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A DNA image encryption based on a new hyperchaotic system

  • 1187: Recent Advances in Multimedia Information Security: Cryptography and Steganography
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Abstract

In this paper, a new four-dimensional hyperchaotic system that has better unpredictability, more complex dynamic behavior, and a larger key space is proposed. The initial chaos value is calculated by using the Secure Hash Algorithm-512 (SHA-512) function, and the hyperchaotic sequence is then used as the key stream to encrypt the original image through pixel scrambling and pixel diffusion. The experimental results show that the image encryption algorithm has a strong ability to resist exhaustive attacks, statistical attacks and plaintext attacks.

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References

  1. Anandkumar R, Kalpana R (2018) Analyzing of Chaos based encryption with Lorenz and Henon map. In: 2018 2nd international conference on I-SMAC (IoT in social, Mobile, analytics and cloud) (I-SMAC), pp 6883-6896

  2. Arpacı B, Kurt E, Çelik K, Ciylan B (2020) Colored image encryption and decryption with a new algorithm and a Hyperchaotic electrical circuit. J Electric Eng Technol 15(21):1413–1429

    Article  Google Scholar 

  3. Banu SA, Amirtharajan R (2020) Tri-level scrambling and enhanced diffusion for DICOM image cipher- DNA and chaotic fused approach. Multimed Tools Appl 79:28807–28824

    Article  Google Scholar 

  4. Benkouider K, Bouden T, Halimi M, et al. (2019) Dynamical analysis, synchronization and circuit implementation of a new Hyperchaotic system with line equilibrium. In: 2019 6th international conference on control, decision and information technologies (CoDIT), pp 1717-1722

  5. Bibi N, Farwa S, Muhammad N, Jahngir A, Usman M (2018) A novel encryption scheme for high-contrast image data in the Fresnelet domain. PLoS One 13(11):e0194343

    Article  Google Scholar 

  6. Chen H (2019) Component fusion image encryption method based on composite chaotic model. In: 2019 4th international conference on mechanical, control and computer engineering (ICMCCE). https://doi.org/10.1109/ICMCCE48743.2019.00116

  7. Chen H (2019) Component fusion image encryption method based on composite chaotic model. In: 2019 4th international conference on mechanical, control and computer engineering (ICMCCE)

  8. Chen C, Sun K, Xu Q (2020) A color image encryption algorithm based on 2D-CIMM chaotic map. China Commun 17(5):12–20

    Article  Google Scholar 

  9. Choi U, Cho S, Kang S (2019) Color medical image encryption using 3D chaotic cat map and NCA. In: 2019 10th IFIP international conference on new technologies, mobility and security (NTMS), pp 1-5

  10. Das S, Mondal S, Sanyal M (2019) A novel approach of image encryption using Chaos and dynamic DNA sequence. In: 2019 Amity International conference on artificial intelligence (AICAI), pp 876-880

  11. Ding L, Ding Q (2020) The establishment and dynamic properties of a new 4D Hyperchaotic system with its application and statistical tests in gray images. Entropy 22(3):310

    Article  MathSciNet  Google Scholar 

  12. Durdi VB, Kulkarni PT, Sudha KL (2017) Selective encryption framework for secure multimedia transmission over wireless multimedia sensor networks. In: Proceedings of the International Conference on Data Engineering and Communication Technology. Adv Intell Syst https://doi.org/10.1007/978-981-10-1678-3_45

  13. Hua Z, Xu B, Jin F, Huang H (2019) Image encryption using Josephus problem and filtering diffusion. IEEE Access 7(7):8660–8674

  14. Hussien H (2019) DNA computing for RGB image encryption with genetic algorithm. In: 2019 14th international conference on computer engineering and systems (ICCES), pp 169-173

  15. Jarin I, Fattah S, Shahnaz C (2018) Natural and medical image encryption using self-adaptive permutation and DNA encoding. In: 2018 IEEE international WIE conference on electrical and computer engineering (WIECON-ECE), pp 99-102

  16. Jeong H, Park K, Cho S, Kim S (2018) Color medical image encryption using two-dimensional chaotic map and C-MLCA. In: 2018 tenth international conference on ubiquitous and future networks (ICUFN), pp 501-504

  17. Khan A, Singh S, Azar A T, et al. (2018) Synchronization between a novel integer-order Hyperchaotic system and a fractional-order Hyperchaotic system using tracking control. Advances in intelligent systems 921:international conference on Modelling, identification and control, pp 382-391

  18. Lakshmi C, Thenmozhi K, Rayappan J. et al. (2020) Genetic and chaotic signatures in offspring – an encrypted generation of image family. Multimedia tools and applications 1-29

  19. Li C (2016) Cracking a hierarchical chaotic image encryption algorithm based on permutation. Signal Process 118:203–210

    Article  Google Scholar 

  20. Li X, Wang Y, Xu M, Cui Y (2018) Decentralized attribute-based encryption and data sharing scheme in cloud storage. China Commun 15(2):138–152

    Article  Google Scholar 

  21. Matthews R (1989) On the derivation of a “Chaotic” encryption algorithm. Cryptologia 13(1):29–42

    Article  MathSciNet  Google Scholar 

  22. Mehdi S, Kadhim A (2019) Image encryption algorithm based on a new five dimensional Hyperchaotic system and Sudoku matrix. In: 2019 international engineering conference (IEC)

