Nonlinear Sampled-data Systems--A Lifting Framework

Fuente: arXiv
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Main Authors: Yamamoto, Yutaka, Yamamoto, Kaoru
Format: Preprint
Published: 2025
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author Yamamoto, Yutaka
Yamamoto, Kaoru
author_facet Yamamoto, Yutaka
Yamamoto, Kaoru
contents This short note gives a new framework for dealing with nonlinear sampled-data systems. We introduce a new idea of lifting, which is well known for linear systems, but not successfully generalized to nonlinear systems. This paper introduces a new lifting technique for nonlinear, time-invariant systems, which are different from the linear counterpart as developed in [Bamieh et al. 1991, Yamamoto 1994], etc. The main difficulty is that the direct feedthrough term effective in the linear case cannot be generalized to the nonlinear case. Instead, we will further lift the state trajectory, and obtain an equivalent time-invariant discrete-time system with function-space input and output spaces. The basic framework, as well as the closed-loop equation with a discrete-time controller, is given. As an application of this framework, we give a representation for the Koopman operator derived from the given original nonlinear system.
format Preprint
id arxiv_https___arxiv_org_abs_2509_12681
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nonlinear Sampled-data Systems--A Lifting Framework
Yamamoto, Yutaka
Yamamoto, Kaoru
Systems and Control
93C10, 93C57, 93C62
This short note gives a new framework for dealing with nonlinear sampled-data systems. We introduce a new idea of lifting, which is well known for linear systems, but not successfully generalized to nonlinear systems. This paper introduces a new lifting technique for nonlinear, time-invariant systems, which are different from the linear counterpart as developed in [Bamieh et al. 1991, Yamamoto 1994], etc. The main difficulty is that the direct feedthrough term effective in the linear case cannot be generalized to the nonlinear case. Instead, we will further lift the state trajectory, and obtain an equivalent time-invariant discrete-time system with function-space input and output spaces. The basic framework, as well as the closed-loop equation with a discrete-time controller, is given. As an application of this framework, we give a representation for the Koopman operator derived from the given original nonlinear system.
title Nonlinear Sampled-data Systems--A Lifting Framework
topic Systems and Control
93C10, 93C57, 93C62
url https://arxiv.org/abs/2509.12681