2010Unpublished venueRequires access

Image Encryption Design Based on Multi-Dimensional Matrix Map and Partitioning Substitution and Diffusion-Integration Substitution Network Structure

Liang Zhao, Di Xiao, Kouichi Sakurai

Open publisher page 3 citations

Abstract

Multimedia security is already one of the most crucial problems in information science. Specially, as the character of digital image, the traditional cipher such as DES and RSA are not suitable for being applied to encrypt the digital image. Therefore, the study of image encryption scheme attracts the interest of large researchers. Nowadays, a variety of image encryption methods have been proposed with several kinds of structures. Many of them can finish the encryption process effectively. However, most of them are only based on encryption of two phases: substitution and diffusion, which is a traditional framework. In order to achieve an exceptional encryption effect, this paper presents a novel encryption structure named as PSD-IS network(Partitioning Substitution and Diffusion-Integration Substitution network). Based on this structure, a corresponding encryption algorithm is designed utilizing the generalized multidimensional Arnold cat map and PSD-IS network structure. The experimental results and their analyses demonstrate that the proposed scheme is secure and meets the requirement of image encryption.

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What this paper is about

Multimedia security is already one of the most crucial problems in information science. Specially, as the character of digital image, the traditional cipher such as DES and RSA are not suitable for being applied to encrypt the digital image. Therefore, the study of image encryption scheme attracts the interest of large researchers. Nowadays, a variety of image encryption methods have been proposed with several kinds of structures. Many of them can finish the encryption process effectively. However, most of them are only based on encryption of two phases: substitution and diffusion, which is a traditional framework. In order to achieve an exceptional encryption effect, this paper presents a novel encryption structure named as PSD-IS network(Partitioning Substitution and Diffusion-Integration Substitution network). Based on this structure, a corresponding encryption algorithm is designed utilizing the generalized multidimensional Arnold cat map and PSD-IS network structure. The experimental results and their analyses demonstrate that the proposed scheme is secure and meets the requirement of image encryption.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Multimedia security is already one of the most crucial problems in information science. Specially, as the character of digital image, the traditional cipher such as DES and RSA are not suitable for being applied to encrypt the digital image. Therefore, the study of image encryption scheme attracts the interest of large researchers. Nowadays, a variety of image encryption methods have been proposed with several kinds of structures. Many of them can finish the encryption process effectively. However, most of them are only based on encryption of two phases: substitution and diffusion, which is a traditional framework. In order to achieve an exceptional encryption effect, this paper presents a novel encryption structure named as PSD-IS network(Partitioning Substitution and Diffusion-Integration Substitution network). Based on this structure, a corresponding encryption algorithm is designed utilizing the generalized multidimensional Arnold cat map and PSD-IS network structure. The experimental results and their analyses demonstrate that the proposed scheme is secure and meets the requirement of image encryption.

Key concepts: Encryption, Probabilistic encryption, Computer science, 40-bit encryption, Substitution (logic), Multiple encryption, 56-bit encryption, Theoretical computer science

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Image Encryption Design Based on Multi-Dimensional Matrix Map and Partitioning Substitution and Diffusion-Integration Substitution Network Structure — Research Paper | ScholarLens