Cartoon Image Encryption Algorithm by a Fractional-Order Memristive Hyperchaos

Based on the Adomian decomposition method and Lyapunov stability theory, this paper constructs a fractional-order memristive hyperchaos. Then, the 0–1 test analysis is applied to detect random nature of chaotic sequences exhibited by the fractional-order systems. Comparing with the corresponding int...

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Main Authors: Shu-ying Wang, Jian-feng Zhao, Xiao-yan Wang, Li-tao Zhang
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Journal of Electrical and Computer Engineering
Online Access:http://dx.doi.org/10.1155/2019/4505969
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author Shu-ying Wang
Jian-feng Zhao
Xiao-yan Wang
Li-tao Zhang
author_facet Shu-ying Wang
Jian-feng Zhao
Xiao-yan Wang
Li-tao Zhang
author_sort Shu-ying Wang
collection DOAJ
description Based on the Adomian decomposition method and Lyapunov stability theory, this paper constructs a fractional-order memristive hyperchaos. Then, the 0–1 test analysis is applied to detect random nature of chaotic sequences exhibited by the fractional-order systems. Comparing with the corresponding integer-order hyperchaotic system, the fractional-order hyperchaos possesses higher complexity. Finally, an image encryption algorithm is proposed based on the fractional-order memristive hyperchaos. Security and performance analysis indicates that the proposed chaos-based image encryption algorithm is highly resistant to statistical attacks.
format Article
id doaj-art-6b28a4d85eae4319a671dc3f2195af90
institution Kabale University
issn 2090-0147
2090-0155
language English
publishDate 2019-01-01
publisher Wiley
record_format Article
series Journal of Electrical and Computer Engineering
spelling doaj-art-6b28a4d85eae4319a671dc3f2195af902025-02-03T01:26:49ZengWileyJournal of Electrical and Computer Engineering2090-01472090-01552019-01-01201910.1155/2019/45059694505969Cartoon Image Encryption Algorithm by a Fractional-Order Memristive HyperchaosShu-ying Wang0Jian-feng Zhao1Xiao-yan Wang2Li-tao Zhang3Huanghe Science and Technology College, Zhengzhou, ChinaCollege of Information Engineering, Henan Polytechnic, Zhengzhou, ChinaCollege of Information Engineering, Henan Polytechnic, Zhengzhou, ChinaCollege of Science, Zhengzhou University of Aeronautics, Zhengzhou 450015, ChinaBased on the Adomian decomposition method and Lyapunov stability theory, this paper constructs a fractional-order memristive hyperchaos. Then, the 0–1 test analysis is applied to detect random nature of chaotic sequences exhibited by the fractional-order systems. Comparing with the corresponding integer-order hyperchaotic system, the fractional-order hyperchaos possesses higher complexity. Finally, an image encryption algorithm is proposed based on the fractional-order memristive hyperchaos. Security and performance analysis indicates that the proposed chaos-based image encryption algorithm is highly resistant to statistical attacks.http://dx.doi.org/10.1155/2019/4505969
spellingShingle Shu-ying Wang
Jian-feng Zhao
Xiao-yan Wang
Li-tao Zhang
Cartoon Image Encryption Algorithm by a Fractional-Order Memristive Hyperchaos
Journal of Electrical and Computer Engineering
title Cartoon Image Encryption Algorithm by a Fractional-Order Memristive Hyperchaos
title_full Cartoon Image Encryption Algorithm by a Fractional-Order Memristive Hyperchaos
title_fullStr Cartoon Image Encryption Algorithm by a Fractional-Order Memristive Hyperchaos
title_full_unstemmed Cartoon Image Encryption Algorithm by a Fractional-Order Memristive Hyperchaos
title_short Cartoon Image Encryption Algorithm by a Fractional-Order Memristive Hyperchaos
title_sort cartoon image encryption algorithm by a fractional order memristive hyperchaos
url http://dx.doi.org/10.1155/2019/4505969
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AT jianfengzhao cartoonimageencryptionalgorithmbyafractionalordermemristivehyperchaos
AT xiaoyanwang cartoonimageencryptionalgorithmbyafractionalordermemristivehyperchaos
AT litaozhang cartoonimageencryptionalgorithmbyafractionalordermemristivehyperchaos