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首页> 外文期刊>Neural Networks: The Official Journal of the International Neural Network Society >Global Mittag-Leffler stability and synchronization of discrete-time fractional-order complex-valued neural networks with time delay
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Global Mittag-Leffler stability and synchronization of discrete-time fractional-order complex-valued neural networks with time delay

机译:全球Mittag-Leffer稳定性和离散时间分数阶层复合性的神经网络与时滞的稳定性和同步

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摘要

Without decomposing complex-valued systems into real-valued systems, this paper investigates existence, uniqueness, global Mittag-Leffler stability and global Mittag-Leffler synchronization of discrete-time fractional-order complex-valued neural networks (FCVNNs) with time delay. Inspired by Lyapunov's direct method on continuous-time systems, a class of discrete-time FCVNNs is further discussed by employing the fractional-order extension of Lyapunov's direct method. Firstly, by means of contraction mapping theory and Cauchy's inequality, a sufficient condition is presented to ascertain the existence and uniqueness of the equilibrium point for discrete-time FCVNNs. Then, based on the theory of discrete fractional calculus, discrete Laplace transform, the theory of complex functions and discrete Mittag-Leffler functions, a sufficient condition is established for global Mittag-Leffler stability of the proposed networks. Additionally, by applying the Lyapunov's direct method and designing a effective control scheme, the sufficient criterion is derived to ensure the global Mittag-Leffler synchronization of discrete-time FCVNNs. Finally, two numerical examples are also presented to manifest the feasibility and validity of the obtained results. (c) 2019 Elsevier Ltd. All rights reserved.
机译:在不分解复合体系的实际系统中,本文调查了具有时间延迟的离散时间分数级复数神经网络(FCVNNS)的存在,独特性,全球Mittag-Leffer稳定性和全球Mittag-Leffler同步。由Lyapunov在连续时间系统上的直接方法启发,通过采用Lyapunov的直接方法的分数级延伸,进一步讨论了一类离散时间FCVNN。首先,通过收缩映射理论和Cauchy的不平等,提出了充分的条件以确定离散时间FCVNN的平衡点的存在性和唯一性。然后,基于离散的分数微积分理论,离散拉普拉斯变换,复杂函数理论和离散的Mittag-Leffler功能,为全球Mittag-Lyffler稳定性建立了足够的条件。另外,通过应用Lyapunov的直接方法并设计有效的控制方案,推导出足够的标准,以确保离散时间FCVNN的全局Mittag-Leffler同步。最后,还提出了两种数值例子以表明所得结果的可行性和有效性。 (c)2019年elestvier有限公司保留所有权利。

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