English

On Koopman Resolvents and Frequency Response of Nonlinear Systems

Systems and Control 2026-04-08 v2 Systems and Control Dynamical Systems Optimization and Control

Abstract

This paper proposes a novel formulation of frequency response for nonlinear systems in the Koopman operator framework. This framework is a promising direction for the analysis and synthesis of systems with nonlinear dynamics based on (linear) Koopman operators. We show that the frequency response of a nonlinear plant is derived through the Laplace transform of the output of the plant, which is a generalization of the classical approach to LTI plants and is guided by the resolvent theory of Koopman operators. The response is a complex-valued function of the driving angular frequency, allowing one to draw the so-called Bode plots, which display the gain and phase characteristics. Sufficient conditions for the existence of the frequency response are presented for three classes of dynamics.

Keywords

Cite

@article{arxiv.2603.05771,
  title  = {On Koopman Resolvents and Frequency Response of Nonlinear Systems},
  author = {Yoshihiko Susuki and Natsuki Katayama and Alexandre Mauroy and Igor Mezić},
  journal= {arXiv preprint arXiv:2603.05771},
  year   = {2026}
}

Comments

7 pages, 1 figure