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Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System

Image encryption techniques protect private images from unauthorized access while they are being transmitted. Previously used confusion and diffusion processes are risky and time-consuming. Therefore, finding a solution to this problem has become necessary. In this paper, we propose a new image encr...

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Autores principales: Ali, Wajid, Zhu, Congxu, Latif, Rabia, Asim, Muhammad, Tariq, Muhammad Usman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10217415/
https://www.ncbi.nlm.nih.gov/pubmed/37238542
http://dx.doi.org/10.3390/e25050787
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author Ali, Wajid
Zhu, Congxu
Latif, Rabia
Asim, Muhammad
Tariq, Muhammad Usman
author_facet Ali, Wajid
Zhu, Congxu
Latif, Rabia
Asim, Muhammad
Tariq, Muhammad Usman
author_sort Ali, Wajid
collection PubMed
description Image encryption techniques protect private images from unauthorized access while they are being transmitted. Previously used confusion and diffusion processes are risky and time-consuming. Therefore, finding a solution to this problem has become necessary. In this paper, we propose a new image encryption scheme that combines the Intertwining Logistic Map (ILM) and Orbital Shift Pixels Shuffling Method (OSPSM). The proposed encryption scheme applies a technique for confusion inspired by the rotation of planets around their orbits. We linked the technique of changing the positions of planets around their orbits with the shuffling technique of pixels and combined it with chaotic sequences to disrupt the pixel positions of the plain image. First, randomly selected pixels from the outermost orbit are rotated to shift the pixels in that orbit, causing all pixels in that orbit to change their original position. This process is repeated for each orbit until all pixels have been shifted. This way, all pixels are randomly scrambled on their orbits. Later on, the scrambled pixels are converted into a 1D long vector. The cyclic shuffling is applied using the key generated by the ILM to a 1D long vector and reshaped into a 2D matrix. Then, the scrambled pixels are converted into a 1D long vector to apply cyclic shuffle using the key generated by the ILM. After that, the 1D long vector is converted into a 2D matrix. For the diffusion process, using ILM generates a mask image, which is then XORed with the transformed 2D matrix. Finally, a highly secure and unrecognizable ciphertext image is obtained. Experimental results, simulation analysis, security evaluation, and comparison with existing image encryption schemes show that it has a strong advantage in defending against common attacks, and the operating speed of this encryption scheme also performs excellently in practical image encryption applications.
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spelling pubmed-102174152023-05-27 Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System Ali, Wajid Zhu, Congxu Latif, Rabia Asim, Muhammad Tariq, Muhammad Usman Entropy (Basel) Article Image encryption techniques protect private images from unauthorized access while they are being transmitted. Previously used confusion and diffusion processes are risky and time-consuming. Therefore, finding a solution to this problem has become necessary. In this paper, we propose a new image encryption scheme that combines the Intertwining Logistic Map (ILM) and Orbital Shift Pixels Shuffling Method (OSPSM). The proposed encryption scheme applies a technique for confusion inspired by the rotation of planets around their orbits. We linked the technique of changing the positions of planets around their orbits with the shuffling technique of pixels and combined it with chaotic sequences to disrupt the pixel positions of the plain image. First, randomly selected pixels from the outermost orbit are rotated to shift the pixels in that orbit, causing all pixels in that orbit to change their original position. This process is repeated for each orbit until all pixels have been shifted. This way, all pixels are randomly scrambled on their orbits. Later on, the scrambled pixels are converted into a 1D long vector. The cyclic shuffling is applied using the key generated by the ILM to a 1D long vector and reshaped into a 2D matrix. Then, the scrambled pixels are converted into a 1D long vector to apply cyclic shuffle using the key generated by the ILM. After that, the 1D long vector is converted into a 2D matrix. For the diffusion process, using ILM generates a mask image, which is then XORed with the transformed 2D matrix. Finally, a highly secure and unrecognizable ciphertext image is obtained. Experimental results, simulation analysis, security evaluation, and comparison with existing image encryption schemes show that it has a strong advantage in defending against common attacks, and the operating speed of this encryption scheme also performs excellently in practical image encryption applications. MDPI 2023-05-12 /pmc/articles/PMC10217415/ /pubmed/37238542 http://dx.doi.org/10.3390/e25050787 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ali, Wajid
Zhu, Congxu
Latif, Rabia
Asim, Muhammad
Tariq, Muhammad Usman
Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System
title Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System
title_full Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System
title_fullStr Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System
title_full_unstemmed Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System
title_short Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System
title_sort image encryption scheme based on orbital shift pixels shuffling with ilm chaotic system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10217415/
https://www.ncbi.nlm.nih.gov/pubmed/37238542
http://dx.doi.org/10.3390/e25050787
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