M. Carrasco-Aguilar - Academia.edu (original) (raw)

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Papers by M. Carrasco-Aguilar

Research paper thumbnail of Adaptive Synchronization of Chaotic Systems Considering Performance Parameters of Operational Amplifiers

This paper addresses an adaptive control approach for synchronizing two chaotic oscillators with ... more This paper addresses an adaptive control approach for synchronizing two chaotic oscillators with saturated nonlinear function series as nonlinear functions. Mathematical models to characterize the behavior of the transmitter and receiver circuit were derived, including in the latter the adaptive control and taking into account, for both chaotic oscillators, the most influential performance parameters associated to operational amplifiers. Asymptotic stability of the full synchronization system is studied by using Lyapunov direct method. Theoretical derivations and related results are experimentally validate through implementations from commercially available devices. Finally, the full synchronization system can easily be reproducible at a low cost.

Research paper thumbnail of Adaptive Synchronization of Chaotic Systems Considering Performance Parameters of Operational Amplifiers

This paper addresses an adaptive control approach for synchronizing two chaotic oscillators with ... more This paper addresses an adaptive control approach for synchronizing two chaotic oscillators with saturated nonlinear function series as nonlinear functions. Mathematical models to characterize the behavior of the transmitter and receiver circuit were derived, including in the latter the adaptive control and taking into account, for both chaotic oscillators, the most influential performance parameters associated to operational amplifiers. Asymptotic stability of the full synchronization system is studied by using Lyapunov direct method. Theoretical derivations and related results are experimentally validate through implementations from commercially available devices. Finally, the full synchronization system can easily be reproducible at a low cost.

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