Title :
Positioning and vibration control for MDOF rotating truss structure by feed-forward with feedback approach
Author :
Jonqlan Lin ; Chiang, C.B. ; Gau, W.H.
Author_Institution :
Dept. of Mech. Eng., Chien Hsin Univ. of Sci. & Technol., Jhongli, Taiwan
Abstract :
The main goal of this paper is to develop an innovative scheme for the vibration suppression control of the multiple degrees-of-freedom (MDOF) flexible structure. The controller has two loops for tracking and vibration suppression. In addition to stabilizing the actual system, the proposed feedback control is based on a genetic algorithm (GA) to seek the primary optimal control gain for tracking and stabilization purposes. Moreover, input shaping is introduced for the control scheme that limits motion-induced elastic vibration by shaping the reference command. Experimental results are presented, demonstrating that, in the control loop, roll and yaw angles track control and elastic mode stabilization. It was also demonstrated that combining the input shaper with the proportional-integral-derivative (PID) feedback method has been shown to yield improved performance in controlling the flexible structure system.
Keywords :
elasticity; feedback; feedforward; flexible structures; position control; stability; supports; three-term control; vibration control; GA; MDOF flexible structure; MDOF rotating truss structure; PID feedback method; control loop; elastic mode stabilization; feedforward approach; flexible structure system control; genetic algorithm; motion-induced elastic vibration; multiple degrees-of-freedom flexible structure; positioning control; primary optimal control gain; proportional-integral-derivative feedback method; vibration suppression control; yaw angles track control; Damping; PD control; System identification; Tracking; Vibrations; Zero voltage switching;
Conference_Titel :
Control Applications (CCA), 2013 IEEE International Conference on
Conference_Location :
Hyderabad
DOI :
10.1109/CCA.2013.6662921