DocumentCode :
3530215
Title :
Abstraction-based solution of optimal stopping problems under uncertainty
Author :
Reissig, Gunther ; Rungger, Matthias
Author_Institution :
Dept. Aerosp. Eng., Univ. of the Fed. Armed Forces Munich, Neubiberg, Germany
fYear :
2013
fDate :
10-13 Dec. 2013
Firstpage :
3190
Lastpage :
3196
Abstract :
In this paper we present novel results on the solution of optimal control problems with the help of finite-state approximations (“symbolic models”) of infinite-state plants. We investigate optimal stopping problems in the minimax sense, with undiscounted running and terminal costs, for nonlinear discrete-time plants subject to perturbations and constraints. This problem class includes finite-horizon and exit-(entry-)time problems as well as pursuit-evasion and reach-avoid games as special cases. We utilize symbolic models of the plant to upper bound the value function, i.e., the achievable closed-loop performance, and to compute controllers realizing the bounds. The symbolic models are obtained from suitable discretizations of the state and input spaces, and we prove that the computed bounds converge to the value function as the discretization errors approach zero. The value function is in general discontinuous, and the convergence (in the hypographical sense) is uniform on every compact subset of the state space. We apply the proposed method to design an approximately optimal feedback controller that starts up a DC-DC converter and is robust against supply voltage as well as load fluctuations.
Keywords :
DC-DC power convertors; approximation theory; control system synthesis; discrete time systems; feedback; game theory; minimax techniques; nonlinear control systems; optimal control; DC-DC converter; closed-loop performance; discretization errors; entry-time problems; exit-time problem; finite-horizon problems; finite-state approximation; infinite-state plants; input space discretization; load fluctuations; minimax problems; nonlinear discrete-time plants; optimal feedback controller design; optimal stopping problem; pursuit-evasion game; reach-avoid game; state discretizations; symbolic models; undiscounted running cost; undiscounted terminal cost; value function; Abstracts; Aerospace electronics; Approximation methods; Convergence; Cost function; Optimal control; Upper bound;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2013 IEEE 52nd Annual Conference on
Conference_Location :
Firenze
ISSN :
0743-1546
Print_ISBN :
978-1-4673-5714-2
Type :
conf
DOI :
10.1109/CDC.2013.6760370
Filename :
6760370
Link To Document :
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