JOURNAL ARTICLE

Finite-Dimensional Backstepping Controller Design

Varga Κ. KalantarovTürker ÖzsarıKemal Yılmaz

Year: 2024 Journal:   IEEE Transactions on Automatic Control Vol: 70 (6)Pages: 3816-3829   Publisher: Institute of Electrical and Electronics Engineers

Abstract

We introduce a finite-dimensional version of backstepping controller design for stabilizing solutions of partial differential equations (PDEs) from boundary. Our controller uses only a finite number of Fourier modes of the state of solution, as opposed to the classical backstepping controller which uses all (infinitely many) modes. We apply our method to the reaction-diffusion equation, which serves only as a canonical example but the method is applicable also to other PDEs whose solutions can be decomposed into a slow finite-dimensional part and a fast tail, where the former dominates the evolution in large time. One of the main goals is to estimate the sufficient number of modes needed to stabilize the plant at a prescribed rate. In addition, we find the minimal number of modes that guarantee the stabilization at a certain (unprescribed) decay rate. Theoretical findings are supported with numerical solutions. © 2024 IEEE.

Keywords:
Backstepping Control theory (sociology) Control engineering Computer science Controller (irrigation) Mathematics Engineering Control (management) Adaptive control Artificial intelligence

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Topics

Magnetic Bearings and Levitation Dynamics
Physical Sciences →  Engineering →  Control and Systems Engineering
Sensorless Control of Electric Motors
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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