A Hybrid Digital and Optical Double Color Image Encryption Scheme Using a Nine-Dimensional Chaotic System

Rusul Abdulridha Muttashar, R. Fyath
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Abstract

A nine-dimensional (9D) chaotic-based hybrid digital/optical Encryption (HDOE) scheme is proposed for a double color image. The 9D chaotic sequences are grouped into three independent sets, each responsible for the encryption of one of the RGB channels. Thus, the three color channels are encrypted separately, enhancing the security level and robustness of the encryption process. The digital encryption (DE) part uses fusion and scrambling and is interrupted by a chaotic color image controlled by three of the chaotic sequences, one from each set. The optical encryption (OE) part is implemented in the optical Fourier transform (FT) domain and assisted by two chaotic phase masks (CPMs) for phase-encoding operation. The color CPM is constructed by three chaotic sequences, one from each chaotic sequences sets. The proposed HDOE scheme yields very-high entropy (7.9988), which is very close to the ideal case (8).
一种基于九维混沌系统的数字与光学混合双色图像加密方案
提出了一种基于九维混沌的双色图像混合数字/光学加密(HDOE)方案。9D混沌序列被分成三个独立的集合,每个集合负责一个RGB通道的加密。因此,三种颜色通道分别加密,提高了加密过程的安全性和鲁棒性。数字加密(DE)部分采用融合和置乱,并由三个混沌序列控制的混沌彩色图像中断,每组一个。光学加密(OE)部分在光学傅里叶变换(FT)域中实现,并辅以两个混沌相位掩模(cpm)进行相位编码操作。颜色CPM由三个混沌序列组成,每个混沌序列集一个。提出的HDOE方案产生非常高的熵(7.9988),非常接近理想情况(8)。
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