A new algorithmic setting is proposed for the discrete-time finite-horizon linear quadratic (LQ) optimal control problem with constrained or unconstrained final state, no matter whether the problem is cheap, singular, or regular. The proposed solution, based on matrix pseudoinversion, is completed and made practically implementable by a nesting procedure for welding optimal subarcs that enables arbitrary enlargement of the control time interval.

G., M., Prattichizzo, D., & E., Z. (2003). A Nested Computational Approach to the Discrete-Time Finite-Horizon LQ Control Problem. SIAM JOURNAL ON CONTROL AND OPTIMIZATION, 42(3), 1002-1012 [10.1137/S0363012901384429].

A Nested Computational Approach to the Discrete-Time Finite-Horizon LQ Control Problem

PRATTICHIZZO, DOMENICO;
2003

Abstract

A new algorithmic setting is proposed for the discrete-time finite-horizon linear quadratic (LQ) optimal control problem with constrained or unconstrained final state, no matter whether the problem is cheap, singular, or regular. The proposed solution, based on matrix pseudoinversion, is completed and made practically implementable by a nesting procedure for welding optimal subarcs that enables arbitrary enlargement of the control time interval.
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Utilizza questo identificativo per citare o creare un link a questo documento: http://hdl.handle.net/11365/7413
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