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The Frequency-based Fault Estimator (FFE) is based on the effect of the damper fault in the frequency domain and the Robust Parity Space (RPS) consists in a residual generator sensitive to the fault in the time domain.
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The effect of the damping ratio on the RWIV amplitude is also experimentally and numerically investigated.
The effect of the damping ratio on the response of the flange was also evaluated, and the acceleration was obtained.
The effect of the damping properties of these boundary conditions and the incident acoustic wave characteristics on performance are considered.
In this paper, the effect of the damping and noise level on the number of co-existing responses in nonlinear systems is investigated.
Wave propagation in ducts and mufflers has been analyzed and the effect of the damping properties of the boundary condition has been studied.
The measure of loudness is shown to be more accurate to assess reduction effect of the damping material on the acoustic comfort.
The effect of the damping term which is obtained from viscoelastic material properties is modelled with a fractional derivative.
The effect of the damping parameter (gamma>0) is introduced in order to study the asymptotic behavior of the solution to the Schrödinger equation (1).
The effects of the damper are investigated in this study, outlining the drastic reduction of the oscillation amplitudes all along the cable in less than 10 s.
This is discussed in more detail when the effects of the damper nonlinearities, as well as the various GMD equivalent mass, brace stiffness, damping values and selected ground motions are investigated.
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