We prove a version of the stochastic maximum principle, in the sense of Pontryagin, for the finite horizon optimal control of a stochastic partial differential equation driven by an infinitedimensional additive noise. In particular, we treat the case in which the nonlinear term is of Nemytskii type, dissipative, and with polynomial growth. The performance functional to be optimized is fairly general and may depend on point evaluation of the controlled equation. The results can be applied to a large class of nonlinear parabolic equations such as reaction-diffusion equations.

Stochastic maximum principle for optimal control of a class of nonlinear spdes with dissipative drift / M. Fuhrman, C. Orrieri. - In: SIAM JOURNAL ON CONTROL AND OPTIMIZATION. - ISSN 0363-0129. - 54:1(2016), pp. 341-371.

Stochastic maximum principle for optimal control of a class of nonlinear spdes with dissipative drift

M. Fuhrman
Primo
;
2016

Abstract

We prove a version of the stochastic maximum principle, in the sense of Pontryagin, for the finite horizon optimal control of a stochastic partial differential equation driven by an infinitedimensional additive noise. In particular, we treat the case in which the nonlinear term is of Nemytskii type, dissipative, and with polynomial growth. The performance functional to be optimized is fairly general and may depend on point evaluation of the controlled equation. The results can be applied to a large class of nonlinear parabolic equations such as reaction-diffusion equations.
Backward stochastic partial differential equations; Stochastic maximum principle; Stochastic optimal control; Stochastic partial differential equations; Control and Optimization
Settore MAT/06 - Probabilita' e Statistica Matematica
2016
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/472449
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