학술논문

Backstepping Control of Coupled General Hyperbolic-Parabolic PDE-PDE Systems
Document Type
Periodical
Source
IEEE Transactions on Automatic Control IEEE Trans. Automat. Contr. Automatic Control, IEEE Transactions on. 69(5):3465-3472 May, 2024
Subject
Signal Processing and Analysis
Backstepping
Observers
Couplings
State feedback
Mathematical models
Kernel
Feedforward systems
coupled hyperbolic-parabolic systems
observer design
state feedback design
Language
ISSN
0018-9286
1558-2523
2334-3303
Abstract
This article considers the backstepping state feedback and observer design for hyperbolic and parabolic PDEs, which are bidirectionally interconnected in a general coupling structure. Both PDE subsystems consist of coupled scalar PDEs with the heterodirectional hyperbolic PDE subsystem subject to actuation and sensing. By making use of a multistep approach to construct the transformation into a stable target system, it is shown that a backstepping state feedback and observer design only requires to solve the well-known kernel equations for the hyperbolic and parabolic subsystems as well as additional decoupling equations. The latter are standard initial boundary value problems for parabolic PDEs. This significantly facilitates the well-posedness analysis and the numerical computation of the backstepping controller. Exponential stability is verified for the state feedback loop, the observer error dynamics, and the closed-loop system using an observer-based compensator. The proposed backstepping design procedures are demonstrated for numerical examples.