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Roughness-Adaptive 3D Watermarking of Polygonal Meshes

机译:多边形网格的粗糙度自适应3D水印

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摘要

We present a general method to improve watermark robustness by exploiting the masking effect of surface roughness on watermark visibility, which, to the best of our knowledge, has not been studied in 3D digital watermarking. Our idea is to adapt watermark strength to local surface roughness based on the knowledge that human eyes are less sensitive to changes on a rougher surface patch than those on a smoother surface. We implemented our idea in a modified version of a well known method proposed by Benedens [3]. As an additional contribution, we modified Benedens's method in two ways to improve its performance. The first improvement led to a blind version of Benedens's method that no longer requires any key that depends on the surface mesh of the cover 3D object. The second improvement concerned the robustness of bit '1' in the watermark. Experimental results showed that our new method permits to improve watermark robustness by 41% to 56% as compared to the original Benedens's method. Further analyses indicated that the average watermark strength by our roughness-adaptive method was larger than that by the original Benedens's method while ensuring watermark imperceptibility. This was the main reason for the improvement in robustness observed in our experiments. We conclude that exploiting the masking property of human vision is a viable way to improve the robustness of 3D watermarks in general, and therefore could be applied to other 3D digital watermarking techniques.
机译:我们提出了一种通过利用表面粗糙度对水印可见性的掩盖效应来提高水印鲁棒性的通用方法,据我们所知,尚未在3D数字水印中进行研究。我们的想法是基于以下知识,使水印强度适应局部表面粗糙度:人眼对较粗糙的表面斑块的感觉比对较光滑的表面的变化不敏感。我们在Benedens [3]提出的已知方法的修改版本中实现了我们的想法。作为一项额外的贡献,我们以两种方式修改了Benedens的方法以提高其性能。第一次改进导致Benedens方法的盲目版本,该方法不再需要依赖于Cover 3D对象的表面网格的任何关键点。第二个改进涉及水印中位“ 1”的鲁棒性。实验结果表明,与原始的Benedens方法相比,我们的新方法可以将水印鲁棒性提高41%至56%。进一步的分析表明,在保证水印不易察觉性的同时,我们的粗糙度自适应方法的平均水印强度比原始的Benedens方法要大。这是在我们的实验中观察到的鲁棒性提高的主要原因。我们得出的结论是,利用人类视觉的掩蔽属性通常是提高3D水印鲁棒性的可行方法,因此可以应用于其他3D数字水印技术。

著录项

  • 来源
    《Information hiding》|2009年|P.191-205|共15页
  • 会议地点 Darmstadt(DE);Darmstadt(DE)
  • 作者单位

    Haptic Interface Research Laboratory, Purdue University,465 Northwestern Avenue, West Lafayette, Indiana 47906 USA;

    rnDepartment of Information Engineering, University of Siena,via Roma 56, 53100, Siena, Italy;

    rnHaptic Interface Research Laboratory, Purdue University,465 Northwestern Avenue, West Lafayette, Indiana 47906 USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计算机网络;
  • 关键词

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