English

On the complexity of linear systems: an approach via rate distortion theory and emulating systems

Systems and Control 2023-06-06 v1 Information Theory Systems and Control math.IT

Abstract

We define the complexity of a continuous-time linear system to be the minimum number of bits required to describe its forward increments to a desired level of fidelity, and compute this quantity using the rate distortion function of a Gaussian source of uncertainty in those increments. The complexity of a linear system has relevance in control-communications contexts requiring local and dynamic decision-making based on sampled data representations. We relate this notion of complexity to the design of attention-varying controllers, and demonstrate a novel methodology for constructing source codes via the endpoint maps of so-called emulating systems, with potential for non-parametric, data-based simulation and analysis of unknown dynamical systems.

Keywords

Cite

@article{arxiv.2306.02435,
  title  = {On the complexity of linear systems: an approach via rate distortion theory and emulating systems},
  author = {Eric Wendel and John Baillieul and Joseph Hollmann},
  journal= {arXiv preprint arXiv:2306.02435},
  year   = {2023}
}

Comments

To appear, American Controls Conference 2023, San Diego, CA