English

State-space fading memory

Systems and Control 2026-04-27 v2 Systems and Control

Abstract

The fading-memory (FM) property captures the progressive loss of influence of past inputs on a system's current output and has originally been formalized by Boyd and Chua in an operator-theoretic framework. Despite its importance for systems approximation, reservoir computing, and recurrent neural networks, its connection with state-space notions of nonlinear stability, especially incremental ones, remains understudied. This paper introduces a state-space definition of FM. In state-space, FM can be interpreted as an extension of incremental input-to-output stability (δ\deltaIOS) that explicitly incorporates a memory kernel upper-bounding the decay of past input differences. It is also closely related to Boyd and Chua's FM definition, with the sole difference of requiring uniform, instead of general, continuity of the memory functional with respect to an input-fading norm. We demonstrate that incremental input-to-state stability (δ\deltaISS) implies FM semi-globally for time-invariant systems under an equibounded input assumption. Notably, Boyd and Chua's approximation theorems apply to δ\deltaISS state-space models. As a closing application, we show that, under mild assumptions, the state-space model of current-driven memristors possess the FM property.

Cite

@article{arxiv.2603.23814,
  title  = {State-space fading memory},
  author = {Gustave Bainier and Antoine Chaillet and Rodolphe Sepulchre and Alessio Franci},
  journal= {arXiv preprint arXiv:2603.23814},
  year   = {2026}
}

Comments

13 pages

R2 v1 2026-07-01T11:36:31.085Z