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A parallel image encryption method based on compressive sensing

delete2012-12-30
delete99
PRE
AI
R
Rong Huang *
K
KiHo Rhee
S
Seiichi Uchida
DOI:10.1007/s11042-012-1337-0delete
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Abstract

Abstract

En 中文
Recently, compressive sensing-based encryption methods which combine sampling, compression and encryption together have been proposed. However, since the quantized measurement data obtained from linear dimension reduction projection directly serve as the encrypted image, the existing compressive sensing-based encryption methods fail to resist against the chosen-plaintext attack. To enhance the security, a block cipher structure consisting of scrambling, mixing, S-box and chaotic lattice XOR is designed to further encrypt the quantized measurement data. In particular, the proposed method works efficiently in the parallel computing environment. Moreover, a communication unit exchanges data among the multiple processors without collision. This collision-free property is equivalent to optimal diffusion. The experimental results demonstrate that the proposed encryption method not only achieves the remarkable confusion, diffusion and sensitivity but also outperforms the existing parallel image encryption methods with respect to the compressibility and the encryption speed.
Keywords:
Compressive sensing
Image encryption
Parallel structure
Chaotic model
Optimal diffusion

Journal

Multimedia Tools and Applications cover
Multimedia Tools and Applications
IF:
3
Papers:
1.9W
Citations:
3.2W

Organization

K
Kyushu University
Scholars:
3.2W
Papers: 2.6W
Citations: 2.8W