Title
Robust Model Predictive Control for Signal Temporal Logic Synthesis.
Abstract
Most automated systems operate in uncertain or adversarial conditions, and have to be capable of reliably reacting to changes in the environment. The focus of this paper is on automatically synthesizing reactive controllers for cyber-physical systems subject to signal temporal logic (STL) specifications. We build on recent work that encodes STL specifications as mixed integer linear constraints on the variables of a discrete-time model of the system and environment dynamics. To obtain a reactive controller, we present solutions to the worst-case model predictive control (MPC) problem using a suite of mixed integer linear programming techniques. We demonstrate the comparative effectiveness of several existing worst-case MPC techniques, when applied to the problem of control subject to temporal logic specifications; our empirical results emphasize the need to develop specialized solutions for this domain.
Year
DOI
Venue
2015
10.1016/j.ifacol.2015.11.195
IFAC-PapersOnLine
Keywords
Field
DocType
Hybrid systems,model predictive control,uncertain systems,robust optimization,signal temporal logic
Integer,Control theory,Suite,Control theory,Robust optimization,Computer science,Model predictive control,Control engineering,Integer programming,Temporal logic,Hybrid system
Conference
Volume
Issue
ISSN
48
27
2405-8963
Citations 
PageRank 
References 
4
0.47
0
Authors
3
Name
Order
Citations
PageRank
Samira S. Farahani1294.46
Vasumathi Raman215014.07
Richard M. Murray3123221223.70