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A reversible two-level image authentication scheme based on chaotic fragile watermark

机译:基于混沌脆弱水印的可逆两级图像认证方案

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For image authentication, the capability of accurately locating tampered pixel and ensuring security is desirable. In this paper, we propose a novel reversible two-level image authentication scheme based on chaotic fragile watermark. In the embedding process, at the pixel level, by utilizing the pixel correlation technology, the location watermark of each pixel is generated and embedded to the LSB of the pixel itself firstly. At the image block level, the image is then partitioned into blocks, and the relation watermark of each block is computed and embedded into the top-left sub-block of its corresponding excursion block in a reversible way. The excursion block mapping sequence can be generated by sorting the keyed chaotic sequence. After all the relation watermarks are embedded, in each block embedded by relation watermark, the detection watermark is computed and embedded into the down-right subblock of the block itself in a reversible way. In the extracting process, the watermarked image is partitioned into blocks, then the embedded detection watermark of each block is extracted and the block itself is partially recovered for the first time. And the embedded relation watermark of each block is extracted and the block is fully recovered for the second time. Then we compute the new relation watermark and detection watermarks of each recovered block and perform comparison with the extracted ones. In the proposed scheme, the tampered watermark can pass the authentication because it does not reduce the value of image to some extent. But if the image content is tampered, the further step is taken at the pixel level to locate tamper to specific pixel by comparing the re-computed location watermark with the extracted location watermark. In the proposed image authentication scheme, the complicated nonlinear property of chaos is utilized to generate the pixel location watermark at the pixel level, construct the excursion block map, and create the relation watermark and de- ection watermark at the image block level. Theoretical analysis and computer simulation have verified the successful achievement of the proposed image authentication scheme.
机译:为了图像认证,需要精确定位篡改像素和确保安全性的能力。本文提出了一种基于混沌脆弱水印的新型可逆的两级图像认证方案。在嵌入过程中,通过利用像素相关技术,首先生成每个像素的位置水印并将其自身嵌入像素的LSB。在图像块级别,然后将图像划分为块,并且计算每个块的关系水印并以可逆的方式计算并嵌入到其相应的偏移块的左上级子块中。可以通过对键控的混沌序列进行排序来生成偏移块映射序列。在嵌入所有关系水印之后,在由关系水印嵌入的每个块中,通过可逆的方式计算并将检测水印计算并嵌入到块本身的下右子块中。在提取过程中,水印图像被划分为块,然后提取每个块的嵌入式检测水印,并且块本身首次部分恢复。并且提取每个块的嵌入式关系水印,并且第二次完全恢复块。然后,我们计算每个恢复的块的新关系水印和检测水印,并与提取的块进行比较。在所提出的方案中,篡改水印可以通过身份验证,因为它不会在一定程度上降低图像的值。但是,如果图像内容被篡改,则通过将再计计算的位置水印与提取的位置水印进行比较,在像素电平处拍摄进一步的步骤以将篡改定位到特定像素。在所提出的图像认证方案中,利用混沌的复杂非线性属性来在像素级别生成像素位置水印,构建偏移块图,并在图像块水平处创建关系水印和脱口水印。理论分析和计算机仿真已经验证了所提出的图像认证方案的成功实现。

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