Title
Temporal Logic Control for Stochastic Linear Systems using Abstraction Refinement of Probabilistic Games.
Abstract
We consider the problem of computing the set of initial states of a dynamical system such that there exists a control strategy to ensure that the trajectories satisfy a temporal logic specification with probability 1 (almost-surely). We focus on discrete-time, stochastic linear dynamics and specifications given as formulas of the Generalized Reactivity(1) fragment of Linear Temporal Logic over linear predicates in the states of the system. We propose a solution based on iterative abstraction-refinement, and turn-based 2-player probabilistic games. While the theoretical guarantee of our algorithm after any finite number of iterations is only a partial solution, we show that if our algorithm terminates, then the result is the set of satisfying initial states. Moreover, for any (partial) solution our algorithm synthesizes witness control strategies to ensure almost-sure satisfaction of the temporal logic specification. We demonstrate our approach on an illustrative case study.
Year
DOI
Venue
2014
10.1145/2728606.2728608
Proceedings of the 18th International Conference on Hybrid Systems: Computation and Control
DocType
Citations 
PageRank 
Journal
8
0.55
References 
Authors
21
6
Name
Order
Citations
PageRank
Maria Svorenova1101.27
Jan Kretínský215916.02
Martin Chmelik314610.34
Krishnendu Chatterjee42179162.09
Ivana Cerná525017.48
Calin Belta62197153.54