| Literature DB >> 35528367 |
Yake Qiu1, Jingyu Tao2.
Abstract
The purpose of this paper is to understand the digital 3D multimedia panoramic visual communication technology based on virtual reality. Firstly, the key concepts and characteristics of virtual reality are introduced, including the development and application of digital three-dimensional panorama technology. Then, according to the theoretical research, some basic knowledge of 3D panoramic image Mosaic is introduced, including camera image modeling, image sharing, and image exchange. Finally, with the development of the virtual tour at the College of Normal University, the hardware of panoramic technology and the demand of panoramic image search have been expanded in the application. The design of panoramic Mosaic, panoramic image generation, and virtual tour school construction considers real-world issues. The innovation of this paper lies in that will be used by SketchUp8.0 software builds the geometry of 3d virtual scene and by the cylindrical panoramic images based on image of building 3 d virtual scene organic unifies in together and makes a panoramic image can be as the change of seasons in the real scene and real-time change, enhance the sense of the reality of the system and user immersive.Entities:
Mesh:
Year: 2022 PMID: 35528367 PMCID: PMC9071949 DOI: 10.1155/2022/1023865
Source DB: PubMed Journal: Comput Intell Neurosci
Figure 1Three-dimensional animation interaction.
Figure 2The main characteristics of virtual reality.
Figure 3The response curve of the camera spectrum.
Figure 4Correspondence between PCSLG's hue value and projection angle.
Function summary table of virtual campus roaming system.
| Viewpoint control | Best: move the viewpoint to the most suitable observation position when switching the panorama. |
|---|---|
| Interactive operation | Mouse: use the mouse of the computer as the main input device to complete the panoramic image viewing and interactive roaming functions. |
| Scene switching | Map navigation: switch to the corresponding panoramic scene view through the hotspot setting connection of the place. |
| Campus profile | Campus introduction: a brief introduction to the whole campus, so that the viewer has an overall understanding of the school. |
Figure 5Schematic diagram of the interactive roaming framework structure.
Experimental result data.
| 5 | 6 | |||||||
| Detection | Match | hfov | f | Detection | Match | hfov | f | |
|
| ||||||||
| SIFT | 1575/1506 | 7 | 1.23 | 442.13 | 1647/1653 | 6 | 1.23 | 553.6 |
| Harris | 902/632 | 6 | 2.31 | 440.23 | 988/632 | 6 | 1.56 | 253.12 |
| 7 | 8 | |||||||
| Detection | Match | Hfov | f | Detection | Match | Hfov | f | |
|
| ||||||||
| SIFT | 1802/1653 | 9 | 0.93 | 665.23 | 1758/1236 | 49 | 0.86 | 775.36 |
| Harris | 956/231 | 5 | 0.8 | 563.59 | 953/856 | 6 | 0.89 | 652.39 |
Figure 6Feature point pairs matched by the SIFT algorithm and Harris algorithm.