Finite-Time Passivity and Synchronization for a Class of Fuzzy Inertial Complex-Valued Neural Networks with Time-Varying Delays

IF 1.9 3区 数学 Q1 MATHEMATICS, APPLIED Axioms Pub Date : 2024-01-07 DOI:10.3390/axioms13010039
Jing Han
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Abstract

This article investigates finite-time passivity for fuzzy inertial complex-valued neural networks (FICVNNs) with time-varying delays. First, by using the existing passivity theory, several related definitions of finite-time passivity are illustrated. Consequently, by adopting a reduced-order method and dividing complex-valued parameters into real and imaginary parts, the proposed FICVNNs are turned into first-order real-valued neural network systems. Moreover, appropriate controllers and the Lyapunov functional method are established to obtain the finite-time passivity of FICVNNs with time delays. Furthermore, some essential conditions are established to ensure finite-time synchronization for finite-time passive FICVNNs. In the end, corresponding simulations certify the feasibility of the proposed theoretical outcomes.
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一类具有时变延迟的模糊惯性复值神经网络的有限时间被动性和同步性
本文研究了具有时变延迟的模糊惯性复值神经网络(FICVNN)的有限时间被动性。首先,利用现有的被动性理论,说明了有限时间被动性的几个相关定义。随后,通过采用降阶方法,将复值参数分为实部和虚部,将所提出的 FICVNN 转化为一阶实值神经网络系统。此外,还建立了适当的控制器和 Lyapunov 函数方法,以获得具有时间延迟的 FICVNN 的有限时间被动性。此外,还建立了一些必要条件,以确保有限时间被动 FICVNN 的有限时间同步性。最后,相应的仿真证明了所提理论成果的可行性。
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来源期刊
Axioms
Axioms Mathematics-Algebra and Number Theory
自引率
10.00%
发文量
604
审稿时长
11 weeks
期刊介绍: Axiomatic theories in physics and in mathematics (for example, axiomatic theory of thermodynamics, and also either the axiomatic classical set theory or the axiomatic fuzzy set theory) Axiomatization, axiomatic methods, theorems, mathematical proofs Algebraic structures, field theory, group theory, topology, vector spaces Mathematical analysis Mathematical physics Mathematical logic, and non-classical logics, such as fuzzy logic, modal logic, non-monotonic logic. etc. Classical and fuzzy set theories Number theory Systems theory Classical measures, fuzzy measures, representation theory, and probability theory Graph theory Information theory Entropy Symmetry Differential equations and dynamical systems Relativity and quantum theories Mathematical chemistry Automata theory Mathematical problems of artificial intelligence Complex networks from a mathematical viewpoint Reasoning under uncertainty Interdisciplinary applications of mathematical theory.
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