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Matrix Embedding With Pseudorandom Coefficient Selection and Error Correction for Robust and Secure Steganography

机译:具有伪随机系数选择的矩阵嵌入和纠错,可实现稳健而安全的隐写术

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摘要

In matrix embedding (ME)-based steganography, the host coefficients are minimally perturbed such that the transmitted bits fall in a coset of a linear code, with the syndrome conveying the hidden bits. The corresponding embedding distortion and vulnerability to steganalysis are significantly less than that of conventional quantization index modulation (QIM)-based hiding. However, ME is less robust to attacks, with a single host bit error leading to multiple decoding errors for the hidden bits. In this paper, we employ the ME-RA scheme, a combination of ME-based hiding with powerful repeat accumulate (RA) codes for error correction, to address this problem. A key contribution of this paper is to compute log likelihood ratios for RA decoding, taking into account the many-to-one mapping between the host coefficients and an encoded bit, for ME. To reduce detectability, we hide in randomized blocks, as in the recently proposed Yet Another Steganographic Scheme (YASS), replacing the QIM-based embedding in YASS by the proposed ME-RA scheme. We also show that the embedding performance can be improved by employing punctured RA codes. Through experiments based on a couple of thousand images, we show that for the same embedded data rate and a moderate attack level, the proposed ME-based method results in a lower detection rate than that obtained for QIM-based YASS.
机译:在基于矩阵嵌入(ME)的隐写术中,主机系数受到的干扰最小,以使发送的位落入线性码的同集中,而校正子则传递隐藏的位。与传统的基于量化索引调制(QIM)的隐藏相比,相应的嵌入失真和对隐写分析的脆弱性要小得多。但是,ME对攻击的鲁棒性较差,单个主机位错误导致隐藏位的多个解码错误。在本文中,我们采用ME-RA方案,将基于ME的隐藏与强大的重复累积(RA)码相结合以进行纠错,以解决此问题。本文的主要贡献在于,考虑到ME的主机系数与编码位之间的多对一映射,计算RA解码的对数似然比。为了减少可检测性,我们将其隐藏在随机块中,如最近提出的“另一种隐秘术方案”(YASS)一样,用提议的ME-RA方案代替了YASS中基于QIM的嵌入。我们还表明,通过采用穿孔的RA码可以提高嵌入性能。通过基于数千个图像的实验,我们表明,对于相同的嵌入数据速率和适度的攻击级别,所提出的基于ME的方法导致的检测率低于基于QIM的YASS。

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