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Neuroadaptive Optimal Fixed-Time Synchronization and its Circuit Realization for Unidirectionally Coupled FO Self-Sustained Electromechanical Seismograph Systems

  • Shaohua LUO
  • , Yongduan SONG*
  • , Frank L. LEWIS
  • , Roberto GARRAPPA
  • *Corresponding author for this work

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

Abstract

This article investigates the neuroadaptive optimal fixed-time synchronization and its circuit realization along with dynamical analysis for unidirectionally coupled fractional-order (FO) self-sustained electromechanical seismograph systems under subharmonic and superharmonic oscillations. The synchronization model of the coupled FO seismograph system is established based on drive and response seismic detectors. The dynamical analysis reveals this coupled system generating transient chaos and homoclinic/heteroclinic oscillations. The test results of the constructed equivalent analog circuit further testify its complex nonlinear dynamics. Then, a neuroadaptive optimal fixed-time synchronization controller integrated with the FO hyperbolic tangent tracking differentiator (HTTD), interval type-2 fuzzy neural network (IT2FNN) with transformation, and prescribed performance function (PPF) together with the constraint condition is developed in the backstepping recursive design. Furthermore, it is proved that all signals of this closed-loop system are bounded, and the tracking errors fall into a trap of the prescribed constraint along with the minimized cost function. Extensive studies confirm the effectiveness of the proposed scheme.
Original languageEnglish
Pages (from-to)2454-2466
Number of pages13
JournalIEEE Transactions on Cybernetics
Volume53
Issue number4
Early online date3 Nov 2021
DOIs
Publication statusPublished - Apr 2023
Externally publishedYes

Bibliographical note

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

Funding

This work was supported in part by the National Natural Science Foundation of China under Grant 52065008, Grant 61860206008, and Grant 61773081; in part by the Science and Technology Planning Project of Guizhou Province under Grant [2020]1Y274; in part by the Chongqing Technology Innovation and Application Development Special Project under Grant cstc2019jscx-fxydX0092; in part by the Foundation for Innovative Research Groups of Universities in Chongqing under Grant CXQTP20035; and in part by the Open Research Fund of Education Department of Guizhou Province under Grant KYzhi[2019]041.

Keywords

  • Chaos synchronization
  • circuit implementation
  • interval type-2 fuzzy neural network (IT2FNN)
  • optimal fixed-time control
  • unidirectionally coupled fractional-order (FO) self-sustained electromechanical seismograph systems

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