Title :
Vibration Suppression in a Two-Mass Drive System Using PI Speed Controller and Additional Feedbacks—Comparative Study
Author :
Szabat, Krzysztof ; Orlowska-Kowalska, Teresa
Author_Institution :
Inst. of Electr. Machines, Drives & Measurements, Tech. Univ. Wroclaw
fDate :
4/1/2007 12:00:00 AM
Abstract :
In this paper, an analysis of control structures for the electrical drive system with elastic joint is carried out. The synthesis of the control structure with proportional-integral controller supported by different additional feedbacks is presented. The classical pole-placement method is applied. Analytical equations, which allow for calculating the control structure parameters, are given. The limitation of the design due to the number of degrees of freedom of the considered drive systems is shown. In order to damp the torsional vibration effectively, the application of the feedback from one selected state variable is necessary. In the literature, a large number of possible feedbacks have been reported. However, in this paper, it is shown that all systems with one additional feedback can be divided into three different groups, according to their dynamical characteristics. In addition, the system with two additional feedbacks is investigated. The comparison between considered structures is carried out. The simulation results are confirmed experimentally in the laboratory setup
Keywords :
PI control; control system synthesis; electric drives; feedback; pole assignment; velocity control; vibration control; PI speed controller; analytical equations; control structure synthesis; dynamical characteristics; elastic joint; feedbacks; pole-placement method; proportional-integral controller; torsional vibration damping; two-mass electrical drive system; vibration suppression; Control system analysis; Control system synthesis; Control systems; Electric variables control; Equations; Laboratories; Pi control; Proportional control; State feedback; Vibration control; Elastic joint; electrical drive; pole-placement method; speed control; vibration suppression;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2007.892608