TY - JOUR
T1 - Non-classical diffusion boxes using the golden binary self-similar sequence
AU - Vázquez-Medina, Rubén
PY - 2001/12/1
Y1 - 2001/12/1
N2 - In this paper the realization of a diffusion box(D-box) is shown using the self-similar sequences, which are built through silver numbers and the Steinhardt method. In particular, this realization is based in the Golden Binary Self-Similar Sequence (GB-Sequence). The diffusion using this technique is also compared against those using the DES (Data Encryption Standard) expansion permutation (EP-DES) box and against ideal diffusion. In this comparation the autocorrelation and error function are calculated. Also the probability function to self-similar sequences is compared with those to equiprobable sequences. In this way, we want to show that the dispersion boxes using autosimilar sequences can be used in complicated encryption algorithms. © 2001 Begell House, Inc.
AB - In this paper the realization of a diffusion box(D-box) is shown using the self-similar sequences, which are built through silver numbers and the Steinhardt method. In particular, this realization is based in the Golden Binary Self-Similar Sequence (GB-Sequence). The diffusion using this technique is also compared against those using the DES (Data Encryption Standard) expansion permutation (EP-DES) box and against ideal diffusion. In this comparation the autocorrelation and error function are calculated. Also the probability function to self-similar sequences is compared with those to equiprobable sequences. In this way, we want to show that the dispersion boxes using autosimilar sequences can be used in complicated encryption algorithms. © 2001 Begell House, Inc.
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M3 - Article
SN - 0040-2508
SP - 134
EP - 149
JO - Telecommunications and Radio Engineering (English translation of Elektrosvyaz and Radiotekhnika)
JF - Telecommunications and Radio Engineering (English translation of Elektrosvyaz and Radiotekhnika)
ER -