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3D Convex Hull-Based Registration Method for Point Cloud Watermark Extraction

机译:基于3D凸壳的点云水印提取配准方法

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摘要

Most 3D point cloud watermarking techniques apply Principal Component Analysis (PCA) to protect the watermark against affine transformation attacks. Unfortunately, they fail in the case of cropping and random point removal attacks. In this work, an alternative approach is proposed that solves these issues efficiently. A point cloud registration technique is developed, based on a 3D convex hull. The scale and the initial rigid affine transformation between the watermarked and the original point cloud can be estimated in this way to obtain a coarse point cloud registration. An iterative closest point algorithm is performed after that to align the attacked watermarked point cloud to the original one completely. The watermark can then be extracted from the watermarked point cloud easily. The extensive experiments confirmed that the proposed approach resists the affine transformation, cropping, random point removal, and various combinations of these attacks. The most dangerous is an attack with noise that can be handled only to some extent. However, this issue is common to the other state-of-the-art approaches.
机译:大多数3D点云水印技术都应用主成分分析(PCA)来保护水印免受仿射变换攻击。不幸的是,它们在裁剪和随机点删除攻击的情况下失败。在这项工作中,提出了一种替代方法,可以有效解决这些问题。基于3D凸包,开发了一种点云配准技术。可以以此方式估计水印和原始点云之间的比例和初始刚性仿射变换,以获得粗糙的点云配准。此后,执行迭代最近点算法,以将受攻击的水印点云与原始云完全对齐。然后可以容易地从带水印的点云中提取水印。广泛的实验证实,所提出的方法可以抵抗仿射变换,裁剪,随机点去除以及这些攻击的各种组合。最危险的是带有噪音的攻击,这种噪音只能在某种程度上处理。但是,此问题是其他最新方法所共有的。

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