• 제목/요약/키워드: Chaotic Encryption

검색결과 52건 처리시간 0.027초

Image Encryption Based on Quadruple Encryption using Henon and Circle Chaotic Maps

  • Hanchinamani, Gururaj;Kulkarni, Linganagouda
    • Journal of Multimedia Information System
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    • 제2권2호
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    • pp.193-206
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    • 2015
  • In this paper a new approach for image encryption based on quadruple encryption with dual chaotic maps is proposed. The encryption process is performed with quadruple encryption by invoking the encrypt and decrypt routines with different keys in the sequence EDEE. The decryption process is performed in the reverse direction DDED. The key generation for the quadruple encryption is achieved with a 1D Circle map. The chaotic values for the encrypt and decrypt routines are generated by using a 2D Henon map. The Encrypt routine E is composed of three stages i.e. permutation, pixel value rotation and diffusion. The permutation is achieved by: row and column scrambling with chaotic values, exchanging the lower and the upper principal and secondary diagonal elements based on the chaotic values. The second stage circularly rotates all the pixel values based on the chaotic values. The last stage performs the diffusion in two directions (forward and backward) with two previously diffused pixels and two chaotic values. The security and performance of the proposed scheme are assessed thoroughly by using the key space, statistical, differential, entropy and performance analysis. The proposed scheme is computationally fast with security intact.

다중변수 혼돈계를 이용한 이미지 암호화 방법의 설계 및 구현 (Design and Implementation of Image Encryption Method for Multi-Parameter Chaotic System)

  • 임거수
    • 융합보안논문지
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    • 제8권3호
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    • pp.57-64
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    • 2008
  • 컴퓨터성능의 향상과 인터넷의 발달로 인하여 디지털 이미지의 보안에 대한 중요성이 계속 증가 하고 있고, 이런 현상때문에 혼돈신호를 이용한 암호화 알고리즘은 새롭고 효과적인 이미지 암호화 방법중의 하나로 제시되고 있다. 본 논문에서 우리는 기존의 혼돈신호를 이용한 암호화 방법의 혼돈신호가 특정 값에 변중된 분포로 생성되는 현상에 대한 암호화의 문제점을 보이고 우리가 설계한 다중변수 혼돈계를 이용한 암호화 알고리즘은 혼돈신호의 분포가 생성되는 신호의 전체 영역에 일정한 분포로 발생되는 것을 보인다. 우리는 이미지를 암호화하고 복호화한 결과값으로 우리가 제시한 다중변수 혼돈계를 이용한 암호화 방법의 타당성을 제시한다.

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New chaotic map development and its application in encrypted color image

  • JarJar, Abdellatif
    • Journal of Multimedia Information System
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    • 제8권2호
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    • pp.131-142
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    • 2021
  • This paper traces the process of constructing a new one-dimensional chaotic map, and will provide a simple application in color image encryption. The use of Sarkovskii's theorem will make it possible to determine the existence of chaos and restrict all conditions to ensure the existence of this new sequence. In addition, the sensitivity to initial conditions will be proved by Lyapunov's index value. Similarly, the performance of this new chaotic map will be illustrated graphically and compared with other chaotic maps most commonly used in cryptography. Finally, a humble color image encryption application will show the power of this new chaotic map.

Image Encryption with The Cross Diffusion of Two Chaotic Maps

  • Jiao, Ge;Peng, Xiaojiang;Duan, Kaiwen
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제13권2호
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    • pp.1064-1079
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    • 2019
  • Information security has become increasingly important with the rapid development of mobile devices and internet. An efficient encryption system is a key to this end. In this paper, we propose an image encryption method based on the cross diffusion of two chaotic maps. We use two chaotic sequences, namely the Logistic map and the Chebyshev map, for key generation which has larger security key space than single one. Moreover, we use these two sequences for further image encryption diffusion which decreases the correlation of neighboring pixels significantly. We conduct extensive experiments on several well-known images like Lena, Baboon, Koala, etc. Experimental results show that our algorithm has the characteristics of large key space, fast, robust to statistic attack, etc.

An Efficient Image Encryption Scheme Based on Quintuple Encryption Using Gumowski-Mira and Tent Maps

  • Hanchinamani, Gururaj;Kulkarni, Linganagouda
    • International Journal of Contents
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    • 제11권4호
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    • pp.56-69
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    • 2015
  • This paper proposes an efficient image encryption scheme based on quintuple encryption using two chaotic maps. The encryption process is realized with quintuple encryption by calling the encrypt(E) and decrypt(D) functions five times with five different keys in the form EDEEE. The decryption process is accomplished in the reverse direction by invoking the encrypt and decrypt functions in the form DDDED. The keys for the quintuple encryption/decryption processes are generated by using a Tent map. The chaotic values for the encrypt/decrypt operations are generated by using a Gumowski-Mira map. The encrypt function E is composed of three stages: permutation, pixel value rotation and diffusion. The permutation stage scrambles all the rows and columns to chaotically generated positions. This stage reduces the correlation radically among the neighboring pixels. The pixel value rotation stage circularly rotates all the pixels either left or right, and the amount of rotation is based on chaotic values. The last stage performs the diffusion four times by scanning the image in four different directions: Horizontally, Vertically, Principal diagonally and Secondary diagonally. Each of the four diffusion steps performs the diffusion in two directions (forward and backward) with two previously diffused pixels and two chaotic values. This stage ensures the resistance against the differential attacks. The security and performance of the proposed method is investigated thoroughly by using key space, statistical, differential, entropy and performance analysis. The experimental results confirm that the proposed scheme is computationally fast with security intact.

