Single-Pixel Compressive Digital Holographic Encryption System Based on Circular Harmonic Key and Parallel Phase Shifting Digital Holography

IF 1.8 4区 物理与天体物理 Q3 OPTICS International Journal of Optics Pub Date : 2022-07-14 DOI:10.1155/2022/6298010
B. Lokesh Reddy, Anith Nelleri
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引用次数: 3

Abstract

An encryption system that combines compressive sensing (CS) and two-step parallel phase shifting digital holography (PPSDH) using double random phase encoding (DRPE) is presented in this paper. The two-step PPSDH is a linear inline holographic scheme and is much suitable for encrypting the 2D/3D information in a single exposure. The distribution of random phase mask (RPM) in the DRPE is implemented using circular harmonic key which increases the security of the encryption process. In this system, the keys used to encrypt are spatial positions of the planes, wavelength, and rotation of the circular harmonics in RPMs, and CS acts as an additional key that makes the system more secure than the conventional optical encryption methods. At the transmission end, two-step PPSDH is applied to encrypt the object information in single hologram. The digital mirror device (DMD) is placed between the object and a single-pixel detector for acquiring fewer hologram measurements. At the receiver end, the single digital hologram is numerically recovered by using a CS optimization problem. The original complex object field is decrypted from the CS recovered holograms by the inversion of two-step PPSDH process with the help of the correct keys. The numerical simulations are presented for complex 2D and 3D objects to test the feasibility of the proposed encryption and decryption system. The proposed method carried out intensity and phase reconstruction of the original object field using single-pixel compressive imaging. The computer simulation results demonstrated that the encrypted information is highly secured with the rotation of the circular harmonic key. The sensitivity of the decrypted intensity and phase images is also studied with variations of the encrypted keys. The obtained results show that the proposed encryption scheme is feasible and has better security performance and robustness.
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基于圆谐波密钥和并行移相数字全息的单像素压缩数字全息加密系统
提出了一种结合压缩感知(CS)和双随机相位编码(DRPE)的两步并行移相数字全息(PPSDH)加密系统。两步PPSDH是一种线性内联全息方案,非常适合于在一次曝光中加密2D/3D信息。随机相位掩码(RPM)在DRPE中的分配采用了圆形谐波密钥,提高了加密过程的安全性。在该系统中,用于加密的密钥是rpm中平面的空间位置、波长和圆谐波的旋转,而CS作为额外的密钥,使系统比传统的光学加密方法更安全。在传输端,采用两步PPSDH对单个全息图中的目标信息进行加密。数字镜像装置(DMD)被放置在物体和单像素探测器之间,以获得更少的全息图测量。在接收端,利用CS优化问题对单个数字全息图进行了数值复原。在正确的密钥帮助下,通过两步PPSDH过程的反演,从CS恢复的全息图中解密原始复杂对象字段。对复杂的二维和三维目标进行了数值模拟,以验证所提出的加解密系统的可行性。该方法利用单像素压缩成像对原始目标场进行强度和相位重建。计算机仿真结果表明,圆形谐波密钥的旋转对加密信息具有很高的安全性。还研究了解密后的强度和相位图像随加密密钥变化的灵敏度。仿真结果表明,该加密方案是可行的,具有较好的安全性能和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Optics
International Journal of Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
3.40
自引率
5.90%
发文量
28
审稿时长
13 weeks
期刊介绍: International Journal of Optics publishes papers on the nature of light, its properties and behaviours, and its interaction with matter. The journal considers both fundamental and highly applied studies, especially those that promise technological solutions for the next generation of systems and devices. As well as original research, International Journal of Optics also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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