A chaos-based augmented image encryption scheme for satellite images using Fredkin logic
Wassim Alexan, Engy Aly Maher, Eyad Mamdouh, Mohamed Youssef, Noha Ehab

TL;DR
This paper introduces a new encryption method for satellite images using chaos theory and Fredkin logic to enhance security and protect sensitive geographic data.
Contribution
A novel multistage encryption scheme using chaos and Fredkin gates for satellite images, offering high security and efficiency.
Findings
The method achieves an NPCR of 99.6115% and UACI of 31.71%, showing strong resistance to attacks.
Encryption time is 0.2817s for 256×256 images with a PSNR of 8.1 dB, indicating effective obfuscation.
Abstract
This article presents a novel augmented image encryption algorithm tailored for securing satellite images, addressing the critical need for robust protection of sensitive geographic data. Implementing Shannon’s principles of confusion and diffusion, the method begins by augmenting multiple plain images into a single large image, followed by a three-stage encryption process. Initially, the augmented image is separated into its three color channels, which are transformed into one-dimensional (1D) bit-streams, split and altered using the Gauss Circle map, and restructured via Fredkin Gates to enhance unpredictability. Subsequently, the bit-streams are converted into 1D bytes and \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek}…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsChaos-based Image/Signal Encryption · Cryptographic Implementations and Security · Advanced Steganography and Watermarking Techniques
