Dynamic Display of Ceramic Model Based on Virtual Reality Environment

被引:0
作者
Zhang, Tieli [1 ]
Zhao, Fang [2 ]
机构
[1] Nanhai Academy of Art, Haikou University of Economics, Hainan, Haikou
[2] Jiangxi Arts & Ceramics Technology Institute, Jiangxi, Jingdezhen
来源
Computer-Aided Design and Applications | 2024年 / 21卷 / S28期
关键词
CAD; Ceramic; Dynamic Display; Physical Engine; Virtual Reality;
D O I
10.14733/cadaps.2024.S28.69-82
中图分类号
学科分类号
摘要
In order to solve the problem of the complexity and the lack of visual intuitiveness of ceramic CAD modelling, a virtual reality ceramic CAD model dynamic display system based on a physical engine has been developed. The system aims to enable users to dynamically model and display ceramic CAD models intuitively and simply through hand-free interaction, without being limited by physical conditions. In terms of system structure design, a simple and uniform universal cylinder is used for modelling, and Gaussian functions are used to control and fine-tune the deformation of the CAD model, ensuring that the morphological changes of ceramics in the virtual environment are both natural and controllable. In terms of interactive design, this paper successfully realizes the intuitive operation of ceramic CAD models in the virtual environment by combining motion capture technology with virtual reality technology. While ensuring the dynamic controllability of ceramic deformation structures, it greatly enhances the realism and immersion of the experience of the dynamic display system for ceramic CAD models. By comparing experimental data, we have verified the stability and accuracy of the system during the dynamic display process of ceramic CAD models. © 2024 U-turn Press LLC.
引用
收藏
页码:69 / 82
页数:13
相关论文
共 50 条
[21]   Research on dynamic forming of chip's path in virtual reality environment [J].
Li, ZJ ;
Tan, GY ;
Wu, LJ ;
Lin, LF ;
Liu, GJ ;
Rong, YM .
ADVANCES IN GRINDING AND ABRASIVE PROCESSES, 2004, 259-2 :329-332
[22]   NURBS surface shaping in a virtual reality environment [J].
Liverani, A ;
Piraccini, G .
Proceedings of the 23rd IASTED International Conference on Modelling, Identification, and Control, 2004, :473-478
[23]   Dynamic Models Based Virtual Reality Flight Simulator [J].
Valentino, Kelvin ;
Christian, Kevin ;
Wibowo, Singgih S. ;
Joelianto, Endra .
INTERNETWORKING INDONESIA, 2019, 11 (01) :23-28
[24]   EEG-Based assessment of driver cognitive responses in a dynamic virtual-reality driving environment [J].
Lin, Chin-Teng ;
Chung, I-Fang ;
Ko, Li-Wei ;
Chen, Yu-Chieh ;
Liang, Sheng-Fu ;
Duann, Jeng-Ren .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 2007, 54 (07) :1349-1352
[25]   Virtual Reality in a shipbuilding environment [J].
Perez Fernandez, Rodrigo ;
Alonso, Veronica .
ADVANCES IN ENGINEERING SOFTWARE, 2015, 81 :30-40
[26]   Design of a virtual image distance measurement system for augmented reality / virtual reality display [J].
Zuo, Qi ;
Cheng, Dewen ;
Yao, Cheng ;
Li, Haoran ;
Chen, Hailong ;
Liu, Yue ;
Wang, Yongtian .
AOPC 2021: DISPLAY TECHNOLOGY, 2021, 12063
[27]   Design Research on Experience System of Ceramic Art Based on Virtual Reality [J].
Zhou, Xiaoping ;
Liu, Yanmin ;
Yang, Xiaodong .
2020 INTERNATIONAL CONFERENCE ON INTELLIGENT COMPUTING AND HUMAN-COMPUTER INTERACTION (ICHCI 2020), 2020, :84-90
[28]   Depth Perception in Virtual Reality Systems: Effect of Screen Distance, Environment Richness and Display Factors [J].
Vienne, Cyril ;
Masfrand, Stephane ;
Bourdin, Christophe ;
Vercher, Jean-Louis .
IEEE ACCESS, 2020, 8 (08) :29099-29110
[29]   Measurements and experiments of the immaterial virtual reality display [J].
Rakkolainen, Ismo .
2008 3DTV-CONFERENCE: THE TRUE VISION - CAPTURE, TRANSMISSION AND DISPLAY OF 3D VIDEO, 2008, :17-20
[30]   Multimodal Haptic Display for Virtual Reality: A Survey [J].
Wang, Dangxiao ;
Ohnishi, Kouhei ;
Xu, Weiliang .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2020, 67 (01) :610-623