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Global synchronization in nonlinearly coupled delayed memristor-based neural networks with excitatory and inhibitory connections

机译:具有激励和抑制连接的非线性耦合基于忆阻器的延迟神经网络的全局同步

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This investigation establishes the global synchronization of an array of coupled memristor-based neural networks with delays. The coupled networks that are considered can incorporate both the internal delay in each individual network and the transmission delay across different networks. The coupling scheme, which consists of a nonlinear term and a sign term, is rather general. In particular, it can be asymmetric, and admits the coexistence of excitatory and inhibitory connections. Based on an iterative approach, the problem of synchronization is transformed into solving a corresponding linear system of algebraic equations. Subsequently, the respective synchronization criteria, which depend on whether the transmission delay exists, are derived respectively. Three examples are given to illustrate the effectiveness of the theories presented in this paper. The synchronization of the systems in two examples cannot be handled by existing techniques. (C) 2018 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
机译:这项研究建立了具有延迟的耦合忆阻器神经网络阵列的全局同步。所考虑的耦合网络既可以合并每个单独网络中的内部延迟,也可以合并不同网络之间的传输延迟。由非线性项和符号项组成的耦合方案相当笼统。特别地,它可以是不对称的,并且允许兴奋性和抑制性连接并存。基于迭代方法,将同步问题转化为求解相应的代数方程式线性系统。随后,分别导出取决于传输延迟是否存在的各个同步标准。给出了三个例子来说明本文提出的理论的有效性。现有技术无法处理两个示例中系统的同步。 (C)2018富兰克林研究所。由Elsevier Ltd.出版。保留所有权利。

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