Abstract
This contribution investigates the influence of parametric excitation on the dynamic stability of a microelectromechanical system. In systems with just a single degree of freedom, parametric excitation causes the oscillator to exhibit unstable behavior within certain intervals of the parametric excitation frequency. In multi-degree of freedom systems on the other hand, unstable behavior is caused within a wider range of intervals of the parametric excitation frequency. Moreover, such systems show frequency intervals of enhanced stability, an effect known as anti-resonance phenomenon. Both types of phenomena, the parametric resonance and anti-resonance, are modeled and studied for a microelectromechanical system with two degrees of freedom and some novel results are discussed. © 2013 - IOS Press and the authors. All rights reserved.
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Welte, J., Kniffka, T. J., & Ecker, H. (2013). Parametric excitation in a two degree of freedom MEMS system. Shock and Vibration, 20(6), 1113–1124. https://doi.org/10.1155/2013/502109
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