paper-with-me

홈 › Papers

Novel Conditions for the Finite-Region Stability of 2D-Systems with Application to Iterative Learning Control

2024-12-19 · Chao Liang, Carlo Cosentino, Alessio Merola, Maria Romano, Francesco Amato

Some recent papers have extended the concept of finite-time stability (FTS) to the context of 2D linear systems, where it has been referred to as finite-region stability (FRS). FRS methodologies make even more sense than the classical FTS approach developed for 1D-systems, since, typically, at least one of the state variables of 2D-systems is a space coordinate, rather than a time variable. Since space coordinates clearly belong to finite intervals, FRS techniques are much more effective than the classical Lyapunov approach, which looks to the asymptotic behavior of the system over an infinite interval. To this regard, the novel contribution of this paper goes in several directions. First, we provide a novel sufficient condition for the FRS of linear time-varying (LTV) discrete-time 2D-systems, which turns out to be less conservative than those ones provided in the existing literature. Then, an interesting application of FRS to the context of iterative learning control (ILC) is investigated, by exploiting the previously developed theory. In particular, a new procedure is proposed so that the tracking errors of the ILC law converges within the desired bound in a finite number of iterations. Finally, a sufficient condition to solve the finite-region stabilization problem is proposed. All the results provided in the paper lead to optimization problems constrained by linear matrix inequalities (LMIs), that can be solved via widely available software. Numerical examples illustrate and validate the effectiveness of the proposed technique.

📄 PDF Abstract BibTeX arXiv:2412.15078

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Local Stability and Stabilization of Quadratic-Bilinear Systems using Petersen's Lemma

2025-03-26 · Amir Enayati Kafshgarkolaei, Maziar S. Hemati

Quadratic-bilinear (QB) systems arise in many areas of science and engineering. In this paper, we present a scalable approach for designing locally stabilizing state-feedback control laws and certifying the local stabili…

LEMMA

On annular short-time stability conditions for generalized Persidskii systems

2022-04-15 · Wenjie Mei, Denis Efimov, Rosane Ushirobira

This paper studies the trajectory behavior evaluation for generalized Persidskii systems with an essentially bounded input on a finite time interval. Also, the notions of annular settling and output annular settling for …

Unified Predefined-time Stability Conditions of Nonlinear Systems with Lyapunov Analysis

2024-04-01 · Bing Xiao, Haichao Zhang, Shijie Zhao, Lu Cao

This brief gives a set of unified Lyapunov stability conditions to guarantee the predefined-time/finite-time stability of a dynamical systems. The derived Lyapunov theorem for autonomous systems establishes equivalence w…

Koopman-based feedback design with stability guarantees

2023-12-03 · Robin Strässer, Manuel Schaller, Karl Worthmann, Julian Berberich 외

We present a method to design a state-feedback controller ensuring exponential stability for nonlinear systems using only measurement data. Our approach relies on Koopman-operator theory and uses robust control to explic…

Scheduling

Finite-time stability properties of Lur'e systems with piecewise continuous nonlinearities

2023-02-02 · Simone Mariano, Romain Postoyan, Luca Zaccarian

We analyze the stability properties of Lur'e systems with piecewise continuous nonlinearities by exploiting the notion of set-valued Lie derivative for Lur'e-Postnikov Lyapunov functions. We first extend an existing resu…

Friction