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Scalable command governor via semi-ellipsoidal set for linear systems with time-varying soft constraints

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Abstract

This paper provides a solution for a command governor (CG) that employs a semi-ellipsoidal set. The motivation is driven by the need to address the shortcomings of polyhedral and ellipsoidal sets widely used in CG. In particular for many applications, polyhedral sets require a large number of linear inequality constraints while ellipsoidal sets are too conservative. Furthermore, both types of sets are generally designed for systems with time-invariant and hard constraints. The contributions of the paper are: (i) we provide new convex conditions to construct an invariant and constraint-admissible semi-ellipsoidal set for discrete-time linear systems with time-varying soft constraints; (ii) we propose a computationally efficient procedure to solve the online optimization problem associated with the newly introduced semi-ellipsoidal set in CG. Three numerical examples with comparison to earlier solutions from the literature illustrate the effectiveness of the proposed approach.

Original languageEnglish
Article number112438
JournalAutomatica
Volume179
DOIs
Publication statusPublished - 1 Sept 2025

Keywords

  • ADMM
  • Command governor
  • Invariant set
  • Linear system
  • State and input constraint

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