PERMUTATION INDUCED SHUFFLING BASED BLOCK CIPHER FOR REAL-TIME APPLICATIONS

N. Radha, M. Ajaykumar Venkatesulu · Malaysian Journal of Computer Science · 2014

We proposed a novel nonconventional full encryptio n approach designed to accommodate fast performance and security with low computational complexity for realtime video communications. The proposed cipher employs the confusion and diffusion component simultaneously through the shuffler operator S and confusion component through the randomized substitution R in a binary tree. A pseudo random integer sequence π generates the round keys and also used to define the nonlinear confusion and diffusion components. T he advantages of these components are 1) they do not require storage space, when compared to generation and storage of Sboxes in other systems. 2) they are fa ster. We analyzed our approach in terms of efficiency and security from a cryptographic view point. We analyzed performance by comparing with the symmetric algorithms AES and RC6. Experimental results showed that the proposed algorithm works faster in terms of encryption time and frame rate and thus suitable for rendering the data in realtime by the receiver’s playback. Histogram analysis, correlation analysis and differential cryptanalysis proved the efficiency of the cipher.

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