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Open AccessJournal ArticleDOI

A Novel Hybrid Secure Image Encryption Based on Julia Set of Fractals and 3D Lorenz Chaotic Map

TLDR
This paper proposes a novel system that is computationally less expensive and provided a higher level of security in chaotic-based encryption schemes based on a shuffling process with fractals key along with three-dimensional Lorenz chaotic map.
Abstract
Chaos-based encryption schemes have attracted many researchers around the world in the digital image security domain. Digital images can be secured using existing chaotic maps, multiple chaotic maps, and several other hybrid dynamic systems that enhance the non-linearity of digital images. The combined property of confusion and diffusion was introduced by Claude Shannon which can be employed for digital image security. In this paper, we proposed a novel system that is computationally less expensive and provided a higher level of security. The system is based on a shuffling process with fractals key along with three-dimensional Lorenz chaotic map. The shuffling process added the confusion property and the pixels of the standard image is shuffled. Three-dimensional Lorenz chaotic map is used for a diffusion process which distorted all pixels of the image. In the statistical security test, means square error (MSE) evaluated error value was greater than the average value of 10000 for all standard images. The value of peak signal to noise (PSNR) was 7.69(dB) for the test image. Moreover, the calculated correlation coefficient values for each direction of the encrypted images was less than zero with a number of pixel change rate (NPCR) higher than 99%. During the security test, the entropy values were more than 7.9 for each grey channel which is almost equal to the ideal value of 8 for an 8-bit system. Numerous security tests and low computational complexity tests validate the security, robustness, and real-time implementation of the presented scheme.

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Citations
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Journal ArticleDOI

Chaos-based confusion and diffusion of image pixels using dynamic substitution

TL;DR: A new image encryption algorithm is presented using chaos theory and dynamic substitution based on two-dimensional Henon, Ikeda chaotic maps, and substitution box (S-box) transformation to prove the efficiency and security of the proposed scheme.
Journal ArticleDOI

A Lightweight Chaos-Based Medical Image Encryption Scheme Using Random Shuffling and XOR Operations

TL;DR: The experimental results show that the proposed cryptosystem is a lightweight approach that can achieve the desired security level for encrypting confidential image-based patients’ information.
Journal ArticleDOI

A Novel and Efficient 3D Multiple Images Encryption Scheme Based on Chaotic Systems and Swapping Operations

TL;DR: Both the simulation and the exhaustive security analyses carried out at the end vividly prove the security, resistance to the varied attacks, and the real-world applicability of the proposed cipher.
Journal ArticleDOI

A novel privacy approach of digital aerial images based on Mersenne Twister method with DNA genetic encoding and chaos

TL;DR: An innovative new cryptosystem for the processing of aerial images utilizing a chaos-based private key block cipher method so that the images are secure even on untrusted cloud servers is proposed.
Journal ArticleDOI

DNA Strands Level Scrambling Based Color Image Encryption Scheme

TL;DR: A new scheme for the encryption of color images based on the DNA strands level scrambling (DNASLS) and chaotic system has been proposed and the results of the validation metrics demonstrate the security, defiance to the number of attacks and a potential for real world application of the proposed image cipher.
References
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Book

The Fractal Geometry of Nature

TL;DR: This book is a blend of erudition, popularization, and exposition, and the illustrations include many superb examples of computer graphics that are works of art in their own right.
Journal ArticleDOI

Deterministic nonperiodic flow

TL;DR: In this paper, it was shown that nonperiodic solutions are ordinarily unstable with respect to small modifications, so that slightly differing initial states can evolve into considerably different states, and systems with bounded solutions are shown to possess bounded numerical solutions.
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Communication theory of secrecy systems

TL;DR: A theory of secrecy systems is developed on a theoretical level and is intended to complement the treatment found in standard works on cryptography.
Journal ArticleDOI

A symmetric image encryption scheme based on 3D chaotic cat maps

TL;DR: The two-dimensional chaotic cat map is generalized to 3D for designing a real-time secure symmetric encryption scheme that uses the 3D cat map to shuffle the positions of image pixels and uses another chaotic map to confuse the relationship between the cipher-image and the plain-image, thereby significantly increasing the resistance to statistical and differential attacks.
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Chaos and Nonlinear Dynamics: An Introduction for Scientists and Engineers

TL;DR: The phenomenology of chaos Towards a theory of nonlinear dynamics and chaos Quantifying chaos Special topics Appendices Index
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