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December 17, 2024IEEE Transactions on Fuzzy Systems79 citations

Dynamic Event-Triggered-Based Fuzzy Adaptive Pinning Control for Multiagent Systems With Output Saturation

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HRHongru RenLCLiang CaoHMHui Ma

Key Points

  • The research aims to develop a fuzzy adaptive pinning control protocol for multiagent systems addressing output saturation.
  • Utilized the backstepping technique to design the control protocol.
  • Implemented a signal compensation method to handle output saturation in nonlinear systems.
  • Proposed a dynamic event-triggered mechanism with two dynamic laws for controller adjustment.
  • Simulation results showed improved performance of adaptive control under output saturation conditions.
  • The developed control protocol effectively reduced the required design adaptive parameters.
  • Demonstrated feasibility and suitability of the theoretical algorithm in multiagent systems.

Abstract

This article addresses the problem of distributed fuzzy adaptive pinning control for multiagent systems with output saturation via adopting the dynamic event-triggered mechanism. With the framework of the backstepping technique, a new adaptive pinning control protocol is developed, where an effective fuzzy strategy and a class of tuning functions are integrated into the control protocol to reduce the required design adaptive parameters. Then, the output saturation of nonlinear multiagent systems is first addressed via the signal compensation method. Moreover, a dynamic event-triggered mechanism about control information is proposed, where two dynamic laws are designed to further increase the adjustment margin of the controller. Finally, simulation results are utilized to demonstrate the suitability and feasibility of theoretical algorithm.

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Cite This Study

Ren et al. (2024) studied this question.

synapsesocial.com/papers/69d72c8ea98988943d563d05https://doi.org/10.1109/tfuzz.2024.3519186
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