DocumentCode :
3180061
Title :
Multi-resolution Volume Rendering of Large Time-Varying Data using Video-based Compression
Author :
Ko, Chia-Lin ; Liao, Horng-Shyang ; Wang, Tsai-Pei ; Fu, Kuang-Wei ; Lin, Ching-Yao ; Chuang, Jung-Hong
Author_Institution :
Nat. Chiao Tung Univ., Hsinchu
fYear :
2008
fDate :
5-7 March 2008
Firstpage :
135
Lastpage :
142
Abstract :
We present a new framework that combines the hierarchical multi-resolution representation with video-based compression to manage and render large scale time-varying data. In the preprocessing step, the proposed method first constructs a multi-resolution hierarchy using octree structure for each individual time step, and then applies a motion-compensation-based prediction to compress the octree nodes. During rendering stage, the data is decompressed on-the-fly and rendered using hardware texture mapping. The proposed approach eliminates the hierarchical decompression dependency commonly found in the conventional hierarchical wavelet representation methods, which leads to a more efficient reconstruction of data along the time axis. The system provides the user with a spatial region-of-interest (ROI) to adjust the spatial level-of-detail (LOD) selection, and a temporal ROI which is a sub-region only for frequent update during playback. With a suitable control of both ROIs, our system can reach an interactive playback frame rate. This allows the user to observe the dynamic nature of large time-varying data sets.
Keywords :
data compression; image representation; image resolution; motion compensation; octrees; rendering (computer graphics); video coding; wavelet transforms; hardware texture mapping; hierarchical decompression dependency; hierarchical wavelet representation methods; interactive playback frame rate; motion-compensation-based prediction; multi-resolution representation; multi-resolution volume rendering; octree structure; spatial level-of-detail selection; spatial region-of-interest; time-varying data; video-based compression; Computer graphics; Computer science; Data communication; Data visualization; Hardware; Interpolation; Multiresolution analysis; Rendering (computer graphics); Spatial resolution; Wavelet transforms; level-of-detail; motion-compensation; time-varying volume rendering; volume compression; volume visualization; wavelet;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Visualization Symposium, 2008. PacificVIS '08. IEEE Pacific
Conference_Location :
Kyoto
Print_ISBN :
978-1-4244-1966-1
Type :
conf
DOI :
10.1109/PACIFICVIS.2008.4475469
Filename :
4475469
Link To Document :
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