He Yi, Zhang Ying-Qian, He Xin, Wang Xing-Yuan
City Institute, Dalian University of Technology, Dalian, 116600, China.
School of Information Science & Technology, Xiamen University Tan Kah Kee College, Zhangzhou, 363105, China.
Sci Rep. 2021 Mar 18;11(1):6398. doi: 10.1038/s41598-021-85377-1.
In this paper, a novel image encryption algorithm based on the Once Forward Long Short Term Memory Structure (OF-LSTMS) and the Two-Dimensional Coupled Map Lattice (2DCML) fractional-order chaotic system is proposed. The original image is divided into several image blocks, each of which is input into the OF-LSTMS as a pixel sub-sequence. According to the chaotic sequences generated by the 2DCML fractional-order chaotic system, the parameters of the input gate, output gate and memory unit of the OF-LSTMS are initialized, and the pixel positions are changed at the same time of changing the pixel values, achieving the synchronization of permutation and diffusion operations, which greatly improves the efficiency of image encryption and reduces the time consumption. In addition the 2DCML fractional-order chaotic system has better chaotic ergodicity and the values of chaotic sequences are larger than the traditional chaotic system. Therefore, it is very suitable to image encryption. Many simulation results show that the proposed scheme has higher security and efficiency comparing with previous schemes.
本文提出了一种基于一次前向长短期记忆结构(OF-LSTMS)和二维耦合映射格子(2DCML)分数阶混沌系统的新型图像加密算法。将原始图像划分为若干图像块,每个图像块作为一个像素子序列输入到OF-LSTMS中。根据2DCML分数阶混沌系统生成的混沌序列,对OF-LSTMS的输入门、输出门和记忆单元的参数进行初始化,在改变像素值的同时改变像素位置,实现置乱和扩散操作的同步,大大提高了图像加密效率,减少了时间消耗。此外,2DCML分数阶混沌系统具有更好的混沌遍历性,混沌序列的值比传统混沌系统的大。因此,它非常适合用于图像加密。许多仿真结果表明,与以前的方案相比,该方案具有更高的安全性和效率。