DocumentCode :
697290
Title :
Worst-case state estimation and simulation of uncertain discrete-time systems using zonotopes
Author :
Puig, V. ; Cuguero, P. ; Quevedo, J.
Author_Institution :
Autom. Control Dept., Univ. Politec. de Cataluna, Terrassa, Spain
fYear :
2001
fDate :
4-7 Sept. 2001
Firstpage :
1691
Lastpage :
1697
Abstract :
In this paper a new approach for worst-case state estimation and simulation under structured uncertainty based on the use of an existent algorithm for solving validated initial value problems is introduced. Worst-case state simulation consists in computing a region of confidence for the system state, based on a deterministic uncertainty model for the system matrices and the previous confidence region for the system state. On the other hand, worst-case state estimation, also known, as set-membership state estimation consists in computing a region of confidence for the system state, based on a deterministic uncertainty model for the system matrices, the previous confidence region for the system state and the measures available considering also a deterministic model for the noise. The approach presented in this paper is intended for systems described by a discrete-time model with time varying parameters only known to belong to intervals. The algorithm formulates the problem of worst-case state estimation and simulation as a discrete initial value problem with bounded initial conditions that can be simulated using the Kuhn´s algorithm based on zonotopes. The proposed algorithm avoids one of the main problems of worst-case estimation and simulation, the problem on exponentially grow of uncertainty due to the wrapping effect with low computational cost.
Keywords :
discrete time systems; initial value problems; matrix algebra; state estimation; time-varying systems; uncertain systems; Kuhn´s algorithm; deterministic uncertainty model; discrete initial value problem; discrete-time model; initial value problems; set-membership state estimation; structured uncertainty; system matrices; time varying parameters; uncertain discrete-time system; worst-case state estimation; worst-case state simulation; wrapping effect; zonotopes; Computational modeling; Mathematical model; Orbits; State estimation; Uncertainty; Wrapping; Bounded Uncertainty and Errors in Variables; Estimation; Observers; Set-membership Estimation and Identification; Signal and Systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (ECC), 2001 European
Conference_Location :
Porto
Print_ISBN :
978-3-9524173-6-2
Type :
conf
Filename :
7076164
Link To Document :
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