Optical image encryption scheme using 3-D chaotic map based joint image scrambling and random encoding in gyrator domains

We demonstrate an optical image encryption scheme using 3-D chaotic map based joint image scrambling and random encoding in gyrator domains. A novel image confusion approach that can well address the drawbacks of typical image permutation ciphers is developed to firstly shuffle the plaintext. Then t...

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Veröffentlicht in:Optics communications 2015-04, Vol.341, p.263-270
Hauptverfasser: Chen, Jun-xin, Zhu, Zhi-liang, Fu, Chong, Yu, Hai
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container_title Optics communications
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creator Chen, Jun-xin
Zhu, Zhi-liang
Fu, Chong
Yu, Hai
description We demonstrate an optical image encryption scheme using 3-D chaotic map based joint image scrambling and random encoding in gyrator domains. A novel image confusion approach that can well address the drawbacks of typical image permutation ciphers is developed to firstly shuffle the plaintext. Then the scrambled image is random phase encoded in the spatial domain and gyrator transform domain. A three-dimensional chaotic map is introduced to generate key stream elements. Simulations demonstrate that the cryptosystem has satisfactory cryptographic features and owns high robustness against noise perturbation as well as occlusion attack. •A 3-D chaotic map based joint image scrambling and random encoding is developed.•We have developed a novel image permutation approach.•A 3-D chaotic map is introduced to generate random phase masks.•Simulations prove the cryptographic features of the proposed scheme.
doi_str_mv 10.1016/j.optcom.2014.12.045
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subjects 3-D chaotic map
Chaos theory
Confusion
Cryptography
Encoding
Encryption
Gyrators
Image scrambling
Optical encryption
Permutations
Random encoding
Three dimensional
title Optical image encryption scheme using 3-D chaotic map based joint image scrambling and random encoding in gyrator domains
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