A Wavelet Domain Watermarking Algorithm Based on Fractional Brownian Motion Model

Aiping Jiang, Xiangxue Zhang, Luping Jiang, Jingquan Wang
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Abstract

This article describes a watermarking algorithm based on Fractional Brownian motion model in wavelet domain. In the watermark embedding process, we have taken advantage of the hearts matrix generated by the fractional brownian motion model, it successfully resolved the problem of watermarking visibility due to human eye' sensibility to low wavelet frequency. In order to enhance the security of the watermark, the algorithm is combined with one-dimensional chaotic scrambling encryption. In this article, we completed a large number of comparative experiments. The results showed the algorithm is very good to solve the contradiction between the transparency and robustness of the watermark. Also it has strong ability to resist conventional signal processing means such as geometric attacks, filtering attacks, noise attacks, and compression attacks. The proposed scheme demonstrates very good performance.
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基于分数阶布朗运动模型的小波域水印算法
介绍了一种基于小波域分数阶布朗运动模型的水印算法。在水印嵌入过程中,我们利用分数阶布朗运动模型生成的心矩阵,成功地解决了人眼对低小波频率敏感导致的水印可见性问题。为了提高水印的安全性,将该算法与一维混沌置乱加密相结合。在本文中,我们完成了大量的对比实验。结果表明,该算法很好地解决了水印的透明性和鲁棒性之间的矛盾。同时,它还具有很强的抗几何攻击、滤波攻击、噪声攻击、压缩攻击等传统信号处理手段的能力。该方案具有良好的性能。
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