利用像素差和直方图移位技术进行无损嵌入

S. krishna, B. Abdul Rahim, F. Shaik, K. Soundara Rajan
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引用次数: 10

摘要

一般来说,隐藏信息会破坏宿主图像,但对于一些敏感图像,如军事图像、医学图像或艺术品保存等,任何嵌入的失真都是无法容忍的。可逆数据隐藏技术是为了解决数字图像中大信息的无损嵌入问题,在提取嵌入信息后,图像可以完全恢复到嵌入前的原始状态。但解决方案是基于直方图的可逆数据隐藏技术,其中消息被嵌入到直方图bin中。然而,在这些技术中,接收方被传递成对的峰值和零点。通过扩展到直方图修改技术,利用像素差可以增加隐藏能力,并使用二叉树结构的要求,以通信的峰值和零点对接收者消除。采用直方图移位技术可以防止溢出和下流。相邻像素通常高度相关,具有空间冗余;差异有一个类似拉普拉斯的分布。这使得大隐藏容量增加,同时保持嵌入失真低。结果表明,与基于直方图的可逆数据隐藏技术相比,使用像素差和直方图移位,可以看到PSNR的增加和MSE的降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lossless embedding using pixel differences and histogram shifting technique
Generally hiding information destroys the host image, however, some sensitive images for which any embedding distortion of the image is intolerable, such as military images, medical images, or artwork preservation etc. Reversible data hiding techniques are designed to solve the problem of Lossless embedding of large messages in digital images so that after the embedded message is extracted, the image can be completely restored to its original state before embedding occurred. But the solutions came with histogram-based reversible data hiding techniques, in which the message is embedded into the histogram bin. However, in those techniques the recipients are communicated pairs of peak and zero points. By extending to the histogram modification technique using pixel differences hiding capacity can be increased and using a binary tree structure requirement to communicate pairs of peak and zero points to the recipient is eliminated. By adopting a histogram shifting technique overflow and underflow can be prevented. Neighbor pixels are often highly correlated and have spatial redundancy; the differences have a Laplacian-like distribution. This enables large Hiding capacity increased while keeping embedding distortion low. The results show using pixel differences & histogram shifting, increase in PSNR and decrease in MSE is seen as compared to histogram based reversible data hiding technique.
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