Stochastic linear quadratic optimal control problem with terminal state constraints

Author:

Wang Hongxia1ORCID,Hu Yuxi1,Liu Yihang1,Xu Zhihao1,Song Lianfeng1

Affiliation:

1. College of Electrical Engineering and Automation Shandong University of Science and Technology Qingdao China

Abstract

AbstractThis paper addresses the stochastic linear quadratic (LQ) control problem with first‐ and second‐order moment constraints on the terminal state. The problem is a modified version of the optimal covariance control problem, where the terminal state is steered to a given probability distribution. Studying a multiplicative‐noise stochastic system rather than an additive‐noise system is a salient feature. Unlike the existing ideas in the optimal steering, by using the Lagrange multipliers method and establishing the stochastic maximum principle, our problem is converted into solving forward–backward stochastic difference equations (FBSDEs), which is a special stochastic two‐point boundary‐value problem (TPBVP). We provide the optimal closed‐loop controller and necessary and sufficient solvability conditions by developing a nonhomogeneous relationship between the optimal state and costate in FBSDEs. Finally, numerical examples are given to demonstrate our results.

Funder

Foundation for Innovative Research Groups of the National Natural Science Foundation of China

Key Technology Research and Development Program of Shandong Province

Publisher

Wiley

Subject

Control and Systems Engineering,Electrical and Electronic Engineering,Mathematics (miscellaneous)

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