Journal Article

·2014

Suppressing Chaos in a Nonideal Double-Well Oscillator Using an Based Electromechanical Damped Device

G. Füsun Alışverişçi YTU , Hüseyin Bayıroğlu YTU , José Manoel Balthazar , Jorge Luiz Palácios Felix

Applied Mechanics and Materials

Abstract

In this paper, we analyzed chaotic dynamics of an electromechanical damped Duffing oscillator coupled to a rotor. The electromechanical damped device or electromechanical vibration absorber consists of an electrical system coupled magnetically to a mechanical structure (represented by the Duffing oscillator), and that works by transferring the vibration energy of the mechanical system to the electrical system. A Duffing oscillator with double-well potential is considered. Numerical simulations results are presented to demonstrate the effectiveness of the electromechanical vibration absorber. Lyapunov exponents are numerically calculated to prove the occurrence of a chaotic vibration in the non-ideal system and the suppressing of chaotic vibration in the system using the electromechanical damped device.

Keywords

Duffing equation Vibration Chaotic Control theory (sociology) Rotor (electric) Lyapunov exponent Mechanical system Helicopter rotor Physics Engineering Nonlinear system Acoustics Computer science Mechanical engineering Quantum mechanics

Subject Areas

Chaos control and synchronization ·Statistical and Nonlinear Physics ·Physical Sciences
Nonlinear Dynamics and Pattern Formation ·Computer Networks and Communications ·Physical Sciences
Quantum chaos and dynamical systems ·Statistical and Nonlinear Physics ·Physical Sciences

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