English

Low-Complexity Control for a Class of Uncertain MIMO Nonlinear Systems under Generalized Time-Varying Output Constraints (extended version)

Systems and Control 2026-03-23 v6 Systems and Control

Abstract

This paper introduces a novel control framework to address the satisfaction of multiple time-varying output constraints in uncertain high-order MIMO nonlinear control systems. Unlike existing methods, which often assume that the constraints are always decoupled and feasible, our approach can handle coupled time-varying constraints even in the presence of potential infeasibilities. First, it is shown that satisfying multiple constraints essentially boils down to ensuring the positivity of a scalar variable, representing the signed distance from the boundary of the time-varying output-constrained set. To achieve this, a single consolidating constraint is designed that, when satisfied, guarantees convergence to and invariance of the time-varying output-constrained set within a user-defined finite time. Next, a novel robust and low-complexity feedback controller is proposed to ensure the satisfaction of the consolidating constraint. Additionally, we provide a mechanism for online modification of the consolidating constraint to find a least violating solution when the constraints become mutually infeasible for some time. Finally, simulation examples of trajectory and region tracking for a mobile robot validate the proposed approach.

Keywords

Cite

@article{arxiv.2401.03997,
  title  = {Low-Complexity Control for a Class of Uncertain MIMO Nonlinear Systems under Generalized Time-Varying Output Constraints (extended version)},
  author = {Farhad Mehdifar and Lars Lindemann and Charalampos P. Bechlioulis and Dimos V. Dimarogonas},
  journal= {arXiv preprint arXiv:2401.03997},
  year   = {2026}
}

Comments

21 pages, 9 figures (extended version). Minor revisions: corrected text and mathematical typos, updated assumption statements, expanded remarks, extended the discussion at the end of Section III.D, and fixed a minor issue in the proof of Theorem 1; results unchanged

R2 v1 2026-06-28T14:11:23.555Z