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A Statistical Color Image Watermarking Scheme Using Local QPCET and Cauchy-Rayleigh Distribution

机译:使用本地QPCET和Cauchy-Rayleigh分布的统计彩色图像水印方案

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摘要

Based on local quaternion polar complex exponential transform (QPCET) and Cauchy-Rayleigh distribution, we propose a statistical color image watermarking scheme in this paper, which can achieve the trade-off among imperceptibility, robustness and data payload. Our color image watermarking scheme consists of two parts, namely embedding and detecting. In the embedding process, we divide the color host image into non-overlapping blocks and compute the local QPCET of color image blocks and then insert the watermark signal into the robust local QPCET magnitudes through multiplicative approach. In the detecting phase, robust local QPCET magnitudes are firstly modeled by employing the Cauchy-Rayleigh distribution, where the statistical properties of local QPCET magnitudes are captured accurately. Then, genetic algorithm-based maximum likelihood approach is introduced to estimate the statistical parameters of Cauchy-Rayleigh distribution model. And finally a color image watermark detector for multiplicative watermarking is developed using Cauchy-Rayleigh distribution and locally most powerful test. Also, we utilize the Cauchy-Rayleigh statistical model to derive the closed-form expressions for the watermark detector. Experimental results on some standard test images and comparison with well-known existing methods demonstrate the efficacy and superiority of the proposed scheme.
机译:基于局部四元数极型指数变换(QPCET)和Cauchy-rayleigh分布,我们提出了本文的统计彩色图像水印方案,可以在难以察觉,鲁棒性和数据有效载荷之间实现权衡。我们的彩色图像水印方案由两部分组成,即嵌入和检测。在嵌入过程中,我们将彩色主机图像划分为非重叠块并计算彩色图像块的本地QPCET,然后通过乘法方法将水印信号插入稳健的本地QPCET幅度。在检测相中,通过采用Cauchy-Rayleigh分布首先建模稳健的局部QPCET幅度,其中局部QPCET幅度的统计特性被精确地捕获。然后,引入了基于遗传算法的最大似然方法来估计Cauchy-Rayleigh分布模型的统计参数。最后,使用Cauchy-Rayleigh分布和局部最强大的测试开发了用于乘法水印的彩色图像水印检测器。此外,我们利用Cauchy-Rayleigh统计模型来导出水印检测器的闭合表达。对一些标准测试图像的实验结果和与众所周知的现有方法的比较证明了所提出的方案的功效和优越性。

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