计算机科学 ›› 2024, Vol. 51 ›› Issue (6A): 230500007-11.doi: 10.11896/jsjkx.230500007

• 信息安全 • 上一篇    下一篇

一种改进类提升方案的双彩色图像加密系统

王宾, 李海啸, 陈蓉蓉   

  1. 大连大学先进设计与智能计算重点实验室 辽宁 大连 116622
  • 发布日期:2024-06-06
  • 通讯作者: 王宾(wangbin@dlu.edu.cn)
  • 基金资助:
    111项目(D23006);国家自然科学基金(62272079);辽宁省自然科学基金(2022-KF-12-14);辽宁省人工智能创新发展计划项目(2023JH26,10300025)大连市杰出青年科技人才支持计划(2022RJ08);大连市基础研究重大项目(2023JJ11CG002)

Dual-color Image Encryption System with Improved Lifting-like Scheme

WANG Bin, LI Haixiao, CHEN Rongrong   

  1. Key Laboratory of Advanced Design and Intelligent Computing,Dalian University,Dalian,Liaoning 116622,China
  • Published:2024-06-06
  • About author:WANG Bin,born in 1983,professor.His main research interests include information security and biocomputing.
  • Supported by:
    111 Project(D23006),National Natural Science Foundation of China(62272079),Natural Science Foundation of Liaoning Province(2022-KF-12-14),Artificial Intelligence Innovation Development Plan Project of Liaoning Province(2023JH26/10300025),Dalian Outstanding Young Science and Technology Talent Support Program(2022RJ08) and Dalian Major Projects of Basic Research(2023JJ11CG002).

摘要: 如今图像信息安全面临着严峻的考验,而图像加密技术是应对这一考验最有效的手段之一。由于提升方案在图像加密中具有更快的加解密速度和良好的安全性,所以越来越多基于提升方案的加密系统被提出。文中提出了一种改进类提升方案的双彩色图像加密系统。首先,将彩色图像分成3个通道:R通道、G通道和B通道。然后,将每个图像分别当成魔方的6个面,使用随机序列控制魔方的旋转,从而达到置乱和加密图像的效果。其次,为了使整个系统具有更高的安全性,将改进类提升方案的更新和预测函数由类感知器网络(Perceptron-Like Network,PLN)代替。与原先运算简单的线性函数相比,PLN具有更加复杂的计算和不可预测性。通过所提结构得到的加密图像具有更高的加密质量,因此可以更好地将图像信息扩散到各个像素之间。大量的实验结果表明,该系统可以很好地抵抗各种攻击,具有很高的安全性;并且本系统对普通图像和密钥都具有很强的敏感性,因此可以应用于实际的图像加密。

关键词: 图像加密, 类提升方案, 超混沌, 混沌加密系统

Abstract: Today’s image information security is facing a severe challenge,and image encryption technology is one of the most effective means to solve this problem.Since the lifting scheme has faster encryption and decryption speed and good security in image encryption,more and more encryption systems based on lifting schemes have been proposed.This paper proposes a dual-color image encryption system with an improved class-boosting scheme.First,the color image is divided into three channels:R channel,G channel and B channel.Then each image is regarded as six faces of the Rubik’s Cube,and the rotation of the Rubik’s Cube is controlled by a random sequence,to achieve the effect of scrambling and encrypting the image.Secondly,in order to make the entire system more secure,the update and prediction functions of the improved lifting-like scheme are replaced by the perceptron-like network(PLN).Compared with the original simple linear function,PLN has more complex calculations and unpredictability.The encrypted image obtained by the structure proposed in this paper has higher encryption quality,so the image information can be better diffused to each pixel.Experiment results show that the system can resist various attacks very well and has high security.And this system is very sensitive to common images and keys,so it can be applied to actual image encryption.

Key words: Image encryption, Lifting-like scheme, Hyper chaos, Chaotic encryption system

中图分类号: 

