We propose and characterize an iterated map whose nonlinearity has a simple (i.e., minimal) electronic implementation. We then demonstrate explicitly how all the different fundamental logic gates can be implemented and morphed using this nonlinearity. These gates provide the full set of gates necessary to construct a general-purpose, reconfigurable computing device. As an example of how such chaotic computing devices can be exploited, we use an array of these maps to encode data and to process information. Each map can store one of M items, where M is variable and can be large. This nonlinear hardware stores data naturally in different bases or alphabets. We also show how this method of storing information can serve as a preprocessing tool ...
In this paper we discuss the efficient implementation of pseudochaotic piecewise linear maps with hi...
We report the experimental realization of a simple threshold controller, which clips chaotic dynamic...
We propose a direct and flexible implementation of logic operations using the dynamical evolution of...
Basic principles of implementing the most fundamental computing functions by chaotic elements are de...
There has been interest in so called alternative or unconventional computing paradigms that differ f...
Two new computing models based on information coding and chaotic dynamical systems are presented. Th...
Studying chaotic behavior in nonlinear systems requires numerous computations in order to simulate...
We propose an architecture to implement multi-input one-output Boolean functions using chaos computi...
Certain nonlinear systems can switch between dynamical attractors occupying different regions of pha...
We demonstrate the basic principles for the direct and flexible implementation of all basic logical ...
We introduce a new method for the design of information entropy sources in Programmable Logic Device...
Iterative electronic circuits - that is, circuits whose behaviour can be described by a mapping in w...
Reservoir Computing has been highlighted as a promising methodology to perform computation in dynami...
Several simple circuits with rather complex nonlinearities are presented, essentially based on diode...
Chaotic dynamics is widely used to design pseudorandom number generators and for other applications ...
In this paper we discuss the efficient implementation of pseudochaotic piecewise linear maps with hi...
We report the experimental realization of a simple threshold controller, which clips chaotic dynamic...
We propose a direct and flexible implementation of logic operations using the dynamical evolution of...
Basic principles of implementing the most fundamental computing functions by chaotic elements are de...
There has been interest in so called alternative or unconventional computing paradigms that differ f...
Two new computing models based on information coding and chaotic dynamical systems are presented. Th...
Studying chaotic behavior in nonlinear systems requires numerous computations in order to simulate...
We propose an architecture to implement multi-input one-output Boolean functions using chaos computi...
Certain nonlinear systems can switch between dynamical attractors occupying different regions of pha...
We demonstrate the basic principles for the direct and flexible implementation of all basic logical ...
We introduce a new method for the design of information entropy sources in Programmable Logic Device...
Iterative electronic circuits - that is, circuits whose behaviour can be described by a mapping in w...
Reservoir Computing has been highlighted as a promising methodology to perform computation in dynami...
Several simple circuits with rather complex nonlinearities are presented, essentially based on diode...
Chaotic dynamics is widely used to design pseudorandom number generators and for other applications ...
In this paper we discuss the efficient implementation of pseudochaotic piecewise linear maps with hi...
We report the experimental realization of a simple threshold controller, which clips chaotic dynamic...
We propose a direct and flexible implementation of logic operations using the dynamical evolution of...