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Article

A Chaotic-Based Encryption/Decryption Framework for Secure Multimedia Communications

1
Communications and Electronics Engineering Department, Nile Higher Institute for Engineering and Technology, Mansoura 35524, Egypt
2
Electronics and Communications Engineering Department, Faculty of Engineering, Mansoura University, Mansoura 35516, Egypt
*
Author to whom correspondence should be addressed.
Entropy 2020, 22(11), 1253; https://doi.org/10.3390/e22111253
Submission received: 10 September 2020 / Revised: 20 October 2020 / Accepted: 28 October 2020 / Published: 4 November 2020

Abstract

Chaos-based encryption has shown an increasingly important and dominant role in modern multimedia cryptography compared with traditional algorithms. This work proposes novel chaotic-based multimedia encryption schemes utilizing 2D alteration models for high secure data transmission. A novel perturbation-based data encryption for both confusion and diffusion rounds is proposed. Our chaotification structure is hybrid, in which multiple maps are combined combines for media encryption. Blended chaotic maps are used to generate the control parameters for the permutation (shuffling) and diffusion (substitution) structures. The proposed schemes not only maintain great encryption quality reproduced by chaotic, but also possess other advantages, including key sensitivity and low residual clarity. Extensive security and differential analyses documented that the proposed schemes are efficient for secure multimedia transmission as well as the encrypted media possesses resistance to attacks. Additionally, statistical evaluations using well-known metrics for specific media types, show that proposed encryption schemes can acquire low residual intelligibility with excessive nice recovered statistics. Finally, the advantages of the proposed schemes have been highlighted by comparing it against different state-of-the-art algorithms from literature. The comparative performance results documented that our schemes are extra efficacious than their data-specific counterpart methods.
Keywords: chaotic maps; multimedia cryptosystems; audio data; image encryption; chaos encryption; security analysis chaotic maps; multimedia cryptosystems; audio data; image encryption; chaos encryption; security analysis

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MDPI and ACS Style

Yasser, I.; Mohamed, M.A.; Samra, A.S.; Khalifa, F. A Chaotic-Based Encryption/Decryption Framework for Secure Multimedia Communications. Entropy 2020, 22, 1253. https://doi.org/10.3390/e22111253

AMA Style

Yasser I, Mohamed MA, Samra AS, Khalifa F. A Chaotic-Based Encryption/Decryption Framework for Secure Multimedia Communications. Entropy. 2020; 22(11):1253. https://doi.org/10.3390/e22111253

Chicago/Turabian Style

Yasser, Ibrahim, Mohamed A. Mohamed, Ahmed S. Samra, and Fahmi Khalifa. 2020. "A Chaotic-Based Encryption/Decryption Framework for Secure Multimedia Communications" Entropy 22, no. 11: 1253. https://doi.org/10.3390/e22111253

APA Style

Yasser, I., Mohamed, M. A., Samra, A. S., & Khalifa, F. (2020). A Chaotic-Based Encryption/Decryption Framework for Secure Multimedia Communications. Entropy, 22(11), 1253. https://doi.org/10.3390/e22111253

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