Texture Classification for 3D Urban Map

被引:0
作者
Hiroyuki Inatsuka
Makoto Uchino
Satoshi Ueno
Masahiro Okuda
机构
[1] The University of Kitakyushu,Department of Information and Media Sciences, Faculty of Environmental Engineering
来源
EURASIP Journal on Image and Video Processing | / 2009卷
关键词
Feature Vector; Sharp Edge; Visual Quality; Texture Image; Visible Object;
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学科分类号
摘要
This paper proposes a method to control texture resolution for rendering large-scale 3D urban maps. Since on the 3D maps texture data generally tend to be far larger than geometry information such as vertices and triangles, it is more effective to reduce the texture by exploiting the LOD (Level of Detail) in order to decrease whole data size. For this purpose, we propose a new method to control the resolution of the texture. In our method we classify the textures to four classes based on their salient features. The appropriate texture resolutions are decided based on the classification resulsts, their rendered sizes on a display, and their level of importance. We verify the validity of our texture classification algorithm by applying it to the large-scale 3D urban map rendering.
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  • [1] Haala N(2008)Mobile LiDAR mapping for 3D point cloud collection in urban areas: a performance test Proceedings of the 21st International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences (ISPRS '08) 37, part B5, Commission 5 1119ff-1344
  • [2] Peter M(2006)Fast compact city modeling for navigation pre-visualization Proceedings of the IEEE Computer Society Conference on Computer Vision and Pattern Recognition (CVPR '06) 2 1339-167
  • [3] Kremer J(2008)Detailed real-time urban 3D reconstruction from video International Journal of Computer Vision 78 143-514
  • [4] Hunter G(2003)BDAM—batched dynamic adaptive meshes for high performance terrain visualization Computer Graphics Forum 22 505-69
  • [5] Cornelis N(2003)Approaches to large-scale urban modeling IEEE Computer Graphics and Applications 23 62-10
  • [6] Cornelis K(2008)Factoring repeated content within and among images ACM Transactions on Graphics 27 1-209
  • [7] Van Gool L(2005)Level of detail control for texture on 3D maps Proceedings of 11th International Conference on Parallel and Distributed Systems Workshops (ICPADS '05) 2 206-32
  • [8] Pollefeys M(1995)Query by image and video content: the QBIC system Computer 28 23-639
  • [9] Nistér D(1990)Scale-space and edge detection using anisotropic diffusion IEEE Transactions on Pattern Analysis and Machine Intelligence 12 629-67
  • [10] Frahm J-M(2000)Image information retrieval: an overview of current research Informing Science 3 63-undefined