English

Data-Driven Koopman-Enhanced Extremum Seeking for Oscillation Damping in Nonlinear Systems

Systems and Control 2026-05-15 v2 Systems and Control

Abstract

We propose a novel extremum seeking control (ESC) method that operates in a lifted Koopman state space to minimize the filtered RMS energy in the dominant subspace. The lifted representation provides linear embeddings of nonlinear dynamics, enabling more accurate gradient estimation and dampening of state interference for more consistent ESC performance. Applied to a parameterized, forced, and time-varying Van der Pol oscillator, we show that the approach yields faster and more robust performance than operating ESC on the measured states. These advantages position the method for a diverse range of applications including vibration suppression, motion control, and subsynchronous oscillation mitigation in inverter-dominated power systems.

Keywords

Cite

@article{arxiv.2605.06804,
  title  = {Data-Driven Koopman-Enhanced Extremum Seeking for Oscillation Damping in Nonlinear Systems},
  author = {Timothy I. Salsbury and Min Gyung Yu and Sayak Mukherjee},
  journal= {arXiv preprint arXiv:2605.06804},
  year   = {2026}
}
R2 v1 2026-07-01T12:56:00.304Z