Control strategies for the Fokker−Planck equation

Author:

Breiten Tobias,Kunisch Karl,Pfeiffer Laurent

Abstract

Using a projection-based decoupling of the Fokker−Planck equation, control strategies that allow to speed up the convergence to the stationary distribution are investigated. By means of an operator theoretic framework for a bilinear control system, two different feedback control laws are proposed. Projected Riccati and Lyapunov equations are derived and properties of the associated solutions are given. The well-posedness of the closed loop systems is shown and local and global stabilization results, respectively, are obtained. An essential tool in the construction of the controls is the choice of appropriate control shape functions. Results for a two dimensional double well potential illustrate the theoretical findings in a numerical setup.

Publisher

EDP Sciences

Subject

Computational Mathematics,Control and Optimization,Control and Systems Engineering

Cited by 16 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Modeling and Optimal Control for a Class of One Dimensional Counter-Swarm Problems with Distributed Point Actuation;2023 62nd IEEE Conference on Decision and Control (CDC);2023-12-13

2. Exact Controllability of Fokker–Planck Equations and McKean–Vlasov SDEs;SIAM Journal on Control and Optimization;2023-06-22

3. Improving the Convergence Rates for the Kinetic Fokker–Planck Equation by Optimal Control;SIAM Journal on Control and Optimization;2023-06-16

4. Integral input-to-state stability of unbounded bilinear control systems;Mathematics of Control, Signals, and Systems;2022-02-07

5. Second-order analysis of Fokker–Planck ensemble optimal control problems;ESAIM: Control, Optimisation and Calculus of Variations;2022

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