag,, pp. 195-207, 1996.
3 Emanuele Ruffaldi, Dan Morris, Timothy Edmunds, Federico Barbagli, Dinesh K. Pai "Standardized Evaluation of Haptic Rendering Systems," Proceedings of the Symposium on Haptic Interfaces for Virtual Enviro-nment and Teleoperator Systems Vol.0, 2006.
4 Mark, W., Randolph, S., Finch, M., Verth, J. V., Taylor R. M., "Adding force feedback to graphics systems: Issues and solutions,". SIGGRAPH 96 Conference Proceedings, pp. 447-452, 1996.
5 http://www.vreaIities.com/cybergrasp.html
6 http//www.vrealities.com/cybertouch.html
7 W. Pugh and D. Wonnacott, "An Exact Method for Analysis of Value-Based Array Data Dependences," Proceedings Sixth Ann. Workshop Programming Languages and Compilers for Parallel Computing, pp.546-66, 1993.
8 호요성 and 김성열, "다차원 실감 미디어와 실감 방송 기술의 이해" 방송과 기술 Vol.108, pp. 90-97, 2004.
9 http://www.naver.com
10 http://www.evl.uic.edu/cavern/quanta/index.html
11 이범찬, 김종필 and 류제하, "역/촉감 햅틱 상호작용을 위한 K-Touch API 개발" 한국HCI학회 논문지, Vol.1, No.2, pp. 1-8, 2006.
12 M.C. Lin, Ming C. Lin and D. Manocha, "Collision and Proximity Queries," Handbook of Discrete and Computational Geometry, 2003.
13 Mee Young Sung, Kyung Koo Jun, Dongju Ji, Hwanmun Lee, Kikwon Kim, "Touchable Video and Tactile Audio," 2009 11th IEEE International Symposium on Multimedia, pp. 425-431, 2009
14 Jongeun Cha., Jeha Ryu., Seungjun Kim., Byungha Ahn., "A Haptically Enhanced Broadcasting System," Proceedings of the First Joint Eurohaptics Conference and Symposium on Haptic lnterfaces for Virtual Environment and Teleoperator Systems, pp.515-516, 2005.
15 F. Tasai, "On the Damping Force and Added Mass of Ships Heaving and Pitching," Research Institute for Applied Mechanics, Vol.VII, 1960.
16 서용원, 이범찬, 차종은, 김종필, 류제하, "촉감 모델링 및 편집 툴 개발," HCI2007 학술대회, 1권, pp.373-378, 2007.
17 C. Cruz-Neira, D. Sandin, and T. A. DeFanti. "Virtual Reality : The Design and Implementation of the CAVE," 93 Computer Graphics Conference, pp. 135-142, 1993.
18 V. Hayward and B. Armstrong, "A New Computational Model of Friction Applied to Haptic Rendering," Experimental Robotics VI, Vol.250, pp. 403-412, 2000.   DOI
19 http://www.opengl.org/
20 Z.L. Cai, J. Dill, and S. Payandeh, "Haptic Rendering: Practical Modeling and Collision Detection," Proceedings of the ASME Virtual Environment and Teleoperator System symposium, pp. 81-86, 1999.
21 I2S. J. Bennison and B. R. Lawn, "Role of Interfacial Grain-Bridging Sliding Friction in the Crack-Resistance and Strength Properties of Nontransfoming Ceramics," Acfu Metall., pp.2659-2671, 1989.
22 http://www.sensable.com/products-claytools-system.htm
23 H.B. Morgenbesser and M.A. Srinivasan, "Force Shading for Haptic Perception," Proceedings ASME Dynamic Systems and Control Division, vol.58, pp407-412, 1996.
24 U.Gudukbay, B.Ozguc and Y.Tokad, "A Spring Force Formulation For Elastically Deformable Models," Computer & Graphics, vol.21(3), pp.335-346, 1997.   DOI   ScienceOn
25 http://home.novint.com/
26 http://www.sensable.com/haptic-phantomomni.htm
27 http://www.sensable.com/products-freeform-systems.htm