  • TP309.7
[1]SEYEDZADEH S M,MIRZAKUCHAKI S.A fast color image encryption algorithm based on coupled two-dimensional piecewise chaotic map[J].Signal Processing,2012,92(5):1202-1215.
[2]IQBAL N,HANIF M,ABBAS S,et al.Dynamic 3D scrambled image based RGB image encryption scheme using hyperchaotic system and DNA encoding[J].Journal of Information Security and Applications,2021,58.
[3]ZHOU S H,ZHANG Q,WEI X P,et al.A Summarization on Image Encryption[J].Iete Technical Review,2010,27(6):503-510.
[4]MATTHEWS R.On the derivation of a "chaotic" encryption algorithm[J].Cryptologia,1989,13(1):29-42.
[5]ZHOU Y C,BAO L,CHEN C L P.A new 1D chaotic system for image encryption[J].Signal Processing,2014,97:172-82.
[6]XIAN Y J,WANG X Y,YAN X P,et al.Image EncryptionBased on Chaotic Sub-Block Scrambling and Chaotic Digit Selection Diffusion[J].Optics and Lasers in Engineering,2020,134:13.
[7]MIRZAEI O,YAGHOOBI M,IRANI H.A new image encryption method:parallel sub-image encryption with hyper chaos[J].Nonlinear Dynamics,2012,67(1):557-566.
[8]FRIDRICH J.Symmetric ciphers based on two-dimensional chao-tic maps[J].International Journal of Bifurcation and Chaos,1998,8(6):1259-1284.
[9]ZHAO F X,LIU M Z,WANG K,et al.Color image encryption via Henon-zigzag map and chaotic restricted Boltzmann machine over Blockchain[J].Opt Laser Technol,2021,135:13.
[10]ZHOU J,ZHOU N R,GONG L H.Fast color image encryption scheme based on 3D orthogonal Latin squares and matching matrix[J].Opt Laser Technol,2020,131:14.
[11]CHAI X L,BI J Q,GAN Z H,et al.Color image compression and encryption scheme based on compressive sensing and double random encryption strategy[J].Signal Processing,2020,176:18.
[12]BRAHIM A H,PACHA A A,SAID N H.Image encryptionbased on compressive sensing and chaos systems[J].Opt Laser Technol,2020,132:10.
[13]JOLFAEI A,WU X W,MUTHUKKUMARASAMY V.On the Security of Permutation-Only Image Encryption Schemes[J].IEEE Trans Inf Forensic Secur,2016,11(2):235-246.
[14]LI M,LU D D,XIANG Y,et al.Cryptanalysis and improvement in a chaotic image cipher using two-round permutation and diffusion[J].Nonlinear Dynamics,2019,96(1):31-47.
[15]ZHANG Y.The fast image encryption algorithm based on lifting scheme and chaos[J].Inf Sci,2020,520:177-194.
[16]ZHANG Y.A new unified image encryption algorithm based on a lifting transformation and chaos[J].Inf Sci,2021,547:307-327.
[17]WANG S C,WANG C H,XU C.An image encryption algorithm based on a hidden attractor chaos system and the Knuth-Durstenfeld algorithm[J].Optics and Lasers in Engineering,2020,128:14.
[18]ZHANG Y,CHEN A G,TANG Y J,et al.Plaintext-relatedimage encryption algorithm based on perceptron-like network[J].Inf Sci,2020,526:180-202.
[19]KAYALVIZHI S,MALARVIZHI S.A novel encrypted compressive sensing of images based on fractional order hyper chao-tic Chen system and DNA operations[J].Multimedia Tools and Applications,2020,79(5/6):3957-3974.
[20]HOSNY K M,KAMAL S T,DARWISH M M.Novel encryption for color images using fractional-order hyperchaotic system[J].Journal of Ambient Intelligence and Humanized Computing,2022,13(2):973-988.
[21]GHADIRLI H M,NODEHI A,ENAYATIFAR R.An overview of encryption algorithms in color images[J].Signal Processing,2019,164:163-185.
[22]QIU H,XU X,JIANG Z,et al.A color image encryption algorithm based on hyperchaotic map and Rubik’s Cube scrambling[J].Nonlinear Dynamics,2022,110(3):2869-2887.
[23]HUA Z Y,ZHU Z H,CHEN Y Y,et al.Color image encryptionusing orthogonal Latin squares and a new 2D chaotic system[J].Nonlinear Dynamics,2021,104(4):4505-4522.
[24]TENG L,WANG X,YANG F,et al.Color image encryptionbased on cross 2D hyperchaotic map using combined cycle shift scrambling and selecting diffusion[J].Nonlinear Dynamics,2021,105(2):1859-1876.
[25]LIU H,KADIR A,XU C.Color image encryption with cipher feedback and coupling chaotic map[J].International Journal of Bifurcation and Chaos,2020,30(12):2050173.
[26]LIU H,ZHANG Y,KADIR A,et al.Image encryption using complex hyper chaotic system by injecting impulse into parameters[J].Applied Mathematics and Computation,2019,360:83-93.
[27]ZHANG Z,TANG J,ZHANG F,et al.Color image encryption using 2D sine-cosine coupling map[J].IEEE Access,2022,10:67669-67685.
[28]CHEN J,TANG J,ZHANG F,et al.A novel digital color image encryption algorithm based on a new 4-D hyper-chaotic system and an improved S-box[J].Int.J.Innov.Comput.,Inf.Control,2022,18(1):73-92.
[29]ZHANG Y Q,HE Y,LI P,et al.A new color image encryption scheme based on 2DNLCML system and genetic operations[J].Optics and Lasers in Engineering,2020,128:106040.
[30]WU Y,NOONAN J P,AGAIAN S.NPCR and UACI randomness tests for image encryption[J].Cyber Journals:Multidisciplinary Journals in Science and Technology,Journal of Selected Areas in Telecommunications (JSAT),2011,1(2):31-38.
[31]IHSAN A,DOGˇAN N J M T,APPLICATIONS.Improved affine encryption algorithm for color images using LFSR and XOR encryption[J].Multimedia Tools and Applications,2023,82(5):7621-7637.
[32]AHMAD I,SHIN S.A novel hybrid image encryption-compression scheme by combining chaos theory and number theory[J].Signal Processing:Image Communication,2021,98:116418.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!