Virtual space construction based on contact constraints using robot vision technology for 3D graphics applications

Naoto Nakamura, Yoshiaki Akazawa, Shigeru Takano, Yoshihiro Okada

研究成果: 著書/レポートタイプへの貢献会議での発言

1 引用 (Scopus)

抄録

This paper discusses about an automatic 3D scene generation system. Recently 3D graphics applications has become in great demand in various fields, especially in the video game industry year by year. The development of 3D graphics applications is still not easy and needs much time. Many tools or development systems for 3D graphics applications have been proposed so far. Even using such a development system, we have to prepare 3D scenes by manually laying out various 3D objects using a mouse device on a computer screen when developing 3D graphics applications. It also takes much time. We need any tool or system that can automatically generates 3D scenes. The authors have already proposed an automatic 3D scene generation system based on contact constraints. The contact constraints among 3D objects are defined as semantic database records by manually. It is useful to generate such semantic database records automatically from the information about layouts of real objects in the real world. So, this paper discusses about the usability of the robot vision technology to automatically generate such semantic database records.

元の言語英語
ホスト出版物のタイトル16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN
ページ469-474
ページ数6
DOI
出版物ステータス出版済み - 12 1 2007
イベント16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN - Jeju, 大韓民国
継続期間: 8 26 20078 29 2007

出版物シリーズ

名前Proceedings - IEEE International Workshop on Robot and Human Interactive Communication

その他

その他16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN
大韓民国
Jeju
期間8/26/078/29/07

Fingerprint

Computer vision
Semantics
Industry

All Science Journal Classification (ASJC) codes

  • Engineering(all)

これを引用

Nakamura, N., Akazawa, Y., Takano, S., & Okada, Y. (2007). Virtual space construction based on contact constraints using robot vision technology for 3D graphics applications. : 16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN (pp. 469-474). [4415129] (Proceedings - IEEE International Workshop on Robot and Human Interactive Communication). https://doi.org/10.1109/ROMAN.2007.4415129

Virtual space construction based on contact constraints using robot vision technology for 3D graphics applications. / Nakamura, Naoto; Akazawa, Yoshiaki; Takano, Shigeru; Okada, Yoshihiro.

16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN. 2007. p. 469-474 4415129 (Proceedings - IEEE International Workshop on Robot and Human Interactive Communication).

研究成果: 著書/レポートタイプへの貢献会議での発言

Nakamura, N, Akazawa, Y, Takano, S & Okada, Y 2007, Virtual space construction based on contact constraints using robot vision technology for 3D graphics applications. : 16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN., 4415129, Proceedings - IEEE International Workshop on Robot and Human Interactive Communication, pp. 469-474, 16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN, Jeju, 大韓民国, 8/26/07. https://doi.org/10.1109/ROMAN.2007.4415129
Nakamura N, Akazawa Y, Takano S, Okada Y. Virtual space construction based on contact constraints using robot vision technology for 3D graphics applications. : 16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN. 2007. p. 469-474. 4415129. (Proceedings - IEEE International Workshop on Robot and Human Interactive Communication). https://doi.org/10.1109/ROMAN.2007.4415129
Nakamura, Naoto ; Akazawa, Yoshiaki ; Takano, Shigeru ; Okada, Yoshihiro. / Virtual space construction based on contact constraints using robot vision technology for 3D graphics applications. 16th IEEE International Conference on Robot and Human Interactive Communication, RO-MAN. 2007. pp. 469-474 (Proceedings - IEEE International Workshop on Robot and Human Interactive Communication).
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