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Nonlinear Feedback Design for Fixed-Time Stabilization of Linear Control Systems

IEEE Transactions on Automatic Control · 2011 · Vol. 57(8) · pp. 2106–2110
Andrey Polyakov

Abstract

Two types of nonlinear control algorithms are presented for uncertain linear plants. Controllers of the first type are stabilizing polynomial feedbacks that allow to adjust a guaranteed convergence time of system trajectories into a prespecified neighborhood of the origin independently on initial conditions. The control design procedure uses block control principles and finite-time attractivity properties of polynomial feedbacks. Controllers of the second type are modifications of the second order sliding mode control algorithms. They provide global finite-time stability of the closed-loop system and allow to adjust a guaranteed settling time independently on initial conditions. Control algorithms are presented for both single-input and multi-input systems. Theoretical results are supported by numerical simulations.

Adaptive Control of Nonlinear SystemsControl and Stability of Dynamical SystemsStability and Control of Uncertain SystemsControl theory (sociology)Settling timeNonlinear systemConvergence (economics)PolynomialStability (learning theory)Sliding mode controlLinear systemMathematicsExponential stability

Funding

  • Institut national de recherche en informatique et en automatique (INRIA)
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References
Differential equations with discontinuous right-hand sides
Journal of Mathematical Analysis and Applications · 1991 · 608 citations
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