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article · Journal of Applied Research and Technology

Controlling the Primary Resonance Vibrations of a Hybrid Rayleigh-Van der Pol-Duffing Oscillator Using Negative Cubic Velocity Feedback

Abstract

This study aims to suppress vibrations in hybrid Rayleigh-Van der Pol-Duffing oscillators by employing negative cubic velocity feedback control. The system's behavior is analyzed using the multiple-scales method to derive solutions up to the second-order approximation. The effect of negative cubic velocity feedback is specifically examined under primary resonance conditions. The influence of various system parameters is explored numerically using MATLAB. The findings reveal a strong correlation between the approximate analytical solutions and numerical results, confirming the effectiveness of the proposed approach.

Research topics

  • Chaos control and synchronization
  • Vibration Control and Rheological Fluids
  • Aeroelasticity and Vibration Control

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DOI: 10.22201/icat.24486736e.2026.24.1.2769

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