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The active modal control of the vibro-acoustic response is implemented using piezoelectric actuators/sensors.
Based on the modal sensor fibers and modal actuator fibers, the modal control of the composite beam is performed independently.
A modal velocity observer-based modal control scheme is also given to perform the active modal control of the beam.
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This paper presents a formal optimization methodology for the seismic design of multiple tuned-mass-dampers (MTMDs) for the multi-modal control of 3D irregular buildings.
A case study related to maximizing the average productivity of a hybrid chemical plant through multi-modal control of a buffer tank is presented.
This paper investigates the use of independent modal control to suppress the vibration of nonlinear flexible structures.
Active modal control simulation of vibro-acoustic response of a fluid-loaded plate is presented.
Governing equations of the membrane shell system and modal control forces of distributed actuator patches are presented first, and followed by the analysis of dominating micro-control actions based on various natural modes, actuator locations and geometrical parameters.
The modal control performance of structural vibration and acoustic radiation of a baffled plate is numerically studied.
Modal control forces of an arbitrary actuator patch and also quarterly are derived and evaluated.
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