A robust steganography algorithm based on texture similarity using Gabor filter

Z.Z. Kermani, M. Jamzad
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引用次数: 32

Abstract

The main concern of steganography (image hiding) methods is to embed a secret image into a host image in such a way that the host should remain as similar as possible to its original version. In addition the host image should remain robust with respect to usual attacks. In this paper we present a method that tries to cover all above mentioned concerns. The secret and host images are divided into blocks of size 4 times 4. Each block in secret image is taken as a texture pattern for which the most similar block is found among the blocks of the host image. The embedding procedure is carried on by replacing these small blocks of the secret image with blocks in host image in such a way that least distortion would be imposed on it. We have used Gabor filter to measure the similarity between texture patterns. The location addresses of blocks in host image which are replaced by blocks of secret image are saved. This data is converted to a bit string and then modified by Hamming code. This bit string is embedded in DCT coefficients of the modified host image using a key which is the seed of a random number generator. Our experimental results showed a high level of capacity, robustness and minimum distortion on standard images
基于纹理相似度的Gabor滤波鲁棒隐写算法
隐写术(图像隐藏)方法的主要关注点是将秘密图像嵌入到主机图像中,使主机尽可能保持与其原始版本相似。此外,对于通常的攻击,主机映像应该保持健壮性。在本文中,我们提出了一种方法,试图涵盖上述所有问题。秘密图像和主机图像被分成大小为4 × 4的块。将秘密图像中的每个块作为一个纹理模式,在宿主图像的块中找到最相似的块。嵌入过程是将秘密图像中的这些小块替换为宿主图像中的块,以使其受到的失真最小。我们使用Gabor滤波器来度量纹理图案之间的相似性。保存主机映像中块的位置地址,这些块被秘密映像块替换。该数据被转换为位字符串,然后由汉明码修改。该位串使用密钥嵌入到修改后的主机图像的DCT系数中,密钥是随机数生成器的种子。实验结果表明,该方法在标准图像上具有较高的容量、鲁棒性和最小的失真
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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