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High-capacity reversible data hiding in encrypted image based on Huffman coding and differences of high nibbles of pixels

机译:基于Huffman编码和高分性像素的差异的加密图像隐藏在加密图像中的高容量可逆数据

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摘要

In this paper, we propose a new reversible data hiding method in encrypted images. Due to spatial correlation, there is a large probability that the adjacent pixels of the image have small differences, which is especially obvious on the high four most significant bits (high nibbles) of the pixels. If the high nibble of each pixel is regarded as a 4-bit value, the differences between the high nibbles of the adjacent pixels are mostly concentrated in a small range. Based on this fact, Huffman coding was used to encode all the differences between the high nibbles of the adjacent pixels in order to compress the four most significant bit (MSB) planes efficiently and create a large-capacity room. After creating room, a stream cipher is used to encrypt the image, and the room is reserved in the encrypted image for data hiding without losing information. The experimental results showed that the proposed method can achieve a larger embedding rate and better visual quality of the marked decrypted image than other related methods.
机译:在本文中,我们提出了一种在加密图像中的新可逆数据隐藏方法。由于空间相关性,存在图像的相邻像素具有很大的差异,这对像素的高四个最高有效位(高啃啃)上尤为明显。如果每个像素的高分性被视为4位值,则相邻像素的高分性之间的差异主要集中在一个小范围内。基于这一事实,霍夫曼编码用于编码相邻像素的高啃咬之间的所有差异,以便有效地压缩四个最高有效位(MSB)平面并产生大容量室。创建房间后,使用流密码来加密图像,并且房间保留在加密图像中,以用于数据隐藏而不丢失信息。实验结果表明,所提出的方法可以实现比其他相关方法的标记解密图像更大的嵌入率和更好的视觉质量。

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