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Rate-distortion based reversible watermarking for JPEG images with quality factors selection

机译:基于速率失真的JPEG图像具有质量因素选择的可逆水印

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The improved reversible data hiding scheme which is a part of JPEG coding process is introduced. Generally, one of the common constraints imposed on digital watermarking in frequency domain is a small payload that can be embedded without causing high degradation of a JPEG stego image. Moreover, even at small hidden payload the stego image file size will increase to some extent. In no existing data hiding technique compliant with JPEG there is a possibility to define in advance the file size of the watermarked image. Therefore, in this paper we propose to use a rate-distortion theory that minimizes coding distortion subject to a coding rate constraint. An iterative algorithm based on a Lagrangian formulation is applied to obtain a vector of quality factors for each of the 8 × 8 blocks that scale the JPEG standard quantization table. The experimental results show the advantage of the proposed improved watermarking scheme in terms of data payload versus quality and file size compared with the state-of-the-art data hiding schemes, and, furthermore, clarify the improvements of its optimized counterpart.
机译:引入了作为JPEG编码过程的一部分的改进的可逆数据隐藏方案。通常,在频域中的数字水印上施加的共同约束之一是可以嵌入的小有效载荷,而不会导致JPEG SEGO图像的高劣化。此外,即使在小隐藏有效载荷时,STEGO图像文件大小将在一定程度上增加。在符合JPEG的现有数据隐藏技术中,有可能预先定义水印图像的文件大小。因此,在本文中,我们建议使用速率失真理论,其最小化对编码率约束的编码失真。应用基于拉格朗日配方的迭代算法,以获得8&#X00D7中的每一个的质量因子的矢量; 8块缩放JPEG标准量化表。实验结果表明,与最先进的数据隐藏方案相比,建议改进的水印方案的优势在数据有效载荷与质量和文件大小方面,而且还阐明了其优化对应的改进。

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