GENERATING CHAOTIC SECURE SEQUENCES USING TENT MAP AND A RUNNING-KEY APPROACH
Adriana Vlad, Adrian Luca, Octavian Hodea, Relu Tataru, Iuliu Maniu · 2013
This paper completes recent results obtained by extending the running-key cipher procedure from natural language to applications over chaotic systems. We apply the new running-key approach on the chaotic tent map and prove its utility in obtaining practically zero-redundant pseudo-random number generators, alongside with the possibility to consider the initial condition and the tent map control parameter as elements in the secret key – a desideratum in chaos-based cryptography. The results are both theoretically and experimentally supported by combining concepts from information theory and statistical methods in the context of the chaotic system. The statistical evaluation includes NIST test suite for testing the randomness of the proposed binary generator. Based upon the results presented in this paper, the provided generator can be used for designing new cryptosystems where the pseudorandom binary sequences can be a chief support.