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Reconfiguring second-order dynamic systems via P-D feedback eigenstructure assignment: A parametric method

  • Guo Sheng Wang*
  • , Bing Liang
  • , Guang Ren Duan
  • *Corresponding author for this work
  • Academy of Armored Force Engineering China
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The design of reconfiguring a class of second-order dynamic systems via proportional plus derivative (P-D) feedback is considered. The aim is to resynthesize a P-D feedback controller such that the eigenvalues of the reconfigured closed-loop system can completely recover those of the original close-loop system, and make the corresponding eigenvectors of the former as close to those of the latter as possible. Based on a parametric result of P-D feedback eigenstructure assignment in second-order dynamic systems, parametric expressions for all the P-D feedback gains and all the closed-loop eigenvector matrices are established and a parametric algorithm for this reconfiguration design is proposed. The parametric algorithm offers all the degrees of design freedom, which can be further utilized to satisfy some additional performances in control system designs. This algorithm involves manipulations only on the original second-order system matrices, thus it is simple and convenient to use. An illustrative example and the simulation results show the simplicity and effect of the proposed parametric method.

Original languageEnglish
Pages (from-to)109-116
Number of pages8
JournalInternational Journal of Control, Automation and Systems
Volume3
Issue number1
StatePublished - Mar 2005

Keywords

  • Eigenstructure assignment
  • P-D feedback
  • Parametric method
  • Second-order dynamic systems

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