基于块纠错码的鲁棒图像水印

A. Umaamaheshvari, K. Thanushkodi
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引用次数: 11

摘要

一般来说,数字水印是将一幅图像嵌入到另一幅带水印的图像中,使骗子无法熟练地复制图像,以提高版权保护的一种方法。本文的主要目标是开发一种新的高版权保护的水印方案。为了实现这一目标,现有系统采用了基于小波技术的模糊水印系统,并分两阶段实现。一是嵌入阶段,将主机图像嵌入带有密钥的水印图像;利用LSB (Least significant Bit)技术得到水印图像。第二阶段是提取阶段,利用Haar小波变换对水印图像(第一阶段的输出)进行分解。本文以改进嵌入相位为目的,提出了一种基于分块纠错编码和DWT水印的改进算法,并将其应用于数字图像。本文提出了一种基于卷积码的新技术来提高嵌入水印的鲁棒性。在离散小波变换(DWT)的低频带中首选水印,因此它可以拒绝接受图像处理的破坏。在嵌入过程中,首选Haar小波滤波器进行DWT分解,以获得恢复结果。这里的嵌入过程是使用加权加法规则完成的,基本上考虑了在提取时主机图像是可获得的情况,因此,主机入侵不是一个问题。在提取阶段应用离散小波反变换(IDWT),提取出水印图像。利用PSNR、MSE、SSIM、Correlation和Entropy等参数对目标水印方法的性能进行了估计。实验结果表明,该方法比现有方法具有更强的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust image watermarking based on block based error correction code
Generally digital watermarking is a method of embedding an image into another watermarked image in such a way that impostor is not proficient to copy the image to improve Copyright Protection. The main goal of this paper is developing a new watermarking scheme with high copyright protection. In order to achieve this in existing system employed fuzzy watermarking system by means of wavelet technique where they have realized with two phases. One is the embedding phase where the host image was embedded with the watermark image with a secret key; the LSB (Least Sigraficant Bit) technique is utilized to get the watermarked image. Second phase was extraction phase in which the watermarked image (output of first phase) which was decomposed by using Haar wavelet transform. In proposed work with the purpose of improving the embedding phase, developed an improved algorithm with the block based error correcting coding and DWT watermarking which is applied on digital images. This work presenting a novel technique based on convolutional code to improve the robustness of the embedded watermark. The watermarking is preferred in low frequency band of the Discrete Wavelet Transform (DWT) and as a result it can refuse to accept the destruction of image processing. The Haar wavelet filters are preferred for the DWT decomposition to give recovered outcome in embedding process. Here the embedding process is done using the weighted addition rule were essentially considering the case where the host image was obtainable at the extraction, and so, host intrusion was not a problem. When we apply Inverse Discrete Wavelet Transform (IDWT) at the extraction phase the watermarked image will be retrieved. The performance of purposed watermarking method is estimated with the parameters of PSNR, MSE, SSIM, Correlation, and Entropy. Experimental results show that this proposed watermarking technique is more robust than the existing method.
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