Control Barrier Function Contracts for Vehicular Mission Planning Under Signal Temporal Logic Specifications
Abstract
We present a compositional control synthesis method based on assume-guarantee contracts with application to correct-by-construction design of vehicular mission plans. In our approach, a mission-level specification expressed in a fragment of signal temporal logic (STL) is decomposed into predicates defined on non-overlapping time intervals. The STL predicates are then mapped to an aggregation of contracts associated with continuously differentiable time-varying control barrier functions. The barrier functions are used to constrain the lower-level control synthesis problem, which is solved via quadratic programming. Our approach can avoid the conservatism of previous methods for task-driven control based on under-approximations. We illustrate its effectiveness on a case study motivated by vehicular mission planning under safety constraints as well as constraints imposed by traffic regulations under vehicle-to-vehicle and vehicle-to-infrastructure communication.
Cite
@article{arxiv.2209.07478,
title = {Control Barrier Function Contracts for Vehicular Mission Planning Under Signal Temporal Logic Specifications},
author = {Muhammad Waqas and Nikhil Vijay Naik and Petros Ioannou and Pierluigi Nuzzo},
journal= {arXiv preprint arXiv:2209.07478},
year = {2022}
}
Comments
Extended version of paper accepted to appear at the 61st IEEE Conference on Decision and Control (CDC), 2022