通过多视角图像进行三维图像认证。

Applied Optics Pub Date : 2024-02-27 DOI:10.1364/ao.514144
Zhen Leng, Jing Chen, Bo-Lan Liu
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引用次数: 0

摘要

三维(3D)光学认证对现代信息安全非常重要。现有的三维光学认证方法依赖于整体成像设备,需要进行细致的校准,并产生较高的传输开销。为了简化三维信息的获取,本文介绍了一种新颖的三维光学认证方法,据我们所知,这种方法是基于多视角图像构建三维数据。所提出的方法通过生成固定视点元素图像来简化三维投影,从而消除了传输和认证过程中对额外视点信息的需求。在传输过程中使用压缩传感技术进行压缩,并为三维重建设计了一个深度学习网络,从而提高了恢复能力。实验结果证实了我们提出的方法在不同数据集上进行三维认证的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-dimensional image authentication from multi-view images.
Three-dimensional (3D) optical authentication is important for modern information security. Existing 3D optical authentication methods rely on integral imaging devices, necessitating meticulous calibration and incurring high transmission overhead. To streamline the acquisition of 3D information, this paper introduces a novel 3D optical authentication approach, to the best of our knowledge, based on the construction of 3D data from multi-view images. The proposed method simplifies 3D projection by generating fixed-viewpoint elemental images, eliminating the need for additional viewpoint information during transmission and authentication. Compressed sensing is used for compression during transmission, and a deep learning network is designed for 3D reconstruction, enhancing the recovery. Experimental outcomes confirm the efficiency of our proposed approach for 3D authentication across diverse datasets.
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