Saved in:
Bibliographic Details
Main Authors: Ahsan, Hansa, Ullah, Safee, Ahmad, Jawad, Khattak, Aizaz Ahmad, Ali, Muhammad, Khan, Muhammad Shahbaz
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2503.09953
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916651412226048
author Ahsan, Hansa
Ullah, Safee
Ahmad, Jawad
Khattak, Aizaz Ahmad
Ali, Muhammad
Khan, Muhammad Shahbaz
author_facet Ahsan, Hansa
Ullah, Safee
Ahmad, Jawad
Khattak, Aizaz Ahmad
Ali, Muhammad
Khan, Muhammad Shahbaz
contents In this digital age, ensuring the security of digital data, especially the image data is critically important. Image encryption plays an important role in securing the online transmission/storage of images from unauthorized access. In this regard, this paper presents a novel diffusion-confusion-based image encryption algorithm named as X-CROSS. The diffusion phase involves a dual-layer block permutation. It involves a bit-level permutation termed Inter-Bit Transference (IBT) using a Bit-Extraction key, and pixel permutation with a unique X-crosspermutation algorithm to effectively scramble the pixels within an image. The proposed algorithm utilizes a resilient 2D chaotic map with non-linear dynamical behavior, assisting in generating complex Extraction Keys. After the permutation phase, the confusion phase proceeds with a dynamic substitution technique on the permuted images, establishing the final encryption layer. This combination of novel permutation and confusion results in the removal of the image's inherent patterns and increases its resistance to cyber-attacks. The close to ideal statistical security results for information entropy, correlation, homogeneity, contrast, and energy validate the proposed scheme's effectiveness in hiding the information within the image.
format Preprint
id arxiv_https___arxiv_org_abs_2503_09953
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle X-Cross: Image Encryption Featuring Novel Dual-Layer Block Permutation and Dynamic Substitution Techniques
Ahsan, Hansa
Ullah, Safee
Ahmad, Jawad
Khattak, Aizaz Ahmad
Ali, Muhammad
Khan, Muhammad Shahbaz
Cryptography and Security
In this digital age, ensuring the security of digital data, especially the image data is critically important. Image encryption plays an important role in securing the online transmission/storage of images from unauthorized access. In this regard, this paper presents a novel diffusion-confusion-based image encryption algorithm named as X-CROSS. The diffusion phase involves a dual-layer block permutation. It involves a bit-level permutation termed Inter-Bit Transference (IBT) using a Bit-Extraction key, and pixel permutation with a unique X-crosspermutation algorithm to effectively scramble the pixels within an image. The proposed algorithm utilizes a resilient 2D chaotic map with non-linear dynamical behavior, assisting in generating complex Extraction Keys. After the permutation phase, the confusion phase proceeds with a dynamic substitution technique on the permuted images, establishing the final encryption layer. This combination of novel permutation and confusion results in the removal of the image's inherent patterns and increases its resistance to cyber-attacks. The close to ideal statistical security results for information entropy, correlation, homogeneity, contrast, and energy validate the proposed scheme's effectiveness in hiding the information within the image.
title X-Cross: Image Encryption Featuring Novel Dual-Layer Block Permutation and Dynamic Substitution Techniques
topic Cryptography and Security
url https://arxiv.org/abs/2503.09953