Principal resonance of a Duffing oscillator with delayed state feedback under narrow-band random parametric excitation |
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Authors: | Yanfei Jin Haiyan Hu |
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Institution: | (1) Institute of Vibration Engineering Research, Nanjing University of Aeronautics and Astronautics, 210016 Nanjing, P.R. China |
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Abstract: | The principal resonance of a Duffing oscillator with delayed state feedback under narrow-band random parametric excitation
is studied by using the method of multiple scales and numerical simulations. The first-order approximations of the solution,
together with the modulation equations of both amplitude and phase, are derived. The effects of the frequency detuning, the
deterministic amplitude, the intensity of the random excitation and the time delay on the dynamical behaviors, such as stability
and bifurcation, are studied through the largest Lyapunov exponent. Moreover, the appropriate choice of the feedback gains
and the time delay is discussed from the viewpoint of vibration control. It is found that the appropriate choice of the time
delay can broaden the stable region of the trivial steady-state solution and enhance the control performance. The theoretical
results are well verified through numerical simulations. |
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Keywords: | Time delay Narrow-band random noise Stability Largest Lyapunov exponent |
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