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Optimal Spread Spectrum Watermark Embedding via a Multistep Feasibility Formulation

机译:通过多步可行性公式进行最佳扩频水印嵌入

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摘要

We consider optimal formulations of spread spectrum watermark embedding where the common requirements of watermarking, such as perceptual closeness of the watermarked image to the cover and detectability of the watermark in the presence of noise and compression, are posed as constraints while one metric pertaining to these requirements is optimized. We propose an algorithmic framework for solving these optimal embedding problems via a multistep feasibility approach that combines projections onto convex sets (POCS) based feasibility watermarking with a bisection parameter search for determining the optimum value of the objective function and the optimum watermarked image. The framework is general and can handle optimal watermark embedding problems with convex and quasi-convex formulations of watermark requirements with assured convergence to the global optimum. The proposed scheme is a natural extension of set-theoretic watermark design and provides a link between convex feasibility and optimization formulations for watermark embedding. We demonstrate a number of optimal watermark embeddings in the proposed framework corresponding to maximal robustness to additive noise, maximal robustness to compression, minimal frequency weighted perceptual distortion, and minimal watermark texture visibility. Experimental results demonstrate that the framework is effective in optimizing the desired characteristic while meeting the constraints. The results also highlight both anticipated and unanticipated competition between the common requirements for watermark embedding.
机译:我们考虑了扩展频谱水印嵌入的最佳公式,其中水印的常见要求(例如,水印图像与封面的感知紧密度以及在存在噪声和压缩的情况下水印的可检测性)被作为约束,而与此相关的一种度量需求已优化。我们提出了一种算法框架,通过多步可行性方法来解决这些最佳嵌入问题,该方法将基于凸集(POCS)的投影的可行性水印与对分参数搜索相结合,以确定目标函数和最佳水印图像的最优值。该框架是通用的,可以用凸水准要求和准凸水准要求来处理最优水印嵌入问题,并确保收敛到全局最优。所提出的方案是集理论水印设计的自然扩展,并为水印嵌入的凸可行性和优化公式之间提供了联系。我们在提出的框架中展示了许多最佳水印嵌入,这些嵌入对应于对加性噪声的最大鲁棒性,对压缩的最大鲁棒性,最小的频率加权感知失真和最小的水印纹理可见性。实验结果表明,该框架可有效地优化所需的特性,同时满足约束条件。结果还突出了水印嵌入的通用要求之间的预期和未预期的竞争。

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