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Distortion Function for JPEG Steganography Based on Image Texture and Correlation in DCT Domain

机译:DCT域中基于图像纹理和相关性的JPEG密写失真函数

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摘要

This paper proposes a novel distortion function for JPEG steganography, which depends on the magnitude of discrete cosine transformation (DCT) coefficients, the first- and second-order residuals, and the amount of zeros in a DCT block. The magnitude of a DCT coefficient indicates the ability of the current coefficient to conceal modification trace. The first- and second-order residuals make sufficient use of the correlation in DCT domain, and the amount of zeros in a DCT block illustrates the block texture well. These elements are combined together to measure the risks of detection due to the modification on the cover data. By using this proposed distortion function, the embedding changes are limited in texture regions when employing the syndrome trellis coding to embed secret data. Thus less detectable artefacts could be found in stego images. The experimental results demonstrate that the proposed scheme performs less statistical detectability when comparing to current state-of-the-art steganographic methods for JPEG images.
机译:本文提出了一种用于JPEG隐写术的新颖失真函数,该函数取决于离散余弦变换(DCT)系数的大小,一阶和二阶残差以及DCT块中的零量。 DCT系数的大小表示当前系数隐藏修改迹线的能力。一阶和二阶残差充分利用了DCT域中的相关性,并且DCT块中的零数量很好地说明了块纹理。将这些元素组合在一起,以测量由于对封面数据进行修改而导致的检测风险。通过使用此提议的失真函数,当采用校正子网格编码来嵌入秘密数据时,在纹理区域中的嵌入更改受到限制。因此,可以在隐身图像中发现较少可检测到的伪像。实验结果表明,与当前用于JPEG图像的最新隐写方法相比,该方案的统计可检测性较低。

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