A bilinear optimization-based approach for eigenstructure assignment output feedback control of second-order linear systems

Authors

  • José M. Araújo Grupo de Pesquisa em Sinais e Sistemas, IFBA
  • Eugênio B. Castelan PósAutomação/DAS/UFSC
  • Carlos E. T. Dórea PPgEEC/DCA/UFRN
  • Isaac D. Isidório PPgEEC/DCA/UFRN

DOI:

https://doi.org/10.20906/CBA2024/4348

Keywords:

Second-order systems, Static output feedback, Coupled-Sylvester equations, Eigenstructure assignment, bilinear optimization

Abstract

In this paper, we propose an eigenstructure assignment approach for static-output feedback control design of second-order systems. First, the eigenvalue assignment problem is translated into that of solving coupled Sylvester equations, resulting in a set of bilinear matrix equalities, involving the corresponding left and right eigenvectors. These equalities are used as constraints of bilinear programming problems, for which different cost functions are proposed, representing the numerical conditioning of the solution and sensitivity functions which serve as a measure of the robustness of the assigned eigenvalues against uncertainties in the system’s parameters. A numerical example using a well-known benchmark is presented to illustrate the effectiveness of the proposed approach.

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Published

2024-10-18

Issue

Section

Articles