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April 3, 2026Entropy0 citationsOpen Access

Stability Criteria for Nonlinear-Truncated V-Fractional-Order Derivative Systems with Applications to Synchronization

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WYWengui Yang

Key Points

  • The aim is to assess the stability of nonlinear systems using truncated V-fractional-order derivatives.
  • Derived the Bellman–Gronwall inequality for V-fractional α-differentiable functions.
  • Established sufficient conditions for system stability using the Lyapunov direct method.
  • Deduced synchronization criteria for drive-response systems based on stability results.
  • Identified several conditions that ensure the stability of the nonlinear systems.
  • Demonstrated practical applications for synchronization in drive-response systems.
  • Provided numerical examples that support the theoretical findings.

Abstract

This paper investigates the stability of nonlinear systems with truncated V-fractional-order derivatives. Initially, based on the fundamental properties of V-fractional calculus, the Bellman–Gronwall inequality for V-fractional α-differentiable functions is derived. Subsequently, several sufficient conditions for the stability of the considered systems are established via the Lyapunov direct method. For practical applications, multiple synchronization criteria for drive-response systems are further deduced by leveraging the aforementioned stability results. Finally, numerical examples are presented to verify the effectiveness and feasibility of the main theoretical findings.

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Cite This Study

Wengui Yang (2026) studied this question.

synapsesocial.com/papers/69cf5de95a333a821460bf10https://doi.org/10.3390/e28040399
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