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Multi-weighted Complex Structure on Fractional Order Coupled Neural Networks with Linear Coupling Delay: A Robust Synchronization Problem

机译:线性耦合延迟分数耦合神经网络的多加权复杂结构:鲁棒同步问题

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摘要

This sequel is concerned with the analysis of robust synchronization for a multi-weighted complex structure on fractional-order coupled neural networks (MWCFCNNs) with linear coupling delays via state feedback controller. Firstly, by means of fractional order comparison principle, suitable Lyapunov method, Kronecker product technique, some famous inequality techniques about fractional order calculus and the basis of interval parameter method, two improved robust asymptotical synchronization analysis, both algebraic method and LMI method, respectively are established via state feedback controller. Secondly, when the parameter uncertainties are ignored, several synchronization criterion are also given to ensure the global asymptotical synchronization of considered MWCFCNNs. Moreover, two type of special cases for global asymptotical synchronization MWCFCNNs with and without linear coupling delays, respectively are investigated. Ultimately, the accuracy and feasibility of obtained synchronization criteria are supported by the given two numerical computer simulations.
机译:该续集涉及分析在分数耦合神经网络(MWCFCNNS)上具有通过状态反馈控制器的线性耦合延迟的多加权复合结构的鲁棒同步。首先,通过分数顺序比较原理,合适的Lyapunov方法,Kronecker产品技术,一些着名的不等式技术关于分数阶微积分和间隔参数方法的基础,分别改进了鲁棒渐近同步分析,分别是代数方法和LMI方法通过状态反馈控制器建立。其次,当忽略参数不确定性时,还忽略了多个同步标准,以确保所考虑的MWCFCNNS的全局渐近同步。此外,研究了两种类型的具有和不具有线性耦合延迟的全局渐近同步MWCFCNN的特殊情况。最终,所获得的同步标准的准确性和可行性由给定的两个数值计算机模拟支持。

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