A vector-based watermarking scheme for 3D models using block rearrangements

Modigari Narendra, M. Valarmathi, L. Anbarasi, D. Prasanna
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引用次数: 0

Abstract

Watermarking schemes help to secure the ownership, authenticity, and copyright-related security issues of electronic data. Digital watermarking is used to enhance the copyright protection of the 3D models thus overcoming the integrity violations. An efficient, robust, semi-blind computationally secure DWT-based watermarking is proposed for 3D models. Firstly, a block segmentation of the vertices is performed on the horizontally or vertically scrambled host 3D model. The secret watermark is embedded into the lower frequency band of each segment using Discrete Wavelet Transform (DWT). The proposed scheme employs block rearrangement to scramble the host 3D model so as to enhance the security and fidelity of the embedded watermark. Reverse scrambling and inverse DWT is accomplished for constructing the watermarked model. Semi-blind extraction process achieved a successful retrieval of the secret watermark from the watermarked 3D model. A simulation study with a variety of 3D models evidenced the performance of the proposed watermarking scheme in terms of geometrical attacks, robustness and degradation affect.
一种基于矢量的基于块重排的3D模型水印方案
水印方案有助于确保电子数据的所有权、真实性和与版权相关的安全问题。采用数字水印技术增强了三维模型的版权保护,克服了侵犯完整性的问题。提出了一种高效、鲁棒、计算安全的基于dwt的三维模型水印方法。首先,在水平或垂直置乱的主机3D模型上对顶点进行分块分割。利用离散小波变换(DWT)将秘密水印嵌入到每一段的较低频段。该方案采用块重排方式对主机三维模型进行置乱,以提高嵌入水印的安全性和保真度。通过反向置乱和逆小波变换构造水印模型。采用半盲提取方法,成功地从加了水印的三维模型中提取出秘密水印。通过对多种三维模型的仿真研究,证明了所提出的水印方案在几何攻击、鲁棒性和退化影响方面的性能。
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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