Improved vigenere using affine functions surrounded by two genetic crossovers for image encryption

Author:

El Bourakkadi HamidORCID,Chemlal AbdelhakimORCID,Tabti HassanORCID,Kattass MouradORCID,Jarjar AbdellatifORCID,Benazzi AbdelhamidORCID

Abstract

This paper presents an improved method for encrypting color images, surpassing the effectiveness of genetic crossover and substitution operations. The technique incorporates dynamic random functions to enhance the integrity of the resulting vector, increasing temporal complexity to thwart potential attacks. The improvement involves integrating genetic crossover and utilizing two extensive pseudorandom replacement tables derived from established chaotic maps in cryptography. Following the controlled vectorization of the original image, our approach initiates with a first genetic crossover inspired by deoxyribonucleic acid (DNA) behavior at the pixel level. This genetic crossover is succeeded by a confusion-diffusion lap, reinforcing the connection between encrypted pixels and their neighboring counterparts. The confusion-diffusion process employs dynamic pseudorandom affine functions at the pixel level. Then a second genetic crossover operator is applied. Simulations conducted on a diverse set of images with varying sizes and formats showcase the robustness of our method against statistical, brute-force, and differential attacks.

Publisher

Institute of Advanced Engineering and Science

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. DNA-level action accompanied by Vigenere using strong pseudo random S-box for color image encryption;Multimedia Tools and Applications;2024-07-17

2. A Novel Cryprosystem Based On An Enhanced Vigenere Algorithm Succeeded By A Randomized Partial Permutation;2024 International Conference on Circuit, Systems and Communication (ICCSC);2024-06-28

3. New Cypher Color Image Aalgorithm Using An Advanced Vigenere Method And Genetic Crossover;2024 International Conference on Circuit, Systems and Communication (ICCSC);2024-06-28

4. Image encryption through two rounds of Feistel operating at the bit level;2024 International Conference on Circuit, Systems and Communication (ICCSC);2024-06-28

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