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A Novel Blind Robust Watermarking Scheme Based on Statistic Characteristic of Wavelet Domain Coefficients

机译:基于小波域系数统计特性的盲稳健水印方案

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In this paper, a novel blind watermarking scheme for still image based on the two-dimensional discrete wavelet transform (DWT) is proposed. In the scheme, digital watermarking with a pseudo-random sequence is derived from a full logistic map system, and the robustness is achieved by embedding every bit of watermark sequence several times in many different locations in approximate sub-band of one-level Haar wavelet decomposition. The strength of watermarking is adjusted by an auto-adaptive way for fidelity constraints. During detection process, by use of the statistic characteristic of sub-band LL coefficients and the maximum subjection principle, the watermarking is extracted reliably without recurring to original image. Simulations demonstrate that the proposed method can resist many kinds of signal processing attacks such that JPEG compression, additive noise, linear filtering, format conversion, cropping and slight geometric distortion, and so the proposed algorithm has high robustness.
机译:提出了一种基于二维离散小波变换(DWT)的静态图像盲水印方案。在该方案中,从完整的逻辑图系统中获得了带有伪随机序列的数字水印,并且通过将水印序列的每一位多次嵌入一级Haar小波的近似子带中的许多不同位置来实现鲁棒性。分解。对于保真度约束,通过自适应方式来调整水印强度。在检测过程中,利用子带LL系数的统计特性和最大隶属度原理,可靠地提取了水印,而不会出现原始图像。仿真表明,该算法能够抵抗JPEG压缩,加性噪声,线性滤波,格式转换,裁剪和轻微几何失真等多种信号处理攻击,具有较强的鲁棒性。

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