DocumentCode
404238
Title
Robust Lyapunov-based feedback control of nonlinear Web-winding systems
Author
Baumgart, Matthew D. ; Pao, Lucy Y.
Author_Institution
Dept. of Electr. & Comput. Eng., Colorado Univ., Boulder, CO, USA
Volume
6
fYear
2003
fDate
9-12 Dec. 2003
Firstpage
6398
Abstract
Web-winding systems such as tape drives are often modeled as linear and time-invariant (LTI), but at least two nonlinearities are common in these systems. First, the reel radii and moments of inertia change as web media spools from one reel to another. Second, friction can draw a thin layer of air between the layers of web media wrapped on the takeup reel, making the system\´s spring and damping characteristics nonlinear by allowing a greater length of media to vibrate freely. Little has been published regarding the dynamic behavior of this "air entrainment" phenomenon. This paper first describes a model for web-winding systems that includes these nonlinearities. No particular model is taken for air entrainment; it is only assumed that its effects are bounded in a certain sense. It is further assumed that the motor parameters are not known exactly. Feedback linearization, state feedback, and changes of variables are then used to transform the system into decoupled and intuitively meaningful tension and velocity loops. Lyapunov redesign techniques are then used to develop control laws that are robust with respect to the motor parameters. Under these laws, velocity error is exponentially-stable and tension error satisfies a desired bound for all time - with tension error also exponentially stable in the steady-state case. Simulations illustrate the performance of these schemes.
Keywords
Lyapunov methods; nonlinear control systems; robust control; state feedback; winding (process); feedback linearization; moments of inertia; motor parameters; nonlinear web-winding systems; robust Lyapunov-based feedback control; state feedback; tension error; time-invariant; velocity error; web media; Control systems; Costs; Damping; Feedback control; Friction; Robust control; Springs; State feedback; Steady-state; Velocity control;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 2003. Proceedings. 42nd IEEE Conference on
ISSN
0191-2216
Print_ISBN
0-7803-7924-1
Type
conf
DOI
10.1109/CDC.2003.1272347
Filename
1272347
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