Robust hybrid watermarking approach for 3D multiresolution meshes based on spherical harmonics and wavelet transform

被引:0
|
作者
Ikbel Sayahi
Malika Jallouli
Anouar Ben Mabrouk
Mohamed Ali Mahjoub
Chokri Ben Amar
机构
[1] University of Sfax,Research Groups on Intelligent Machines Laboratory
[2] Université de Sousse,LATIS Laboratory of Advanced Technology and Intelligent Systems
[3] Ecole Nationale d’Ingénieurs de Sousse,Department of Mathematics, Higher Institute of Applied Mathematics and Computer Science
[4] University of Kairouan,Laboratory of Algebra, Number Theory and Nonlinear Analysis, LR18ES15, Department of Mathematics, Faculty of Sciences
[5] University of Monastir,Computational and Analytical Mathematics and Application Research Unit, Department of Mathematics, Faculty of Sciences
[6] University of Tabuk,College of Computers and Information Technology
[7] Taif University,undefined
来源
关键词
Butterfly wavelet; Convolutional encoder; LSB method; Multiresolution 3D meshes; Spherical harmonics;
D O I
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中图分类号
学科分类号
摘要
Since the 3D mesh security problems imposed themselves, attempts to design watermarking algorithms targeting this data type have continued to grow up to secure data shared by remote users. The originality of the present approach is to insert a whole grayscale image in hybrid domain by using wavelet transform and spherical harmonics. Our algorithm includes then two rounds of insertion. The first is operating multiresolution domain by applying wavelet transform. The watermark, which is an image already coded using a convolutional encoder, is embedded into wavelet coefficients (using Least Significant Bit method) after a transformation to spherical coordinate system and a modulation step. Finally watermarked mesh is reconstructed using inverse wavelet transform. This mesh undergoes a second round on watermarking using spherical harmonics. In this case the same steps are executed to embed data into SHs harmonic coefficients before reconstructing the final version of the watermarked mesh. The experimentation of our approach has shown a very high insertion rate due to the use of hybrid insertion domain, while maintaining the mesh quality. Watermarked mesh and extracted data are obtained in real time. Our approach is also robust against the most popular attacks. Our results show that the present approach improves the existing works.
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页码:39841 / 39866
页数:25
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