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This paper presents a new approach for damping vibration of stay cables in a cable-stayed bridge by using adjustable fluid dampers.
The transmitted force-time history as well as system transmissibility are compared with previous studies employing the traditional non-integral approach for damping force formulation.
This paper presents a novel approach for damping the vibration of a cantilever beam by bonding multiple fluidic flexible matrix composite (F2MC) tubes to the beam and using the strain induced fluid pumping to dissipate energy.
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This paper details an approach for designing multiple controllers for damping power system electromechanical oscillations.
In experimental approach, the most widely used methods for damping determination require vibration spectrums or the Frequency Response Function(s) which are obtained by Fourier transformation of the time-domain data.
This paper presents an approach for designing a fuzzy logic-based adaptive SVC damping controller for damping low frequency power oscillations.
The damping coefficient K D represents the capability for damping the oscillation of angular frequency.
Based on the proposed damping identification method, a general approach for modelling of damping in complex systems has been proposed.
The parameters of the PWMSC damping controller are designed by optimization based approach for the purpose of damping inter-area oscillations in practical system.
Logarithmic decrement is a well known approach for estimating the damping ratio from a time history.
This paper provides a novel approach for identifying the process damping directly from chatter-free milling tests.
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