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Imperceptible digital watermarking scheme in multiple transform domains

机译:多个变换域中不可感知的数字水印方案

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摘要

A novel imperceptible digital watermarking scheme in multiple transform domains is presented, where the cover image is dealt with by discrete wavelet transform (DWT), discrete cosine transform (DCT) and discrete fractional random transform (DFRNT), while the watermark image is scrambled by Arnold transform and logisticmap. First the watermark is scrambled by the Arnold transform, then the row and the column of the resulting watermark are scrambled by the Logistic map, respectively. In addition, four sub-band images are generated from the host image by the two-dimensional discrete wavelet transform. The low-frequency sub-band images are divided into 8 x 8 small matrices, and a coefficient matrix is produced by performing the discrete cosine transform on each matrix. An intermediate matrix with the same size as the watermark image is constructed by the intermediate frequency coefficients. Then the discrete fractional random transformation is performed on the intermediate frequency coefficient matrix and the scrambled watermark is embedded into the discrete fractional random transformation domain. Compared with the previous schemes, the proposed digital watermarking scheme has stronger imperceptibility and robustness.
机译:提出了一种新颖的在多个变换域中不可察觉的数字水印方案,该方案通过离散小波变换(DWT),离散余弦变换(DCT)和离散分数随机变换(DFRNT)处理覆盖图像,同时对水印图像进行加扰处理。 Arnold变换和logisticmap。首先,通过Arnold变换对水印进行加扰,然后分别通过Logistic映射对所得水印的行和列进行加扰。另外,通过二维离散小波变换从主图像生成四个子带图像。将低频子带图像划分为8 x 8个小矩阵,并通过对每个矩阵执行离散余弦变换来生成系数矩阵。通过中间频率系数构造与水印图像大小相同的中间矩阵。然后,对中频系数矩阵执行离散分数随机变换,并且将加扰的水印嵌入离散分数随机变换域中。与以前的方案相比,提出的数字水印方案具有更强的不可感知性和鲁棒性。

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