
In this paper, the application of high control authority piezoelectric stack actuators, in short piezostack actuators, for active vibration control of long-reach robotic manipulators is studied. The idea is to include piezostack actuators in the base structure in order to strengthen its stiffness characteristics. A mechanism is designed for converting the force produced by a piezostack actuator to a bending moment. A flexible link actuated with a piezostack actuator is built and mathematically modeled. The solution of the governing partial differential equation with non-homogenous boundary conditions is obtained. A comparison between experimental frequency response of the system and its model is given. A control law using the Popov criterion is obtained and experimental results for closed-loop system are given.
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