English

Meta-Learning Guarantees for Online Receding Horizon Learning Control

Systems and Control 2022-11-02 v9 Machine Learning Systems and Control

Abstract

In this paper we provide provable regret guarantees for an online meta-learning receding horizon control algorithm in an iterative control setting. We consider the setting where, in each iteration the system to be controlled is a linear deterministic system that is different and unknown, the cost for the controller in an iteration is a general additive cost function and there are affine control input constraints. By analysing conditions under which sub-linear regret is achievable, we prove that the meta-learning online receding horizon controller achieves an average of the dynamic regret for the controller cost that is O~((1+1/N)T3/4)\tilde{O}((1+1/\sqrt{N})T^{3/4}) with the number of iterations NN. Thus, we show that the worst regret for learning within an iteration improves with experience of more iterations, with guarantee on rate of improvement.

Keywords

Cite

@article{arxiv.2010.11327,
  title  = {Meta-Learning Guarantees for Online Receding Horizon Learning Control},
  author = {Deepan Muthirayan and Pramod P. Khargonekar},
  journal= {arXiv preprint arXiv:2010.11327},
  year   = {2022}
}

Comments

The proof of the method in this paper is incorrect. The correct method, which is different from this paper is given in "online learning for predictive control with provable regret guarantees": arXiv:2111.15041

R2 v1 2026-06-23T19:32:12.885Z