基于八元菲涅耳变换和正弦逻辑调制映射的非对称多图像加密

Q Physics and Astronomy
Jianzhong Li
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引用次数: 7

摘要

提出了一种利用八元菲涅耳变换(OFST)和二维正弦Logistic调制映射(2D-SLMM)的非对称多图像加密方法。首先,提出了一种新的多图像信息处理工具——八元费涅耳变换,然后提出了一种计算八元矩阵OFST的有效方法。随后,将该工具应用于以矢量方式整体处理由八元代数表示的多个明文图像。由ofst变换后的原始图像的分量形成的复振幅,通过随机相位掩模(RPM)调制,通过在菲涅耳域中采用幅度和相位截断方法来导出密文图像。为了避免将整个rpm发送到接收端进行解密,设计了一种基于SLMM的随机相位掩码生成方法,该方法只需要混沌函数的初始参数就可以生成rpm。为了提高安全性,加密过程中产生的密文和两个解密密钥通过基于slmm的置乱方法进行排列。通过数值仿真验证了该方案的有效性、高安全性和抗各种攻击能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asymmetric Multiple-Image Encryption Based on Octonion Fresnel Transform and Sine Logistic Modulation Map
A novel asymmetric multiple-image encryption method using an octonion Fresnel transform (OFST) and a two-dimensional Sine Logistic modulation map (2D-SLMM) is presented. First, a new multiple-image information processing tool termed the octonion Fresneltransform is proposed, and then an efficient method to calculate the OFST of an octonion matrix is developed. Subsequently this tool is applied to process multiple plaintext images, which are represented by octonion algebra, holistically in a vector manner. The complex amplitude, formed from the components of the OFST-transformed original images and modulated by a random phase mask (RPM), is used to derive the ciphertext image by employing an amplitude- and phase-truncation approach in the Fresnel domain. To avoid sending whole RPMs to the receiver side for decryption, a random phase mask generation method based on SLMM, in which only the initial parameters of the chaotic function are needed to generate the RPMs, is designed. To enhance security, the ciphertext and two decryption keys produced in the encryption procedure are permuted by the proposed SLMM-based scrambling method. Numerical simulations have been carried out to demonstrate the proposed scheme's validity, high security, and high resistance to various attacks.
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
0
审稿时长
2.3 months
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