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Webized Tangible Space

웹-기반 Tangible Space

  • Ko, Heedong (Center for Imaging Media Research, Korea Institute of Science and Technology) ;
  • Seo, Daeil (Center for Imaging Media Research, Korea Institute of Science and Technology) ;
  • Yoo, Byounghyun (Center for Imaging Media Research, Korea Institute of Science and Technology)
  • 고희동 (한국과학기술연구원 영상미디어연구단) ;
  • 서대일 (한국과학기술연구원 영상미디어연구단) ;
  • 유병현 (한국과학기술연구원 영상미디어연구단)
  • Received : 2017.06.24
  • Accepted : 2017.07.06
  • Published : 2017.07.14

Abstract

Tangible Space is a new emerging interaction space with mobile AR/VR computing and ubiquitous computing environment with IoT. Tangible Space spans from a physical environment augmented with virtual entities to immersive virtual environments mirroring the physical environment. Interacting with Tangible Space is logged just like interacting with the Web. By webizing Tangible Space, we can gain persistence as a by-product so that human life experience in the physical environment can be logged and shared just like the information being created and shared in the current Web. The result is a powerful future direction of the web from a World Wide Web of Information to World Wide Web of Life experiences.

사물인터넷 기반의 유비쿼터스 컴퓨팅, AR/ VR등 실감 컴퓨팅과 실제 물리 공간의 이음새 없는 하나의 인터랙션 공간을 Tangible Space라고 명하고자 한다. 이 공간에서는 물리 공간에 가상의 물체나 객체가 증강되고 몰입형 가상공간에 물리공간이 투영되고 증강된 형태로 인터랙션의 확장이 가능하다. 인터넷과 웹이 컴퓨팅 환경을 하나의 공유 인터랙션 공간으로 이어주면서 물리공간에서의 우리 삶 자체가 로깅되고 공유되는 시대에 살고 있다. 본 논문에서는 이러한 새로운 인터랙션 공간을 기존 웹의 표현 기법과 응용 소프트웨어 개발 환경을 그대로 활용할 수 있는 Tangible Space의 웨바아징 방법론을 제안하고 개발 구현 사례를 소개하겠다. 앞으로 정보 중심의 웹에서 우리 경험을 지속적이고 연속적으로 담고 공유하는 웹으로 발전할 것으로 기대한다.

Keywords

References

  1. H. Ko and H.-g. Kim, "Tangible web: Webized tangible space," In. KISToday, Vol. 1, No. 2, 2009, pp. 21-23.
  2. H. Ko, B. Yoo and D. Seo, "Webizing methodology for tangible space," In proceedings of Korea Computer Congress, Jeju, Korea, Jun 18-20, 2017, pp. 1328-1330.
  3. X3D, "ISO/IEC 14772-1:1997 and ISO/IEC 14772-2:2004 virtual reality modeling language (VRML)," 1997.
  4. X3D, "ISO/IEC 19775:2004 extensible 3D (X3D)," 2004.
  5. W3C Community Group, "Declarative 3D for the web architecture," 2013, https://www.w3.org/community/declarative3d. [Accessed Mar 26 2015].
  6. M. Lechner and M. Tripp, "ARML - an augmented reality standard," In proceedings of Mobile Augmented Reality Summit, Mobile World Congress, Barcelona, Spain, Feb 15-18, 2010,
  7. M. Lechner, "OGC augmented reality markup language 2.0 (ARML 2.0)," 2013.
  8. W3C Consortium POI Working Group, "Points of interest core," 2011.
  9. S. Ahn, H. Ko and B. Yoo, "Webizing mobile augmented reality content," In. New Review of Hypermedia and Multimedia, Vol. 20, No. 1, 2014, pp. 79-100. https://doi.org/10.1080/13614568.2013.857727
  10. D. Seo, B. Yoo and H. Ko, "Webized 3D experience by HTML5 annotation in 3D web," In proceedings of International Conference on 3D Web Technology, Heraklion, Crete, Greece, Jun 18-21, 2015, pp. 73-80.
  11. M. Weiser, "The computer for the 21st century," In. ACM SIGMOBILE Mobile Computing and Communications Review, Vol. 3, No. 3, 1999, pp. 3-11. https://doi.org/10.1145/329124.329126
  12. J. Behr, P. Eschler, Y. Jung and M. Zollner, "X3DOM: A DOM-based HTML5/X3D integration model," In proceedings of International Conference on 3D Web Technology, Darmstadt, Germany, Jun 16-17, 2009, pp. 127-135.
  13. L. Sauermann and R. Cyganiak, "Cool URIs for the semantic web," 2008.
  14. H. Ko and K. Lee, "Automatic assembling procedure generation from mating conditions," In. Computer-Aided Design, Vol. 19, No. 1, 1987, pp. 3-10. https://doi.org/10.1016/0010-4485(87)90146-1
  15. S. Irawati, S. Ahn, J. Kim and H. Ko, "VARU framework: Enabling rapid prototyping of VR, AR and ubiquitous applications," In proceedings of IEEE Virtual Reality Conference, Reno, NE, USA, Mar 8-12, 2008, pp. 201-208.
  16. D. Seo, D. Kim, B. Yoo and H. Ko, "Webizing human interface devices for virtual reality," In proceedings of ACM Conference on Virtual Reality Software and Technology, Munich, Germany, Nov 2-4, 2016, pp. 369-371.
  17. S. Ahn, "An architecture for mixed reality systems," University of Science and Technology, 2014.
  18. D. Seo, B. Yoo and H. Ko, "Webizing mixed reality for cooperative augmentation of life experience," In proceedings of ACM Conference on Computer Supported Cooperative Work and Social Computing Companion, San Francisco, CA, USA, Feb 27-Mar 3, 2016, pp. 401-404.
  19. D. Seo, J. Lee and B. Yoo, "Webizing virtual reality based interactive interior design system," In. Communications in Computer and Information Science, Vol. 714, 2017, pp. 68-72.
  20. D. Seo, D. Kim, B. Yoo and H. Ko, "Webized augmented reality mashup for legacy things," In proceedings of IEEE International Conference on Consumer Electronics, Las Vegas, NV, USA, Jan 8-10, 2017, pp. 15-16.
  21. D. Seo, B. Yoo, J. Choi and H. Ko, "Webizing 3D contents for super multiview autostereoscopic displays with varying display profiles," In proceedings of International Conference on Web3D Technology, Anaheim, CA, USA, Jul 22-24, 2016, pp. 155-163.
  22. D. Seo, Y. Lee and B. Yoo, "Webizing interactive CAD review system using super multiview autostereoscopic displays," In. Communications in Computer and Information Science, Vol. 714, 2017, pp. 62-67.
  23. Mozilla, "WebVR," 2013, https://webvr.info/. [Accessed Jun 23 2017].
  24. Mozilla, "A-frame," 2015, https://aframe.io/. [Accessed Jun 23 2017].