IMPLEMENTATION OF QIM BASED AUDIO WATERMARKING USING HYBRID TRANSFORM OF SWT-DCT-SVD METHODS OPTIMIZED WITH GENETIC ALORITHM

Ryan Aminullah, Gelar Budiman, Irma Safitri
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引用次数: 3

Abstract

Nowadays, almost all data transaction is done through the internet because it is easy and could be accessed anywhere. The file is uploaded directly without any security or scanning making people able to upload illegal files or files that is not owned by them. This violation of copyright becomes a huge problem as it reduces the owner�s profit. That is why watermarking method is created. Watermarking is a method of embedding secret information to a host data. The information could be embedded into an audio, image or video data. This research will design an audio watermarking by combining 3 methods of transformation: Stationary Wavelet Transform (SWT), Discrete Cosine Transform (DCT), and Singular Value Decomposition (SVD). SWT separates data�s frequency into high and low. After that, DCT maps correlated high frequency data into uncorrelated coefficient. Then those coefficients will be deconstructed into three matrices u, s, and v using SVD method. Later, the s matric will be embedded with the watermark. With these methods, watermarked audio produce SNR>20dB and BER�0,1170 in average.
利用遗传算法优化的swt-dct-svd混合变换实现基于qim的音频水印
如今,几乎所有的数据交易都是通过互联网完成的,因为它很容易,可以在任何地方访问。该文件直接上传,没有任何安全或扫描,使人们能够上传非法文件或不属于自己的文件。这种侵犯版权的行为成为一个巨大的问题,因为它减少了所有者的利润。这就是为什么要创建水印方法。水印是一种将秘密信息嵌入到主机数据中的方法。这些信息可以嵌入到音频、图像或视频数据中。本研究将结合平稳小波变换(SWT)、离散余弦变换(DCT)和奇异值分解(SVD)三种变换方法设计音频水印。SWT将数据的频率分为高频率和低频率。然后,DCT将高频数据关联成不相关系数。然后使用奇异值分解方法将这些系数分解成三个矩阵u, s和v。然后,将s矩阵嵌入水印。使用这些方法,水印音频的信噪比大于20dB,平均误码率为0.1170。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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