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A Robust Spectral Approach for Blind Watermarking of Manifold Surfaces

机译:歧管表面盲水印的鲁棒光谱方法

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This paper proposes a robust, blind, and imperceptible spectral watermarking approach for manifold surfaces represented as triangle meshes. The basic idea is to transform the original mesh into frequency domain using the Fourier-Like Manifold Harmonics Transform. The manifold harmonics basis defined on arbitrary topology surfaces is an intrinsic property of the manifold surfaces, I.e., it is only determined by the surface metric and independent of their resolution and embedding. This property makes our watermarking scheme immune to uniform affine attack (rotation, scaling, and translation) and robust against noise-addition and mesh simplification attacks. The global manifold harmonics are computed using the finite element method combined with a band-by-band algorithm that can compute thousands of eigenvectors for large meshes with up to a million triangles. The watermark data is embedded by modifying the manifold harmonics descriptors magnitude in an imperceptible way. By using global spectral analysis, the detection of such watermarks does not require mesh registration or re-sampling, and analysis of the statistics of the manifold harmonics descriptors is exploited to devise an optimal blind detector. Experimental results show the imperceptibility of the watermark with low distortions, and its robustness against the most common attacks including the uniform affine transformations, random noise addition, mesh simplification, etc.
机译:本文提出了一种鲁棒,盲目和不易察觉的频谱水印方法,用于以三角形网格表示的流形表面。基本思想是使用傅里叶样歧管谐波变换将原始网格转换到频域。在任意拓扑表面上定义的歧管谐波基础是歧管表面的固有属性,即,它仅由表面度量确定,并且与它们的分辨率和嵌入无关。此属性使我们的水印方案不受统一仿射攻击(旋转,缩放和平移)的影响,并且对加噪和网格简化攻击具有鲁棒性。整体流形谐波是使用有限元方法结合逐带算法来计算的,该算法可以为多达一百万个三角形的大型网格计算数千个特征向量。通过以不易察觉的方式修改歧管谐波描述符幅度来嵌入水印数据。通过使用全局频谱分析,此类水印的检测不需要进行网格配准或重新采样,并且利用对歧管谐波描述符的统计数据的分析来设计最佳的盲检测器。实验结果表明,水印具有低失真的不可感知性,以及其对最常见攻击(包括均匀仿射变换,随机噪声添加,网格简化等)的鲁棒性。

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