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September 10, 2025Sensors31 citationsOpen Access

Preset-Time Convergence Fuzzy Zeroing Neural Network for Chaotic System Synchronization: FPGA Validation and Secure Communication Applications

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XLXiao LiangLZLv ZhaoJJJie Jin

Key Points

  • The preset-time fuzzy zeroing neural network successfully achieves chaotic synchronization.
  • FPGA experiments confirm the practical feasibility of the PTCFZNN model for chaotic systems.
  • The PTCFZNN enhances communication confidentiality and anti-jamming capability in sensor applications.
  • This model addresses the synchronization challenges in chaotic systems with aperiodic parameter excitation.

Abstract

Chaotic systems, characterized by extreme sensitivity to initial conditions and complex dynamical behaviors, exhibit significant potential for applications in various fields. Effective control of chaotic system synchronization is particularly crucial in sensor-related applications. This paper proposes a preset-time fuzzy zeroing neural network (PTCFZNN) model based on Takagi–Sugeno fuzzy control to achieve chaotic synchronization in aperiodic parameter exciting chaotic systems. The designed PTCFZNN model accurately handles the complex dynamic variations inherent in chaotic systems, overcoming the challenges posed by aperiodic parameter excitation to achieve synchronization. Additionally, field-programmable gate array (FPGA) verification experiments successfully implemented the PTCFZNN-based chaotic system synchronization control on hardware platforms, confirming its feasibility for practical engineering applications. Furthermore, experimental studies on chaos-masking communication applications of the PTCFZNN-based chaotic system synchronization further validate its effectiveness in enhancing communication confidentiality and anti-jamming capability, highlighting its important application value for securing sensor data transmission.

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Cite This Study

Liang et al. (2025) studied this question.

synapsesocial.com/papers/68c183f09b7b07f3a060f79fhttps://doi.org/10.3390/s25175394
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