Reversible watermarking of 3D mesh models by prediction-error expansion

Hao-Tian Wu, J. Dugelay
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引用次数: 43

Abstract

In this paper, a reversible watermarking algorithm is proposed for 3D mesh models based on prediction-error expansion. Firstly, we predict a vertex position by calculating the centroid of its traversed neighbors. Then the prediction error, i.e. the difference between the predicted and real positions, is expanded for data embedding. So only the vertex coordinates are modified to embed a watermark into the mesh content without changing the topology. We further reduce the distortion by adaptively choosing a threshold so that the prediction errors with too large magnitude will not be expanded. The chosen threshold value and critical location information should be saved in the watermarked mesh to guide the recovery process. The experiments show that the original mesh can be exactly recovered and consequently our algorithm can be used for symmetric or public key authentication of 3D mesh models.
基于预测误差扩展的三维网格模型可逆水印
提出了一种基于预测误差展开的三维网格模型可逆水印算法。首先,我们通过计算顶点经过的邻居的质心来预测顶点的位置。然后扩展预测误差,即预测位置与实际位置的差值,进行数据嵌入。因此,只需修改顶点坐标就可以在网格内容中嵌入水印,而无需改变拓扑结构。我们通过自适应选择阈值进一步减小了失真,使过大的预测误差不会扩大。选择的阈值和关键位置信息应保存在水印网格中,以指导恢复过程。实验表明,该算法可以准确地恢复原始网格,因此可以用于三维网格模型的对称或公钥认证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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