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Optimized 3D Watermarking for Minimal Surface Distortion

机译:优化的3D水印,将表面失真降至最低

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摘要

This paper proposes a new approach to 3D watermarking by ensuring the optimal preservation of mesh surfaces. A new 3D surface preservation function metric is defined consisting of the distance of a vertex displaced by watermarking to the original surface, to the watermarked object surface as well as the actual vertex displacement. The proposed method is statistical, blind, and robust. Minimal surface distortion according to the proposed function metric is enforced during the statistical watermark embedding stage using Levenberg–Marquardt optimization method. A study of the watermark code crypto-security is provided for the proposed methodology. According to the experimental results, the proposed methodology has high robustness against the common mesh attacks while preserving the original object surface during watermarking.
机译:本文通过确保网格表面的最佳保留,提出了一种3D水印的新方法。定义了一个新的3D表面保留功能度量标准,该度量标准包括通过水印位移到原始表面的顶点到水印物体表面的距离以及实际的顶点位移。所提出的方法是统计的,盲目的和鲁棒的。使用Levenberg–Marquardt最优化方法,在统计水印嵌入阶段将根据建议的功能度量实现的最小表面变形最小化。为提出的方法提供了对水印代码密码安全性的研究。根据实验结果,所提出的方法对常见的网格攻击具有很高的鲁棒性,同时在加水印时保留了原始对象表面。

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