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Robust reversible watermarking using integration of histogram shifting and patchwork algorithm to improve quality and capacity

机译:结合直方图移位和拼凑算法的鲁棒可逆水印技术,以提高质量和容量

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摘要

In this paper Histogram Shifting Patch Work method is proposed. It is a hybrid method generated from histogram shifting method and patchwork method. Additional security has been given by chaotic neural network. Quality of Histogram Shifting method is better while capacity is less. Embedding capacity of PW method is better at the cost of quality. CNN adds security in a reversible watermarking. Integration of HS and PW method, grabs advantages such as high quality and high embedding capacity respectively. The chaotic neural network is influenced by several factors, which affect the ability of solving problems. The chaotic random sequence is encrypted with LSBs of image pixels, to get additional security. Robustness of extracted watermark using histogram shifting patchwork method, for geometric attack is verified and PW method found inherently more robust to geometric attack than any other method. Robustness increases if it is passed through distortion correction method. HS method is not suitable for geometric attack. If it is combined with distortion correction then it improves robustness. Ultimately, proposed method becomes more robust to geometric attacks.
机译:本文提出了直方图移位补丁工作方法。它是从直方图移位方法和拼凑方法生成的一种混合方法。混沌神经网络提供了额外的安全性。直方图移位方法的质量较好,而容量较小。 PW方法的嵌入能力以质量为代价更好。 CNN在可逆水印中增加了安全性。 HS和PW方法的集成,分别具有高质量和高嵌入能力等优点。混沌神经网络受多种因素影响,这些因素影响解决问题的能力。混沌随机序列用图像像素的LSB加密,以获取额外的安全性。使用直方图移动拼凑方法提取水印的鲁棒性,针对几何攻击进行了验证,并且发现PW方法固有地比其他任何方法对几何攻击更鲁棒。如果通过失真校正方法,则鲁棒性会提高。 HS方法不适用于几何攻击。如果将其与失真校正结合使用,则会提高鲁棒性。最终,所提出的方法对几何攻击变得更加健壮。

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