Double-image encryption scheme based on the phase-truncated multiple-parameter Fresnel transform

IF 0.7 4区 物理与天体物理 Q4 OPTICS Optica Applicata Pub Date : 2022-01-01 DOI:10.37190/oa220202
Ling Zhou, _, Hang Zhou, Yan Ma, Nan-Run Zhou
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引用次数: 2

Abstract

A double-image encryption algorithm is proposed with the phase-truncated multiple-parameter Fresnel transform. Firstly, the pixel positions of two plaintext images are scrambled and then the results are merged into one image with the scrambling operation. Subsequently, the resulting image is encrypted by phase truncation and phase reservation in the multiple-parameter Fresnel transform domain. The phase information is scrambled by the affine transform and then recombined with the amplitude information. The final encryption image is obtained with the pixel scrambling and diffusion methods to further enhance the security of the image encryption system, where the scrambling and diffusion operations are based on logistic map, logistic-sine system and 2D logistic-adjusted-sine map. The image encryption scheme is robust against the common attacks due to the nonlinear properties of diffusion and phase truncation. Numerical simulation results verify the performance and the security of the proposed double-image algorithm based on the phase-truncated multiple-parameter Fresnel transform.
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基于相位截断多参数菲涅耳变换的双图像加密方案
提出了一种基于相位截断的多参数菲涅耳变换的双图像加密算法。首先对两幅明文图像的像素位置进行置乱,然后将置乱结果合并为一幅图像。然后,在多参数菲涅耳变换域中对得到的图像进行相位截断和相位保留加密。相位信息通过仿射变换进行置乱,然后与振幅信息重新组合。采用像素置乱和扩散的方法获得最终的加密图像,进一步提高图像加密系统的安全性,其中置乱和扩散操作基于逻辑图、逻辑正弦系统和二维逻辑调整正弦图。由于扩散和相位截断的非线性特性,该加密方案对常见的攻击具有鲁棒性。数值仿真结果验证了基于相位截断多参数菲涅耳变换的双图像算法的性能和安全性。
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来源期刊
Optica Applicata
Optica Applicata 物理-光学
CiteScore
1.00
自引率
16.70%
发文量
21
审稿时长
4 months
期刊介绍: Acoustooptics, atmospheric and ocean optics, atomic and molecular optics, coherence and statistical optics, biooptics, colorimetry, diffraction and gratings, ellipsometry and polarimetry, fiber optics and optical communication, Fourier optics, holography, integrated optics, lasers and their applications, light detectors, light and electron beams, light sources, liquid crystals, medical optics, metamaterials, microoptics, nonlinear optics, optical and electron microscopy, optical computing, optical design and fabrication, optical imaging, optical instrumentation, optical materials, optical measurements, optical modulation, optical properties of solids and thin films, optical sensing, optical systems and their elements, optical trapping, optometry, photoelasticity, photonic crystals, photonic crystal fibers, photonic devices, physical optics, quantum optics, slow and fast light, spectroscopy, storage and processing of optical information, ultrafast optics.
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