English

Reactive and Risk-Aware Control for Signal Temporal Logic

Systems and Control 2021-09-08 v1 Formal Languages and Automata Theory Logic in Computer Science Systems and Control

Abstract

The deployment of autonomous systems in uncertain and dynamic environments has raised fundamental questions. Addressing these is pivotal to build fully autonomous systems and requires a systematic integration of planning and control. We first propose reactive risk signal interval temporal logic (ReRiSITL) as an extension of signal temporal logic (STL) to formulate complex spatiotemporal specifications. Unlike STL, ReRiSITL allows to consider uncontrollable propositions that may model humans as well as random environmental events such as sensor failures. Additionally, ReRiSITL allows to incorporate risk measures, such as (but not limited to) the Conditional Value-at-Risk, to measure the risk of violating certain spatial specifications. Second, we propose an algorithm to check if an ReRiSITL specification is satisfiable. For this purpose, we abstract the ReRiSITL specification into a timed signal transducer and devise a game-based approach. Third, we propose a reactive planning and control framework for dynamical control systems under ReRiSITL specifications.

Keywords

Cite

@article{arxiv.2108.13490,
  title  = {Reactive and Risk-Aware Control for Signal Temporal Logic},
  author = {Lars Lindemann and George J. Pappas and Dimos V. Dimarogonas},
  journal= {arXiv preprint arXiv:2108.13490},
  year   = {2021}
}

Comments

Conditionally accepted in the IEEE Transactions on Automatic Control

R2 v1 2026-06-24T05:32:40.486Z