Fixed-Time Synergetic Control for a Seven-Dimensional Chaotic Power System Model

  • Jiangbin Wang
  • , Ling Liu
  • , Chongxin Liu
  • , Jian Liu

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

Differing from the existing literature that only focus on controlling some simple chaotic power system models, this paper aims to control chaotic oscillations in complex seven-dimensional power system model. First, based on fixed-time stability theory, a novel fixed-time synergetic controller is proposed to make its macro variable enter into an invariant manifold within a fixed-time upper bound by a constant, depending only on control parameters that can be changed by the designer and calculated theoretically. The presented controller can eliminate chattering and achieve exact convergence of the macro variable. Then, the proposed control method is applied to suppress chaos in the seven-dimensional power system model. Based on the important idea that chaotic oscillation in a power system is caused by its excess energy, a model of energy storage device controller is employed in the controller design process to absorb active power from the entire controlled system. Finally, several simulation examples are given to confirm the effectiveness, the superiority and the robustness of the proposed control scheme. Compared with the existing literature, a relatively general method of suppressing chaotic oscillations in power systems is developed.

Original languageEnglish
Article number1950130
JournalInternational Journal of Bifurcation and Chaos
Volume29
Issue number10
DOIs
StatePublished - 1 Sep 2019

Keywords

  • Seven-dimensional power system model
  • chaos control
  • chaotic oscillation
  • fixed-time stability
  • synergetic control

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