Vibration suppression of non-linear system via non-linear absorber
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Publication:718780
DOI10.1016/j.cnsns.2007.04.018zbMath1221.74036OpenAlexW1986647120MaRDI QIDQ718780
Publication date: 24 September 2011
Published in: Communications in Nonlinear Science and Numerical Simulation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cnsns.2007.04.018
Control, switches and devices (``smart materials) in solid mechanics (74M05) Vibrations in dynamical problems in solid mechanics (74H45)
Related Items (7)
On controlling the vibrations and energy transfer in MEMS gyroscope system with simultaneous resonance ⋮ Vibration suppression in multi-tool ultrasonic machining to multi-external and parametric excitations ⋮ Vibration reduction of a nonlinear spring pendulum under multi external and parametric excitations via a longitudinal absorber ⋮ Development of a chaotic nonlinear tuned mass damper for optimal vibration response ⋮ Vibration reduction in ultrasonic machine to external and tuned excitation forces ⋮ Active vibration control of a dynamical system via negative linear velocity feedback ⋮ Traditional and non-traditional active nonlinear vibration absorber with time delay combination feedback for hard excitation
Cites Work
- Dynamics of a single-degree-of-freedom structure with quadratic, cubic and quartic nonlinearities to a harmonic resonance.
- Effect of non-linearities in elastomeric material dampers on torsional oscillation control
- A comparison between active and passive vibration control of nonlinear simple pendulum. I: Transversally tuned absorber and negative \(G\dot\varphi^n\) feedback
- A comparison between active and passive vibration control of nonlinear simple pendulum. II: Longitudinal tuned absorber and negative \(G\ddot\varphi\) and \(G\varphi^n\) feedback
- Vibration control of ultrasonic cutting via dynamic absorber
- Resolving controversies in the application of the method of multiple scales and the generalized method of averaging
- Vibration control of a cantilever beam subject to both external and parametric excitation
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