返回
Image encryption using memristive hyperchaos
DOI:10.1007/s10489-023-04727-w.png)
摘要
En 中文
In this paper, a novel image encryption algorithm (DMHM-IEA) based on a two-dimensional discrete memristive hyperchaotic map (2D-DMHM) derived from discrete memristor and improved Logistic map is proposed. The thorough performance investigation demonstrates that adding the memristor enhances the complicated dynamic characteristics and sequence unpredictability of the proposed map, making it more appropriate for usage in image encryption applications. Diffusion-permutation-diffusion is an inventive structure that DMHM-IEA uses to provide great encryption effect with just one round of encryption. In the random position permutation, pixel positions are quickly and arbitrarily changed to new positions, while the diffusion process uses main-diagonal diffusion and counter-diagonal diffusion to spread out the minor changes in the original image throughout the entire plane, resulting in a highly distinct encrypted image. The combined performance and security evaluation demonstrates that DMHM-IEA has strong tolerance to noise and data loss as well as good resistance to potential attacks. When compared to other cutting-edge algorithms, the proposed algorithm performs well in terms of security.
Keyword:
Chaos
Discrete memristor
Hyperchaotic map
Image encryption
Performance analysis
期刊
IF:
3.5
论文数:
7.6K
被引数:
1.7W
机构
引用论文
A novel chaotic image encryption technique based on multiple discrete dynamical maps一种新的基于多重离散动态映射的混沌图像加密技术
Synergistic and antagonistic ingredient interactions as a sugar reduction strategy in chocolate milk
A cross-channel color image encryption algorithm using two-dimensional hyperchaotic map一种基于二维超混沌映射的跨通道彩色图像加密算法
A novel bit-level image encryption algorithm based on 2D-LICM hyperchaotic map
SIGNAL PROCESSING
IF3.6