  23. Muhammad N, Bibi N (2015) Digital image watermarking using partial pivoting lower and upper triangular decomposition into the wavelet domain. IET Image Process 9(9):795–803

    Article  Google Scholar 

  24. Muhammad N, Bibi N, Mahmood Z, Akram T, Naqvi SR (2017) Reversible integer wavelet transform for blind image hiding method. PLoS One 12(5):e0176979

  25. Nestor T, Dieu N, Jacques K et al (2019) A multidimensional Hyperjerk oscillator: dynamics analysis, analogue and embedded systems implementation, and its application as a cryptosystem. Sensors 20(1):83

  26. Nestor T, Kengne J, Abd-El-Atty B et al (2020) Design and implementation of a simple dynamical 4-D chaotic circuit with applications in image encryption. Information Ences 515:191–217

  27. Niu Y, Sun X, Zhang C, Liu H (2020) Anticontrol of a fractional-order chaotic system and its application in color image encryption. Math Probl Eng 2020(4):1–12

    MathSciNet  Google Scholar 

  28. Niyat AY, Moattar MH, Torshiz MN et al (2017) Color image encryption based on hybrid hyper-chaotic system and cellular automata. Optics Lasers Eng 90(mar):225–237

    Article  Google Scholar 

  29. Noshadian S, Ebrahimzade A, Kazemitabar S (2018) Optimizing chaos based image encryption. Multimed Tools Appl 77:25569–25590

  30. Pak C, An K, Jang P, Kim J, Kim S (2019) A novel bit-level color image encryption using improved 1D chaotic map. Multimed Tools Appl 78:12027–12042

  31. Patro K, Acharya B, Nath V (2019) Secure, lossless, and noise-resistive image encryption using Chaos, hyper-chaos, and DNA sequence operation. IETE Tech Rev 37(441):1–23

    Google Scholar 

  32. Peng Y, Sun K, He S et al (2018) Parameter estimation of a complex chaotic system with unknown initial values. Eur Phys J Plus 133(8):1–13

    Article  Google Scholar 

  33. Peng Y, Sun K, He S, Peng D (2019) Parameter identification of fractional-order discrete chaotic systems. Entropy 21(1):27

    Article  Google Scholar 

  34. Ran Q, Wang L, Ma J, Tan L, Yu S (2018) A quantum color image encryption scheme based on coupled hyper-chaotic Lorenz system with three impulse injections. Quantum Inf Process 17(8):188

    Article  MathSciNet  MATH  Google Scholar 

  35. Shankar K, Eswaran P (2017) RGB based multiple share creation in visual cryptography with aid of elliptic curve cryptography. China Commun 14(2):118–130

  36. Sun S, Guo Y, Wu R (2019) A novel image encryption scheme based on 7D Hyperchaotic system and row-column simultaneous swapping. IEEE Access 7(1):28539–28547

    Article  Google Scholar 

  37. Teng L, Wang X, Meng J (2018) A chaotic color image encryption using integrated bit-level permutation. Multimed Tools Appl 77:6883–6896

  38. Tsafack N, Sankar S, Abd-El-Atty B et al (2020) A new chaotic map with dynamic analysis and encryption application in internet of health things. IEEE Access 8:137731–137744

    Article  Google Scholar 

  39. Wang Y (2014) Overview of digital image encryption based on chaos. Scie Technol Innov 0(20):169–170

    Google Scholar 

  40. Wang S, Wang C, Xu C (2020) An image encryption algorithm based on a hidden attractor chaos system and the knuth durstenfeld algorithm. Opt Lasers Eng 128:105995

  41. Xiang H, Liu L (2020) An improved digital logistic map and its application in image encryption. Multimed Tools Appl 79(3):1–27

    Google Scholar 

  42. Xie S, Liu L, Hu J, Wang A, et al. (2011) Radar signal bandwidth-scaling via parameters of a changed Lorenz chaotic system. In: 2011 international conference on electrical and control engineering, Yichang, pp 4874-4877

  43. Xu H, Jiang H (2019) An image encryption Schema based on hybrid optimized chaotic system. In: 2019 3rd international conference on electronic information technology and computer engineering (EITCE), pp 784-788

  44. Xu H, JIANG H (2019) An image encryption Schema based on hybrid optimized chaotic system. In: 2019 3rd international conference on electronic information technology and computer engineering (EITCE), pp 784-788

  45. Yang Q, Bai M (2017) new 5D hyperchaotic system based on modified generalized Lorenz system. Nonlinear Dynamics 88(1):189–221

  46. Zhang Q, Guo L, Wei X (2010) Image encryption using DNA addition combining with chaotic maps. Mathematic Comput Modell 52(11–12):2028–2035

  47. Zhong Y, Liu H, Sun X, Lan R, et al. (2018) Image encryption using 2D sine-piecewise linear chaotic map. In: 2018 international conference on wavelet analysis and pattern recognition (ICWAPR), pp 72-77

  48. Zhu Z, Zhang W, Wong K, Yu H (2011) A chaos-based symmetric image encryption scheme using a bit-level permutation. Inf Sci 181(6):1171–1186

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Correspondence to Han Liu.

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Hui, Y., Liu, H. & Fang, P. A DNA image encryption based on a new hyperchaotic system. Multimed Tools Appl 82, 21983–22007 (2023). https://doi.org/10.1007/s11042-021-10526-7

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  • DOI: https://doi.org/10.1007/s11042-021-10526-7

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