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Global resynchronization-based image watermarking resilient to geometric attacks

机译:基于全局重新同步的图像水印适用于几何攻击

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摘要

How to resist geometric attacks effectively and improve the watermark embedding capacity are still challenging tasks. An algorithm with better capabilities to resist cropping and combined attacks, as well as having a larger embedding capacity, is proposed. Feature points from the attacked image are obtained with the Speeded-Up Robust Features (SURF) algorithm. Then, they are matched with a few feature points obtained from the watermarked image. The matching point pairs are used to estimate the affine matrix, and then the geometric attacks are corrected by the inverse affine transform. Some positioning watermarks are embedded in the spatial domain to improve the accuracy of the resynchronization. Finally, the watermark is encoded by the fountain code such that the anti-cropping performance of the algorithm can be improved. The experimental results show that the proposed algorithm not only has a larger embedding capacity but also is resistant to many kinds of attacks.
机译:如何有效地抵制几何攻击,提高水印嵌入容量仍然具有挑战性的任务。 提出了一种抗拒裁剪和组合攻击以及具有更大嵌入容量的更好功能的算法。 通过激进的鲁棒特征(冲浪)算法获得来自攻击图像的特征点。 然后,它们与从水印图像获得的一些特征点匹配。 匹配点对用于估计仿射矩阵,然后通过反向仿现变换来校正几何攻击。 一些定位水印嵌入在空间域中以提高重新同步的准确性。 最后,水印由喷泉编码编码,使得可以提高算法的抗裁剪性能。 实验结果表明,该算法不仅具有较大的嵌入能力,而且还具有多种攻击。

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