4.7 Article

Fixed-time synchronization for complex-valued BAM neural networks with time-varying delays via pinning control and adaptive pinning control

Journal

CHAOS SOLITONS & FRACTALS
Volume 153, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chaos.2021.111583

Keywords

Complex-valued BAM neural networks; Fixed-time synchronization; Adaptive pinning controller; Time-varying delays

Funding

  1. National Natu-ral Science Foundation of China [61503222, 61803220, 62173214, 61973199]
  2. Research Fund for the Taishan Scholar Project of Shandong Province of China
  3. Natural Sci-ence Foundation of Shandong Province, China [ZR202103050126]
  4. Science and Technology Support Plan for Youth Inno-vation of Colleges and Universities of Shandong Province of China [2019KJI005]
  5. SDUST Research Fund

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This paper investigates the fixed-time synchronization of complex-valued BAM neural networks with time-varying delays using pinning control and adaptive control. The proposed methods improve communication efficiency, control performance, and automatically adjust control parameters for better synchronization. The results are validated through numerical examples demonstrating effectiveness and feasibility.
The paper mainly studies the fixed-time synchronization of complex-valued BAM neural networks with time-varying delays via pinning control and adaptive pinning control. Firstly, the pinning control mechanism is designed to merely control partial nodes but not all nodes, which not only saves resources, but also improves the communication efficiency. Then, based on the appropriate Lyapunov function and some basic inequality techniques, a new fixed-time synchronization criterion through pinning control method is derived. Secondly, in order to reduce the computational burden, an adaptive pinning controller is designed by combining pinning and adaptive control, which improves the control performance and automatically adjust the control parameters, and new sufficient condition of the fixed-time synchronization under adaptive pinning control is obtained. Meanwhile, the upper bounds of the settling time are computed. Finally, two numerical examples show the effectiveness and feasibility of our results. (c) 2021 Elsevier Ltd. All rights reserved.

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