基于小波变换的自适应色彩空间变换的双图像可逆数据隐藏

IF 0.8 Q4 ROBOTICS
K. Upendra Raju, N. Amutha prabha
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引用次数: 1

摘要

目的隐写术是一种用于数据安全的数据隐藏技术。在通过信道传输数据时,不能保证数据传输的安全性。各种各样的数据安全技术存在,如补丁工作、低比特率数据隐藏、有损压缩等。本文旨在提高系统的安全性和鲁棒性。设计/方法/方法本文描述了一种基于提升小波变换(LWT)和离散余弦变换(DCT)相结合的多图像隐写方法。这里,我们有一张封面图和两张秘密图。将封面图像应用不同的高斯噪声、Salt & Pepper噪声、泊松噪声和斑点噪声中的一种,并转换为YCbCr、HSV和Lab不同的颜色空间。由于互联网接入和多媒体技术的广泛发展,黑客攻击和追踪机密信息变得非常简单。在可逆数据隐藏(RDH)中使用这种隐写过程有助于防止秘密信息。原创性/价值利用提升小波变换将变换后的彩色空间图像划分为四个子带。通过选择下波段,计算离散余弦变换,将两幅秘密图像隐藏到封面图像中,再对其中一幅秘密图像进行阿诺德变换,得到加密/嵌入/编码图像。为了提取Stego图像,我们可以使用可逆操作。为了比较结果,我们可以通过对YCbCr, HSV和Lab的所有颜色空间应用相同的过程来计算PSNR, SSIM和MSE值。实验结果表明,与所有其他空间相比,该空间具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual images in reversible data hiding with adaptive color space variation using wavelet transforms
PurposeSteganography is a data hiding technique used in the data security. while transmission of data through channel, no guarantee that the data is transmitted safely or not. Variety of data security techniques exists such as patch work, low bit rate data hiding, lossy compression etc. This paper aims to increase the security and robustness.Design/methodology/approachThis paper describes, an approach for multiple images steganography that is oriented on the combination of lifting wavelet transform (LWT) and discrete cosine transform (DCT). Here, we have one cover image and two secret images. The cover image is applied with one of the different noises like Gaussian, Salt & Pepper, Poisson, and speckle noises and converted into different color spaces of YCbCr, HSV, and Lab.FindingsDue to the vast development of Internet access and multimedia technology, it becomes very simple to hack and trace secret information. Using this steganography process in reversible data hiding (RDH) helps to prevent secret information.Originality/valueWe can divide the color space converted image into four sub-bands of images by using lifting wavelet transform. By selecting lower bands, the discrete cosine transform is computed for hiding two secret images into the cover image and again one of the transformed secret images is converted by using Arnold transform to get the encrypted/embedded/encoded image. To extract the Stego image, we can apply the revertible operation. For comparing the results, we can calculate PSNR, SSIM, and MSE values by applying the same process for all color spaces of YCbCr, HSV, and Lab. The experimental results give better performance when compared to all other spaces.
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来源期刊
CiteScore
3.50
自引率
0.00%
发文量
21
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