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Effective self-embedding watermarking scheme for image tampered detection and localization with recovery capability

机译:有效的自嵌入水印方案,用于具有篡改功能的图像篡改检测和定位

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摘要

This paper presents a Discrete Cosine Transformation (DCT) based effective self-recoverable fragile watermarking scheme. For each 2 x 2 non-overlapping block, two authentication bits, and ten recovery bits are generated from the five most significant bits (MSBs) of pixels. Authentication bits are embedded in the three least significant bits (LSBs) of the block itself while recovery bits are embedded in the three LSBs of the corresponding mapped block. The proposed watermarking scheme is also effective because the authentication of each block is based on two levels hierarchical tampered detection mechanisms. So the detection of tampered block can be ensured with high probability. The experimental results demonstrate that the proposed scheme not only outperforms high-quality restoration effectively, but also removes the blocking artifacts and improves the accuracy of tamper localization due to the use of very small size blocks, smoothing function and two levels tampering detection mechanisms. (C) 2016 Elsevier Inc. All rights reserved.
机译:本文提出了一种基于离散余弦变换(DCT)的有效的自恢复脆弱水印方案。对于每个2 x 2非重叠块,从像素的五个最高有效位(MSB)生成两个认证位和十个恢复位。身份验证位嵌入在块本身的三个最低有效位(LSB)中,而恢复位嵌入在相应映射块的三个LSB中。提出的水印方案也是有效的,因为每个块的认证基于两级分层篡改检测机制。因此,可以确保高概率地检测到被篡改的块。实验结果表明,由于使用了非常小的块,平滑功能和两级篡改检测机制,该方案不仅有效地胜过高质量的恢复,而且消除了阻塞伪像并提高了篡改定位的准确性。 (C)2016 Elsevier Inc.保留所有权利。

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