Feedforward and output feedback control of a highly oscillating and nonlinear 2-DOF piezoelectric actuator by using input shaping compensator and a linear quadratic regulator
Affiliation auteurs | !!!! Error affiliation !!!! |
Titre | Feedforward and output feedback control of a highly oscillating and nonlinear 2-DOF piezoelectric actuator by using input shaping compensator and a linear quadratic regulator |
Type de publication | Conference Paper |
Year of Publication | 2016 |
Auteurs | Hamidi YAL, Rakotondrabe M |
Editor | Popa D, Wijesundara MBJ |
Conference Name | SENSORS FOR NEXT-GENERATION ROBOTICS III |
Publisher | SPIE |
Conference Location | 1000 20TH ST, PO BOX 10, BELLINGHAM, WA 98227-0010 USA |
ISBN Number | 978-1-5106-0100-0 |
Mots-clés | 2-DOF piezoactuator, badly damped oscillations, Cross-couplings, disturbance observer, feedforward control, input shaping, LQR, output-feedback control, Vibrations |
Résumé | This paper deals with the control of a two degrees of freedom (2-DOF) piezoelectric cantilever actuator which is characterized by badly damped oscillations, hysteresis nonlinearity and cross-couplings. First, a feedforward control scheme based on the zero placement technique is introduced to annihilate the oscillations. Then a disturbance observer and a disturbance compensator are introduced to reduce the effects of low frequencies phenomena (hysteresis and creep) which were approximated by a fictive disturbance. Finally an output feedback scheme based on the linear quadratic regulator is added in order to reduce the cross-couplings effects to improve the tracking performances, and eventually to add robustness. Experiments were carried out and confirm the predicted performances. |
DOI | 10.1117/12.2229008 |