DocumentCode :
1126251
Title :
Tension control for winding systems with two-degrees-of-freedom H controllers
Author :
Knittel, Dominique ; Laroche, Edouard ; Gigan, Daniel ; Koç, Hakan
Author_Institution :
LSIIT, Univ. of Strasbourg, Illkirch, France
Volume :
39
Issue :
1
fYear :
2003
Firstpage :
113
Lastpage :
120
Abstract :
In web transport systems, the main concern is to control independently speed and tension in spite of perturbations such as radius variations and changes of setting point. Multivariable controllers including gain scheduling have already given good results in that sense. Nevertheless, in these control techniques, tracking properties and perturbation rejection are interdependent and cannot be specified separately. In this paper, we present multivariable H robust control with two degrees of freedom (2DOF) and gain scheduling applied to winding systems. Three controller structures are considered: a global controller, a semidecentralized controller, and a semidecentralized controller with overlapping. Simulation results are given, based on a nonlinear model identified on an experimental bench. In each case, the 2DOF controller is compared to the classical 1DOF controller. The 2DOF approach allows improving significantly disturbance rejection while reducing coupling between tension and velocity.
Keywords :
H control; decentralised control; mechanical variables control; multivariable control systems; robust control; velocity control; winding (process); coupling reduction; decentralized control; disturbance rejection; gain scheduling; global controller; multivariable controllers; nonlinear model; overlapping control; perturbation rejection; radius variations; robust control; semidecentralized controller; setting point; tension control; tracking properties; two-degrees-of-freedom H controllers; web transport; winding systems; Control systems; Distributed control; Electrical equipment industry; Industrial control; Industry Applications Society; Job shop scheduling; Large-scale systems; Metals industry; Polymers; Robust control;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2002.807231
Filename :
1167316
Link To Document :
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