Fully scalable intraband coding of wavelet-decomposed 3D meshes

In this paper, a scalable intraband wavelet coding technique for semi-regular topology surface meshes is proposed. The choice of an intraband codec design is justified through an information theoretic analysis of the statistical dependencies between the wavelet coefficients resulting from a wavelet-...

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Veröffentlicht in:2009 16th International Conference on Digital Signal Processing S. 1 - 5
Hauptverfasser: Denis, L., Satti, S.M., Munteanu, A., Cornelis, J., Schelkens, P.
Format: Tagungsbericht
Sprache:Englisch
Veröffentlicht: IEEE 01.07.2009
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ISBN:9781424432974, 1424432979
ISSN:1546-1874
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Zusammenfassung:In this paper, a scalable intraband wavelet coding technique for semi-regular topology surface meshes is proposed. The choice of an intraband codec design is justified through an information theoretic analysis of the statistical dependencies between the wavelet coefficients resulting from a wavelet-based decomposition of the input 3D mesh. The bitstream produced by the proposed codec is both resolution and quality scalable. This lies in contrast with well-known zero-tree based interband coding techniques that only support quality scalability. The experimental results show that, on average, the proposed codec outperforms the state-of-the-art zero-tree based interband codec in rate-distortion sense when using the L 2 norm as target distortion metric.
ISBN:9781424432974
1424432979
ISSN:1546-1874
DOI:10.1109/ICDSP.2009.5201233