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40 7 2014 7
Vol.40 No.7 Computer Engineering July 2014
1000-3428(2014)07-0225-05 A TP391
1 2 2
(1. 621000 2. 610065)
LORENZ
logistic
Image Encryption Algorithm for Bilateral Direction Diffusion
Mechanism Integration with Time Delay
1 2 2P P P
WANG Fu , ZHENG Ya-ping , LIU Tian-qi
(1. School of Mathematics and Computer Science, Mianyang Normal University, Mianyang 621000, China;
2. School of Electrical Engineering and Information, Sichuan University, Chengdu 610065, China)
Abstract To defects such as the low speed of encryption and decryption, as well as the low computation efficiency induced by the single
diffusion mechanism in the current chaotic-based encryption system, the high autocorrelation of chaotic sequence is induced by ignoring the
time delay, resulting in the misadventure performance of encryption quality, low security, as well as not satisfying the security and real-time
transmission in the face of high resolution, large capacity image. The time delay function and bilateral direction diffusion mechanism are
proposed, using the fast image encryption algorithm based on bilateral direction diffusion mechanism integration with time delay to solve
above problems. The hyper-chaotic LORENZ system is iterated to get one group hyper-chaotic sequence. The time delay is introduced into the
hyper-chaotic sequence by the time delay and logistic map to obtain the new sequence. The permutation method of position set is used to
permute the pseudo-random sequence on the time
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