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Algorithm of error-free information embedding into the DCT domain of digital images based on the QIM method using adaptive masking of distortions

机译:基于QIM方法嵌入数字图像DCT域的无差错信息算法,使用自适应掩蔽失真

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This paper proposes a new algorithm for hiding data in the frequency domain of digital images using the discrete cosine transform. This algorithm uses quantization index modulation (QIM) as the basic embedding operation. Frequency embedding is characterized by the problem of error appearance in a secret message arising directly at the embedding stage. The embedded message is distorted due to the loss of information when restoring integer pixel values from the frequency domain. This problem is significant if the integrity of the transmitted information is critical. For example, an insignificant distortion of an encrypted message leads to the impossibility of decrypting and, consequently, to the loss of all encrypted information. The proposed algorithm solves this problem via an iterative embedding procedure, which corrects the arising errors. Another distinctive feature of this algorithm is the adaptive correction of distortions of the frequency coefficients' histogram. For this purpose, the embedding procedure adapts to the features of the image and masks the arising distortions. Computing experiments and comparison with the state-of-the-art demonstrate the effectiveness of our algorithm.
机译:本文提出了一种新的算法,用于使用离散余弦变换来覆盖数字图像频域中的数据。该算法使用量化索引调制(Qim)作为基本嵌入操作。频率嵌入的特征在于在嵌入阶段直接产生的秘密消息中出现错误的问题。由于在从频域还原整数像素值时,嵌入消息由于信息丢失而被扭曲。如果传输信息的完整性至关重要,此问题很重要。例如,加密消息的微不一谈失真导致不可能解密的并且因此,丢失所有加密信息。该算法通过迭代嵌入程序来解决这个问题,纠正出现的错误。该算法的另一个独特特征是频率系数直方图的变形的自适应校正。为此目的,嵌入程序适应图像的特征,并掩盖引起的扭曲。计算实验和与最先进的比较展示了我们算法的有效性。

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