Modified Multi-Chaotic Systems that are Based on Pixel Shuffle for Image Encryption

  • Verma, Om Prakash;Nizam, Munazza;Ahmad, Musheer
    • Journal of Information Processing Systems
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    • 제9권2호
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    • pp.271-286
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    • 2013
  • Recently, a pixel-chaotic-shuffling (PCS) method has been proposed by Huang et al. for encrypting color images using multiple chaotic systems like the Henon, the Lorenz, the Chua, and the Rossler systems. All of which have great encryption performance. The authors claimed that their pixel-chaotic-shuffle (PCS) encryption method has high confidential security. However, the security analysis of the PCS method against the chosen-plaintext attack (CPA) and known-plaintext attack (KPA) performed by Solak et al. successfully breaks the PCS encryption scheme without knowing the secret key. In this paper we present an improved shuffling pattern for the plaintext image bits to make the cryptosystem proposed by Huang et al. resistant to chosen-plaintext attack and known-plaintext attack. The modifications in the existing PCS encryption method are proposed to improve its security performance against the potential attacks described above. The Number of Pixel Change Rate (NPCR), Unified Average Changed Intensity (UACI), information entropy, and correlation coefficient analysis are performed to evaluate the statistical performance of the modified PCS method. The simulation analysis reveals that the modified PCS method has better statistical features and is more resistant to attacks than Huang et al.'s PCS method.

PLCM을 이용한 128비트 카오스 블록 암호화 기법 (128-Bit Chaotic Block Encryption Scheme Using a PLCM)

  • 이성우;이민구;박정렬;신재호
    • 정보통신설비학회논문지
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    • 제4권2호
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    • pp.19-27
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    • 2005
  • In this paper, we propose 128-bit chaotic block encryption scheme using a PLCM (Piecewise Linear Chaotic Map) having a good dynamical property. The proposed scheme has a block size of 128- bit and a key size of 128-bit. The encrypted code is generated from the output of PLCM. We show the proposed scheme is very secure against statistical attacks and have very good avalanche effect and randomness properties.

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Quantized DCT Coefficient Category Address Encryption for JPEG Image

  • Li, Shanshan;Zhang, Yuanyuan
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제10권4호
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    • pp.1790-1806
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    • 2016
  • Digital image encryption is widely used for image data security. JPEG standard compresses image with great performance on reducing file size. Thus, to encrypt an image in JPEG format we should keep the quality of original image and reduced size. This paper proposes a JPEG image encryption scheme based on quantized DC and non-zero AC coefficients inner category scrambling. Instead of coefficient value encryption, the address of coefficient is encrypted to get the address of cipher text. Then 8*8 blocks are shuffled. Chaotic iteration is employed to generate chaotic sequences for address scrambling and block shuffling. Analysis of simulation shows the proposed scheme is resistant to common attacks. Moreover, the proposed method keeps the file size of the encrypted image in an acceptable range compared with the plain text. To enlarge the cipher text possible space and improve the resistance to sophisticated attacks, several additional procedures are further developed. Contrast experiments verify these procedures can refine the proposed scheme and achieve significant improvements.

An Efficient Chaotic Image Encryption Algorithm Based on Self-adaptive Model and Feedback Mechanism

  • Zhang, Xiao;Wang, Chengqi;Zheng, Zhiming
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제11권3호
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    • pp.1785-1801
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    • 2017
  • In recent years, image encryption algorithms have been developed rapidly in order to ensure the security of image transmission. With the assistance of our previous work, this paper proposes a novel chaotic image encryption algorithm based on self-adaptive model and feedback mechanism to enhance the security and improve the efficiency. Different from other existing methods where the permutation is performed by the self-adaptive model, the initial values of iteration are generated in a novel way to make the distribution of initial values more uniform. Unlike the other schemes which is on the strength of the feedback mechanism in the stage of diffusion, the piecewise linear chaotic map is first introduced to produce the intermediate values for the sake of resisting the differential attack. The security and efficiency analysis has been performed. We measure our scheme through comprehensive simulations, considering key sensitivity, key space, encryption speed, and resistance to common attacks, especially differential attack.

다중 카오스 사상을 이용한 영상 암호시스템 설계 (Design of image encryption system using multiple chaotic maps)

  • 이성우;신재호
    • 정보보호학회논문지
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    • 제14권4호
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    • pp.183-194
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    • 2004
  • 인터넷 이용의 폭발적인 증가와 유무선 통신기술의 발달로 인해 디지털 영상의 교환이 매우 빈번하게 일어나고 있는 현실에서 개인 사생활과 기업 및 기관의 기밀에 관련된 영상에 대한 보안이 매우 중요시 되어가고 있다. 또한 최근 카오스 이론과 암호와의 밀접한 관련성으로 인해 카오스 사상(Map)에 기반 한 새로운 암호기술 개발에 많은 연구가 진행되고 있다. 본 논문에서는 1차원 카오스 사상(Map)인 PLCM(Piecewise Linear Chaotic Map)과 2차원 카오스 사상인 Baker 사상을 이용한 정지영상 암호 시스템을 제안한다. 본 제안 시스템은 1차원 PLCM을 기반으로 한 섭동(Perturbance)기반 카오스 스트림(Stream)암호 기법과 2차원 Baker 사상을 기반으로 한 카오스 블록(Block)암호 기법이 결합된 구조로서 좋은 혼동(Confusion)특성과 확산(Diffusion)특성을 지닌 매우 안전하고 구현이 쉬운 암호시스템이다. 또한 본 논문에서는 실험 결과를 통해 통계적(Statistical) 공격에도 매우 강함을 보여주었다.