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A numerically stable fragile watermarking scheme for authenticating 3D models

机译:用于验证3D模型的数值稳定的脆弱水印方案

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This paper analyzes the numerically instable problem in the current 3D fragile watermarking schemes. Some existing fragile watermarking schemes apply the floating-point arithmetic to embed the watermarks. However, these schemes fail to work properly due to the numerically instable problem, which is common in the floating-point arithmetic. This paper proposes a numerically stable fragile watermarking scheme. The scheme views the mantissa part of the floating-point number as an unsigned integer and operates on it by the bit XOR operator. Since there is no numerical problem in the bit operation, this scheme is numerically stable. The scheme can control the watermark strength through changing the embedding parameters. This paper further discusses selecting appropriate embedding parameters to achieve good performance in terms of the perceptual invisibility and the ability to detect unauthorized attacks on the 3D models. The experimental results show that the proposed public scheme could detect attacks such as adding noise, adding/deleting faces, inserting/removing vertices, etc. The comparisons with the existing fragile schemes show that this scheme is easier to implement and use.
机译:本文分析了当前3D脆弱水印方案中的数值不稳定问题。一些现有的脆弱的水印方案使用浮点算法来嵌入水印。但是,由于数值不稳定的问题,这些方案无法正常工作,这在浮点运算中很常见。本文提出了一种数值稳定的脆弱水印方案。该方案将浮点数的尾数部分视为无符号整数,并由位XOR运算符对其进行运算。由于在位运算中没有数值问题,因此该方案在数值上是稳定的。该方案可以通过改变嵌入参数来控制水印强度。本文进一步讨论了选择合适的嵌入参数,以在感知上不可见以及检测3D模型上未经授权的攻击的能力方面实现良好的性能。实验结果表明,所提出的公共方案可以检测出诸如添加噪声,添加/删除人脸,插入/删除顶点等攻击。与现有的脆弱方案进行比较表明,该方案易于实现和使用。

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