The Chua's circuit has been considered as one of the most important paradigms for nonlinear science studies. Its simulations is usually undertaken by means of numerical methods under the rules of IEEE 754-2008 floating-point arithmetic standard. Although, it is well known the propagation error issue, less attention has been given to its consequences on the simulation of Chua's circuit. In this paper we presented a simulation technique for the Chua's circuit, it exhibits qualitative differences in traditional approaches such as RK3, RK4 and RK5. By means of the positive largest Lyapunov exponent we show that for the same initial condition and same set of parameters, we produce a periodical and a chaotic solution
In this paper, we present the hyperchaos dynamics of a modified canonical Chua's electrical circuit....
The Chua circuit is among the simplest non-linear circuits that shows most complex dynamical behavio...
In this paper, the original Chua's circuit is modified by substituting its piecewise-linear fun...
The Chua's circuit has been considered as one of the most important paradigms for nonlinear science ...
The Chua s circuit is an electronic oscillator that has a non-linearity coupled to an LC oscillator,...
Chua’s oscillator is one of the simplest electronic circuits that is capable of pro-ducing chaos. It...
Chua's circuit, which demonstrates one of the most complicated nonlinear dynamical behaviors, i.e. c...
Chua's circuit is very suitable as a programmable chaos generator because of its robust nonlinearity...
The Chua circuit, known to exhibit chaotic behaviour, has been constructed and studied. The goal was...
In this study, we have MATLAB algorithm for the implementation a numerical solutions " Runge-Ku...
In this work we carry out experimental studies of the paradigmatic Chua’s circuit using an approach ...
Several realizations of Chua's circuit have been proposed in the literature. The methodologies used ...
Summarization: The classical Chua’s circuit that realizes chaotic behavior is presented. This circui...
The interaction of capacitive and resistive nonlinearities in the Chua's circuit is studied. The ori...
Nonlinear Dynamical systems are common in many scientific disciplines. A particularly interesting pr...
In this paper, we present the hyperchaos dynamics of a modified canonical Chua's electrical circuit....
The Chua circuit is among the simplest non-linear circuits that shows most complex dynamical behavio...
In this paper, the original Chua's circuit is modified by substituting its piecewise-linear fun...
The Chua's circuit has been considered as one of the most important paradigms for nonlinear science ...
The Chua s circuit is an electronic oscillator that has a non-linearity coupled to an LC oscillator,...
Chua’s oscillator is one of the simplest electronic circuits that is capable of pro-ducing chaos. It...
Chua's circuit, which demonstrates one of the most complicated nonlinear dynamical behaviors, i.e. c...
Chua's circuit is very suitable as a programmable chaos generator because of its robust nonlinearity...
The Chua circuit, known to exhibit chaotic behaviour, has been constructed and studied. The goal was...
In this study, we have MATLAB algorithm for the implementation a numerical solutions " Runge-Ku...
In this work we carry out experimental studies of the paradigmatic Chua’s circuit using an approach ...
Several realizations of Chua's circuit have been proposed in the literature. The methodologies used ...
Summarization: The classical Chua’s circuit that realizes chaotic behavior is presented. This circui...
The interaction of capacitive and resistive nonlinearities in the Chua's circuit is studied. The ori...
Nonlinear Dynamical systems are common in many scientific disciplines. A particularly interesting pr...
In this paper, we present the hyperchaos dynamics of a modified canonical Chua's electrical circuit....
The Chua circuit is among the simplest non-linear circuits that shows most complex dynamical behavio...
In this paper, the original Chua's circuit is modified by substituting its piecewise-linear fun...