English

Discrete-Time Chaotic-Map Truly Random Number Generators: Design, Implementation, and Variability Analysis of the Zigzag Map

Dynamical Systems 2012-06-06 v1

Abstract

In this paper, we introduce a novel discrete chaotic map named zigzag map that demonstrates excellent chaotic behaviors and can be utilized in Truly Random Number Generators (TRNGs). We comprehensively investigate the map and explore its critical chaotic characteristics and parameters. We further present two circuit implementations for the zigzag map based on the switched current technique as well as the current-mode affine interpolation of the breakpoints. In practice, implementation variations can deteriorate the quality of the output sequence as a result of variation of the chaotic map parameters. In order to quantify the impact of variations on the map performance, we model the variations using a combination of theoretical analysis and Monte-Carlo simulations on the circuits. We demonstrate that even in the presence of the map variations, a TRNG based on the zigzag map passes all of the NIST 800-22 statistical randomness tests using simple post processing of the output data.

Keywords

Cite

@article{arxiv.1206.1039,
  title  = {Discrete-Time Chaotic-Map Truly Random Number Generators: Design, Implementation, and Variability Analysis of the Zigzag Map},
  author = {Hamid Nejati and Ahmad Beirami and Warsame H. Ali},
  journal= {arXiv preprint arXiv:1206.1039},
  year   = {2012}
}

Comments

To appear in Analog Integrated Circuits and Signal Processing (ALOG)

R2 v1 2026-06-21T21:14:42.428Z