NASA NTRS · 19920028665
Vibration suppression using a proofmass actuator operating in stroke/force saturation
Abstract
The design of the control-loop structure for a feedback control system which contains a proofmass actuator for suppressing vibration is discussed. The loop structure is composed of inner control loops, which determine the frequency of the actuator and which are directly related to the actuator and the outer loops which add damping to the structure. When the frequency response of the actuator is matched to the stroke/force saturation curve, the actuator is most effective in the vibration suppression loops, and, since the stroke/force saturation curve is characterized by the stroke length, the mass of the proofmass, and the maximum current delivered by the motor electronics, the size of the actuator can be easily determined. The results of the loop-structure model calculations are verified by examining linear DC motors as proofmass actuators for the Mast in NASA's Control of Flexible Structures program.
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Lindner, D. K., Celano, T. P., Ide, E. N.. 1991-10-01. Vibration suppression using a proofmass actuator operating in stroke/force saturation. https://ntrs.nasa.gov/citations/19920028665
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