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April 16, 2026Mathematical Methods in the Applied Sciences2 citations

Synchronization of Caputo‐Hadamard Fractional‐Order Competitive Neural Networks With Discrete and Distributed Delays

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ZZZhenzhen ZhangHLHui LiDLDandan Li

Key Points

  • The aim is to address the synchronization challenge in Caputo-Hadamard fractional-order competitive neural networks with delays.
  • Developed a new lemma using Caputo-Hadamard fractional calculus
  • Designed an adaptive hybrid controller and a linear controller
  • Utilized inequality techniques and properties of the Mittag-Leffler function
  • Criteria for Mittag-Leffler synchronization and complete synchronization were derived
  • Theoretical findings were confirmed with numerical examples

Abstract

ABSTRACT This paper investigates the synchronization problem for Caputo–Hadamard fractional‐order competitive neural networks (CHFCNNs) with both discrete and distributed delays. First, a new lemma is established by employing Caputo–Hadamard fractional calculus theory and analytical techniques. Second, an adaptive hybrid controller and a linear controller are designed. By employing inequality techniques, leveraging properties of the Mittag‐Leffler function, and utilizing our established lemma, the criteria for both Mittag‐Leffler synchronization and complete synchronization are derived. Finally, the validity of the theoretical results is verified through numerical examples.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69e07d3c2f7e8953b7cbe521https://doi.org/10.1002/mma.70745
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