Modeling and practical fixed-time attitude tracking control of a paraglider recovery system

Yiming Guo, Jianguo Yan, Cihang Wu, Bing Xiao

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

The mathematical modeling and the control problem of the paraglider recovery system (PRS) are investigated in this paper. A 9-degree-of-freedom dynamic model describing the paraglider recovery control system is modeled including the inside relative rotation, the apparent mass, and the payload's time-varying inertia. On the basis of the attitude tracking error system, a novel practical fixed-time attitude tracking control approach is then proposed. The attitude tracking error is governed to converge into the small regions of the origin with a fixed-time convergence rate. Moreover, this rate is independent of any initial states. Simulation results are finally presented to illustrate the PRS performance obtained from the proposed control scheme.

Original languageEnglish
Pages (from-to)391-401
Number of pages11
JournalISA Transactions
Volume128
DOIs
StatePublished - Sep 2022

Keywords

  • Attitude tracking
  • Dynamical modeling
  • Fixed-time control
  • Paraglider recovery system

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