DocumentCode :
2715909
Title :
The uniform stabilization of a full von Karman system with nonlinear boundary feedback
Author :
Lasiecka, Irena
Author_Institution :
Dept. of Appl. Math., Virginia Univ., Charlottesville, VA, USA
Volume :
3
fYear :
1998
fDate :
1998
Firstpage :
3479
Abstract :
A full von Karman system accounting for in-plane acceleration and describing the transient deformations of a thin, elastic plate subject to edge loading is considered. The energy dissipation is introduced via the nonlinear velocity feedback acting on a part of the edge of the plate. This paper aims to derive the uniform energy decay rates valid for the model without the above mentioned restrictions. In particular, it is shown that a simple, monotone nonlinear feedback (without the tangential derivatives of the horizontal displacement) provides the uniform decay rates for the energy, in the absence of geometric hypotheses imposed on the controlled part of the boundary. This is accomplished by establishing, among other things, “sharp” regularity results valid for the boundary traces of solutions corresponding to this nonlinear model and by employing a Holmgren type uniqueness result proved by Isakov (1997) for the dynamical systems of elasticity which are overdetermined on the boundary
Keywords :
damping; elasticity; feedback; flexible structures; nonlinear dynamical systems; stability; vibration control; damping; decay rates; elastic plate; energy dissipation; full von Karman system; nonlinear boundary feedback; nonlinear dynamical systems; stabilization; transient deformations; unique continuation; Boundary conditions; Closed loop systems; Damping; Elasticity; Energy dissipation; Feedback loop; Force feedback; Mathematics; Nonlinear dynamical systems; Tensile stress;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control, 1998. Proceedings of the 37th IEEE Conference on
Conference_Location :
Tampa, FL
ISSN :
0191-2216
Print_ISBN :
0-7803-4394-8
Type :
conf
DOI :
10.1109/CDC.1998.758244
Filename :
758244
Link To Document :
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