Image encryption using improved Cubic map and Henon map

In this paper, constructing the improved chaotic map which multiplies the output value of the chaotic map by a large value, and subtracts its integer part. Simulation results show that the chaos range of the improved chaotic map is enlarged. The generated chaotic sequence has strong randomness. A do...

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Main Authors: Xu Yaoqun, Zhen Xinxin
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:ITM Web of Conferences
Subjects:
Online Access:https://www.itm-conferences.org/articles/itmconf/pdf/2022/05/itmconf_cscns2022_02011.pdf
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author Xu Yaoqun
Zhen Xinxin
author_facet Xu Yaoqun
Zhen Xinxin
author_sort Xu Yaoqun
collection DOAJ
description In this paper, constructing the improved chaotic map which multiplies the output value of the chaotic map by a large value, and subtracts its integer part. Simulation results show that the chaos range of the improved chaotic map is enlarged. The generated chaotic sequence has strong randomness. A double chaotic image encryption algorithm is proposed by combining the improved chaotic maps with the permutation and diffusion encryption structure. The algorithm can reduce the complexity while ensuring the encryption effect. The simulation results show that the encryption algorithm can resist statistical attack and has excellent robustness, and has a good development prospect in information security.
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spelling doaj.art-4cd071b6d84444d9899be082107ad7ab2022-12-22T03:35:51ZengEDP SciencesITM Web of Conferences2271-20972022-01-01450201110.1051/itmconf/20224502011itmconf_cscns2022_02011Image encryption using improved Cubic map and Henon mapXu Yaoqun0Zhen Xinxin1School of Computer, Harbin University of CommerceSchool of Computer, Harbin University of CommerceIn this paper, constructing the improved chaotic map which multiplies the output value of the chaotic map by a large value, and subtracts its integer part. Simulation results show that the chaos range of the improved chaotic map is enlarged. The generated chaotic sequence has strong randomness. A double chaotic image encryption algorithm is proposed by combining the improved chaotic maps with the permutation and diffusion encryption structure. The algorithm can reduce the complexity while ensuring the encryption effect. The simulation results show that the encryption algorithm can resist statistical attack and has excellent robustness, and has a good development prospect in information security.https://www.itm-conferences.org/articles/itmconf/pdf/2022/05/itmconf_cscns2022_02011.pdfcubic maphenon mapimage encryptionsecurity analysis
spellingShingle Xu Yaoqun
Zhen Xinxin
Image encryption using improved Cubic map and Henon map
ITM Web of Conferences
cubic map
henon map
image encryption
security analysis
title Image encryption using improved Cubic map and Henon map
title_full Image encryption using improved Cubic map and Henon map
title_fullStr Image encryption using improved Cubic map and Henon map
title_full_unstemmed Image encryption using improved Cubic map and Henon map
title_short Image encryption using improved Cubic map and Henon map
title_sort image encryption using improved cubic map and henon map
topic cubic map
henon map
image encryption
security analysis
url https://www.itm-conferences.org/articles/itmconf/pdf/2022/05/itmconf_cscns2022_02011.pdf
work_keys_str_mv AT xuyaoqun imageencryptionusingimprovedcubicmapandhenonmap
AT zhenxinxin imageencryptionusingimprovedcubicmapandhenonmap