English

Resilient Abstraction-Based Controller Design

Systems and Control 2020-08-17 v1 Formal Languages and Automata Theory Systems and Control

Abstract

We consider the computation of resilient controllers for perturbed non-linear dynamical systems w.r.t. linear-time temporal logic specifications. We address this problem through the paradigm of Abstraction-Based Controller Design (ABCD) where a finite state abstraction of the perturbed system dynamics is constructed and utilized for controller synthesis. In this context, our contribution is twofold: (I) We construct abstractions which model the impact of occasional high disturbance spikes on the system via so called disturbance edges. (II) We show that the application of resilient reactive synthesis techniques to these abstract models results in closed loop systems which are optimally resilient to these occasional high disturbance spikes. We have implemented this resilient ABCD workflow on top of SCOTS and showcase our method through multiple robot planning examples.

Keywords

Cite

@article{arxiv.2008.06315,
  title  = {Resilient Abstraction-Based Controller Design},
  author = {Stanly Samuel and Kaushik Mallik and Anne-Kathrin Schmuck and Daniel Neider},
  journal= {arXiv preprint arXiv:2008.06315},
  year   = {2020}
}

Comments

9 pages, 5 images, 1 table, to appear in CDC 2020

R2 v1 2026-06-23T17:51:31.615Z