加密
计算机科学
混乱的
全息术
算法
计算机视觉
人工智能
计算机网络
物理
光学
作者
Bing Han,Zhaoyuan Yu,Jia-Hui Ji,Xu Zhong,Xiang Yin,Xiaoyan Qin
摘要
In the context of increasing demand for secure 3D object encryption and the development of holographic technology, this paper proposes a multi-depth, full-color holographic encryption system based on a hierarchical chaotic algorithm (HCA). A high-quality three-dimensional mesh is automatically generated from a two-dimensional image, which is more efficient and versatile than using a depth camera to generate a 3D mesh. The 3D information is divided into multiple layers by point cloud gridding (PCG) processing, and then these layers are encoded into computer-generated holograms (CGHs). The HCA utilizes a 2D chaotic mapping to encrypt the holograms in each layer, which ensures high key sensitivity and a large key space and enhances the security of 3D image encryption. The simulation results demonstrate the robustness and efficiency of our proposed method, and optical experiments verify the feasibility of the method.
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