Qualitative models and experimental investigation of chaotic NOR gates and set/reset flip-flops

Author:

Rahman Aminur1ORCID,Jordan Ian2,Blackmore Denis1

Affiliation:

1. Mathematical Sciences, New Jersey Institute of Technology, Newark, NJ 07102, USA

2. Electrical and Computer Engineering, New Jersey Institute of Technology, Newark, NJ 07102, USA

Abstract

It has been observed through experiments and SPICE simulations that logical circuits based upon Chua’s circuit exhibit complex dynamical behaviour. This behaviour can be used to design analogues of more complex logic families and some properties can be exploited for electronics applications. Some of these circuits have been modelled as systems of ordinary differential equations. However, as the number of components in newer circuits increases so does the complexity. This renders continuous dynamical systems models impractical and necessitates new modelling techniques. In recent years, some discrete dynamical models have been developed using various simplifying assumptions. To create a robust modelling framework for chaotic logical circuits, we developed both deterministic and stochastic discrete dynamical models, which exploit the natural recurrence behaviour, for two chaotic NOR gates and a chaotic set/reset flip-flop. This work presents a complete applied mathematical investigation of logical circuits. Experiments on our own designs of the above circuits are modelled and the models are rigorously analysed and simulated showing surprisingly close qualitative agreement with the experiments. Furthermore, the models are designed to accommodate dynamics of similarly designed circuits. This will allow researchers to develop ever more complex chaotic logical circuits with a simple modelling framework.

Funder

New Jersey Institute of Technology

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference23 articles.

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5. Robust OP Amp Realization of Chua's Circuit

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