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Digital image watermarking based on DWT-DCT: Evaluate for a new embedding algorithm

机译:基于DWT-DCT的数字图像水印:评估一种新的嵌入算法

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The authenticity of content or matter is crucial factors for solving the problem of copying, modifying, and distributing the intellectual properties in an illegal way. Watermarking can resolve the stealing problem of intellectual properties. This paper considers a robust image watermarking technique based on discrete wavelet transform (WDT) and discrete cosine transform (DCT) called hybrid watermarking. The hybrid watermarking is performed by two level, three level, and four level DWT followed by respective DCT on the host image. A new embedding algorithm (NEA) of digital watermarking is proposed in this paper. The simulation results are compared with Cox's additive embedding algorithm and the NEA for additive white Gaussian noise (AWGN) attack and without attack. Both algorithms use the hybrid watermarking. The NEA gives 3.04dB and 9.33dB better pick signal to noise ratio (PSNR) compared to Cox's additive algorithm for the 4 level DWT for AWGN attack and without attack, respectively. Moreover, the NEA extracts the marked image 46 times better of Cox's additive algorithm in 2 level DWT with AWGN attack. That means, the NEA can embed larger marks and high quality marks extract from the embedded watermarking even attacking condition. Though the NEA is evaluated in this paper by comparing performances with Cox's algorithm, the performances of NEA will compare among other algorithms like Gaussian sequence, image fusion, nonlinear quantization embedding with various attacking conditions in near future.
机译:内容或物质的真实性是解决以非法方式复制,修改和分发知识产权问题的关键因素。加水印可以解决盗用知识产权的问题。本文考虑了一种基于离散小波变换(WDT)和离散余弦变换(DCT)的鲁棒图像水印技术,称为混合水印。混合水印是由两级,三级和四级DWT执行的,然后在主机图像上执行相应的DCT。提出了一种新的数字水印嵌入算法。将仿真结果与Cox的加性嵌入算法和NEA进行了比较,以证明加性高斯白噪声(AWGN)攻击和无攻击性。两种算法都使用混合水印。与用于4级DWT的AWGN攻击和无攻击的Cox附加算法相比,NEA分别提供了3.04dB和9.33dB更好的拾取信噪比(PSNR)。此外,在具有AWGN攻击的2级DWT中,NEA提取的标记图像比Cox的加性算法要好46倍。这意味着,NEA可以嵌入更大的标记,并从嵌入的水印甚至攻击条件中提取高质量的标记。尽管本文通过与Cox算法的性能比较来评估NEA,但NEA的性能将在不久的将来与其他算法(如高斯序列,图像融合,非线性量化嵌入各种攻击条件)进行比较。

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