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Copyright Protection for Holographic Video Using Spatiotemporal Consistent Embedding Strategy

机译:时空一致嵌入策略的全息视频版权保护

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The interest in a three-dimensional (3-D) holographic display is increasing daily because it can generate full depth cue without utilizing any special glasses. However, the content of 3-D holographic videos currently without any protection can be illegally distributed and maliciously manipulated. Therefore, there is an urgent need to protect the copyright of holographic videos against malicious copying. Since watermarking is an effective way to protect the ownership of holographic sequence, this paper proposes a spatiotemporal consistent embedding algorithm for the holographic video watermarking. Imperceptibility requirement in the holographic video watermarking is more challenging compared with static holograms because of the temporal dimension existing in videos. The embedding algorithm should not only consider spatially embedding strength for each frame of the video, but also take the temporal dimension into account in order to guarantee the visual quality of the moving object. Before embedding, to defend the imperceptibility of the watermark from the holographic moving object, the embedding parameters are evaluated by the salient object from the interframe and intraframe. Different from the previous video watermarking algorithm, in order to ensure the robustness, in our paper, instead of two-dimensional watermark, 3-D watermark converted data (QR code) are embedded in the cellular automata (CA) domains using 3-D CA filters. Finally, the QR codes can be extracted from the watermarked holographic frames, and the final 3-D watermark can be digitally reconstructed with different depths' cue using the computational integral imaging reconstruction algorithm. The experimental results demonstrate that the proposed method exhibits superior performance compared to several methods in the literature, especially the robustness against additive noise and compression attacks.
机译:三维(3-D)全息显示的兴趣每天都在增加,因为它无需使用任何特殊的眼镜即可产生完整的深度提示。但是,当前未经任何保护的3D全息视频的内容可能会被非法分发和恶意操纵。因此,迫切需要保护全息视频的版权免受恶意复制。由于水印是一种保护全息序列所有权的有效方法,本文提出了一种时空一致的全息视频水印嵌入算法。与静态全息图相比,全息视频水印的不可感知性要求更具挑战性,因为视频中存在时间维度。嵌入算法不仅应考虑视频每一帧的空间嵌入强度,而且还应考虑时间维度,以保证运动对象的视觉质量。在嵌入之前,为了保护水印不受全息运动对象的影响,嵌入参数是由显着对象从帧间和帧内评估的。与以前的视频水印算法不同,为了确保鲁棒性,我们在本文中使用3-D将3D水印转换后的数据(QR码)嵌入二维自动水印(CA)域中,而不是二维水印。 CA过滤器。最后,可以从加水印的全息图帧中提取QR码,并使用计算积分成像重建算法以不同深度提示数字化重建最终3D水印。实验结果表明,与文献中的几种方法相比,该方法具有更好的性能,尤其是针对加性噪声和压缩攻击的鲁棒性。

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