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Multiband semifragile watermarking for multi and hyperspectral images based on iterative tree structured vector quantization

机译:基于迭代树结构矢量量化的多光谱和高光谱图像多波段半脆弱水印

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In this paper a novel semifragile watermarking scheme for images with multiple bands is presented. We propose to use the remote sensing image as a whole, using a vector quantization approach, instead of processing each band separately. This scheme uses the signature of the multispectral or hyperspectral image to embed the mark in it and detects a modification of the original image, e.g. a replacement of a part of the image into the same image or any other similar manipulation. A modification of the image means to modify the signature of each point, all the bands simultaneously, because in multispectral images it does not have sense to modify a single band of all those that compose the multispectral image. The original multispectral or hyperspectral image is segmented in three-dimensional blocks and, for each block, a tree structured vector quantizer is built, using all bands at the same time. These trees are manipulated using an iterative algorithm until the resulting image compressed by the manipulated tree satisfies all the imposed conditions by such tree, which represents the embedded mark. Each tree is partially modified accordingly to a secret key in order to avoid copy-and-replace attacks, and this key determines the internal structure of the tree and, also, the resulting distortion, in order to make the resulting image robust against near-lossless compression. The results show that the method works correctly with multispectral and hyperspectral images and detects copy-and-replace attacks from segments of the same image and basic modifications of the marked image.
机译:本文提出了一种新颖的多波段图像半脆弱水印方案。我们建议使用矢量量化方法将遥感图像作为一个整体使用,而不是分别处理每个波段。该方案使用多光谱或高光谱图像的签名将标记嵌入其中,并检测原始图像的修改,例如将图像的一部分替换为同一图像或任何其他类似的操作。图像的修改意味着同时修改所有波段的每个点的签名,因为在多光谱图像中,没有必要修改组成多光谱图像的所有波段的单个波段。原始的多光谱或高光谱图像被分割为三个三维块,并且对于每个块,同时使用所有波段,构建树结构矢量量化器。使用迭代算法来操纵这些树,直到被操纵树压缩的结果图像满足此类树所施加的所有条件,代表嵌入标记。为了避免复制和替换攻击,对每棵树进行了部分修改,从而避免了复制和替换攻击,并且此密钥确定树的内部结构以及由此引起的失真,以使结果图像对近距离图像具有鲁棒性。无损压缩。结果表明,该方法可正确处理多光谱和高光谱图像,并检测来自同一图像片段的复制和替换攻击以及标记图像的基本修改。

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