Title :
Design of a hierarchical fuzzy vibration absorber for a continuum with a moving oscillator
Author_Institution :
Dept. of Mech. Eng., Ching Yun Univ., Jung-Li City, Taiwan
Abstract :
The aim of this work is to design a multi-time scale fuzzy vibration controller by taking a singular perturbation approach that involves an elastic continuum, carries a moving mass-sprung-damper oscillator. The proposed design of the controller involves a composite control strategy elucidated by the singular perturbation approach. A fuzzy logic compensator (FLC) is applied to the controller to solve the problem of the lack of full-state availability. Using this compensator, the vibration amplitude of an elastically supported continuum can be reduced and the performance of the dynamic system improved. A hierarchical fuzzy logic structure of a multi-input FLC is derived, leading to the implementation of faster controllers with a reduced memory demand. The broad range of problems associated with oscillators with moving loads, considered herein, arise in civil, mechanical, transport, marine, offshore, aviation and astronautical engineering.
Keywords :
beams (structures); continuum mechanics; control system synthesis; fuzzy control; perturbation techniques; vibration control; beams; control system synthesis; elastic continuum; fuzzy vibration absorber design; fuzzy vibration controller design; hierarchical fuzzy logic structure; moving mass sprung damper oscillator; multiple input fuzzy logic compensator; multiple time scale fuzzy vibration controller; singular perturbation method; vibration amplitude reduction; Bridges; Control systems; Force measurement; Fuzzy logic; Oscillators; Strain measurement; Stress; Vehicle dynamics; Vehicles; Vibration control;
Conference_Titel :
Control Applications, 2004. Proceedings of the 2004 IEEE International Conference on
Print_ISBN :
0-7803-8633-7
DOI :
10.1109/CCA.2004.1387209