Adaptive Control With Global Exponential Stability for Parameter-Varying Nonlinear Systems Under Unknown Control Gains

  • Hefu YE
  • , Kai ZHAO
  • , Haijia WU
  • , Yongduan SONG*
  • *Corresponding author for this work

Research output: Journal PublicationsJournal Article (refereed)peer-review

34 Citations (Scopus)

Abstract

It is nontrivial to achieve exponential stability even for time-invariant nonlinear systems with matched uncertainties and persistent excitation (PE) condition. In this article, without the need for PE condition, we address the problem of global exponential stabilization of strict-feedback systems with mismatched uncertainties and unknown yet time-varying control gains. The resultant control, embedded with time-varying feedback gains, is capable of ensuring global exponential stability of parametric-strict-feedback systems in the absence of persistence of excitation. By using the enhanced Nussbaum function, the previous results are extended to more general nonlinear systems where the sign and magnitude of the time-varying control gain are unknown. In particular, the argument of the Nussbaum function is guaranteed to be always positive with the aid of nonlinear damping design, which is critical to perform a straightforward technical analysis of the boundedness of the Nussbaum function. Finally, the global exponential stability of parameter-varying strict-feedback systems, the boundedness of the control input and the update rate, and the asymptotic constancy of the parameter estimate are established. Numerical simulations are carried out to verify the effectiveness and benefits of the proposed methods.
Original languageEnglish
Pages (from-to)7858-7867
Number of pages10
JournalIEEE Transactions on Cybernetics
Volume53
Issue number12
Early online date11 Jan 2023
DOIs
Publication statusPublished - Dec 2023
Externally publishedYes

Bibliographical note

This article was recommended by Associate Editor H. Zhang.
Publisher Copyright:
© 2013 IEEE.

Funding

This work was supported in part by the Graduate Research and Innovation Foundation of Chongqing, China, under Grant CYB22065; in part by the National Natural Science Foundation of China under Grant 61991400, Grant 61991403, Grant 61860206008, Grant 61933012, Grant 61833013, and Grant 62250710167; and in part by the Research on the Mechanism of Data-driven Multi-scale Causal Inference, Science and Technology Research Project of Chongqing Municipal Education Commission under Grant KJZD-M202201102.

Keywords

  • Adaptive control
  • exponential stability
  • Nussbaum function
  • parameter-varying nonlinear systems

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