Title :
Backlash vibration suppression in torsional system based on the fractional order Q-filter of disturbance observer
Author :
Ma, Chengbin ; Hori, Yoichi
Author_Institution :
Dept. of Electr. Eng., Tokyo Univ., Japan
Abstract :
In this paper, a fractional order Q-filter 1/(Ts+1)α is introduced to substitute the integer order Q-filter 1/(τs+1)n used in conventional disturbance observer for speed control of torsional system. The theoretical analysis and experimental results show that changing the Q-filter\´s order fractionally can give a more effective way to adjust control system\´s frequency and time responses than just tuning it among integer orders. The tradeoff between stability margin loss and the strength of vibration suppression is a common problem in torsional system control. By introducing fractional order control (FOC) approach, control system can be designed more straightforwardly since control system\´s frequency responses can be altered between integer order control (IOC) system\´s continuously, while less control parameters are needed to be decided. Design process and experimental results demonstrate that an "EASY & STRAIGHTFORWARD DESIGN" can be achieved by introducing FOC control design concept. For implementation of the fractional order Q-filter, broken-line approximation method is applied. Even the realization issues for fractional order controllers are somewhat problematic. Experiment results show that the controllers can actually be realized quite acceptably.
Keywords :
approximation theory; control system synthesis; filtering theory; observers; torsion; velocity control; vibration control; broken line approximation method; disturbance observer; fractional order Q-filter; fractional order control; frequency response; integer order Q-filter; integer order control; speed control; stability margin loss; time responses; torsional system; vibration suppression; Control design; Control engineering; Control systems; Differential equations; Filters; Frequency; Process design; Stability; Velocity control; Vibration control;
Conference_Titel :
Advanced Motion Control, 2004. AMC '04. The 8th IEEE International Workshop on
Print_ISBN :
0-7803-8300-1
DOI :
10.1109/AMC.2004.1297932