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Computationally efficient rotation invariant discrete cosine transform-based semi-blind watermarking technique

机译:基于计算有效旋转不变离散余弦变换的半盲水印技术

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摘要

Digital image watermarking is very widely used for ensuring authentication and security of data transmitted over a network. Most of the watermarking techniques have been designed to accomplish robustness against various geometric and photometric transformations. The traditional method of embedding watermark using Discrete Cosine Transform (DCT) coefficients is more robust against noise and JPEG compression attack as compared to Zernike Moments (ZMs) based watermarking techniques. But the drawback of the DCT-based watermarking is that it is not rotation invariant. With DCT-based watermarking technique, a slight rotation on the watermarked image distorts the watermarked information completely. In this paper, ZM-based rotation angle estimation technique has been used to make DCT-based watermarking rotation invariant. Its performance has been compared with ZM-based watermarking. It has been shown through experimental analysis that in addition to its inherent robustness against noise and JPEG compression, the proposed watermarking technique is faster and more robust to rotation transformation as compared to ZM-based watermarking techniques.
机译:数字图像水印非常广泛地用于确保通过网络传输的数据的身份验证和安全性。大多数水印技术已被设计为针对各种几何和光度转换实现鲁棒性。与基于Zernike Moments(ZMs)的水印技术相比,使用离散余弦变换(DCT)系数嵌入水印的传统方法对噪声和JPEG压缩攻击更鲁棒。但是基于DCT的水印的缺点是它不是旋转不变的。使用基于DCT的水印技术,在水印图像上的轻微旋转会完全扭曲水印信息。在本文中,基于ZM的旋转角估计技术已被用于使基于DCT的水印旋转不变。它的性能已与基于ZM的水印进行了比较。通过实验分析已经表明,除了其固有的抗噪声和JPEG压缩的鲁棒性,与基于ZM的水印技术相比,所提出的水印技术对旋转变换更快速,更鲁棒。

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