DocumentCode
3744229
Title
Controller synthesis with inductive proofs for piecewise linear systems: An SMT-based algorithm
Author
Zhenqi Huang;Yu Wang;Sayan Mitra;Geir E. Dullerud;Swarat Chaudhuri
Author_Institution
Coordinated Science Laboratory, University of Illinois at Urbana-Champaign, 61801, USA
fYear
2015
Firstpage
7434
Lastpage
7439
Abstract
We present a controller synthesis algorithm for reach-avoid problems for piecewise linear discrete-time systems. Our algorithm relies on SMT solvers and in this paper we focus on piecewise constant control strategies. Our algorithm generates feedback control laws together with inductive proofs of unbounded time safety and progress properties with respect to the reach-avoid sets. Under a reasonable robustness assumption, the algorithm is shown to be complete. That is, it either generates a controller of the above type along with a proof of correctness, or it establishes the impossibility of the existence of such controllers. To achieve this, the algorithm iteratively attempts to solve a weakened and strengthened versions of the SMT encoding of the reach-avoid problem. We present preliminary experimental results on applying this algorithm based on a prototype implementation.
Keywords
"Encoding","Safety","Control systems","Feedback control","Robustness","Linear systems","Search problems"
Publisher
ieee
Conference_Titel
Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
Type
conf
DOI
10.1109/CDC.2015.7403394
Filename
7403394
Link To Document