Optimal Receding Horizon Control for Finite Deterministic Systems with Temporal Logic Constraints
Robotics
2013-03-15 v1
Abstract
In this paper, we develop a provably correct optimal control strategy for a finite deterministic transition system. By assuming that penalties with known probabilities of occurrence and dynamics can be sensed locally at the states of the system, we derive a receding horizon strategy that minimizes the expected average cumulative penalty incurred between two consecutive satisfactions of a desired property. At the same time, we guarantee the satisfaction of correctness specifications expressed as Linear Temporal Logic formulas. We illustrate the approach with a persistent surveillance robotics application.
Keywords
Cite
@article{arxiv.1303.3533,
title = {Optimal Receding Horizon Control for Finite Deterministic Systems with Temporal Logic Constraints},
author = {Mária Svoreňová and Ivana Černá and Calin Belta},
journal= {arXiv preprint arXiv:1303.3533},
year = {2013}
}
Comments
Technical report accompanying the ACC 2013 paper