Optimal control of SPDEs driven by time-space Brownian motion
Optimization and Control
2024-01-03 v2
Abstract
In this paper we study a Pontryagin type stochastic maximum principle for the optimal control of a system, where the state dynamics satisfy a stochastic partial differential equation (SPDE) driven by a two-parameter (time-space) Brownian motion (also called Brownian sheet). We first discuss some properties of a Brownian sheet driven linear SPDE which models the growth of an ecosystem. Further, applying time-space white noise calculus we derive sufficient conditions and necessary conditions of optimality of the control. Finally, we illustrate our results by solving a linear quadratic control problem and an optimal harvesting problem in the plane. We also study possible applications to machine learning.
Keywords
Cite
@article{arxiv.2308.00173,
title = {Optimal control of SPDEs driven by time-space Brownian motion},
author = {Nacira Agram and Bernt Øksendal and Frank Proske and Olena Tymoshenko},
journal= {arXiv preprint arXiv:2308.00173},
year = {2024}
}
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30 PAGES