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One step anti-windup design for a class of time-delayed cellular neural networks

机译:一步的一类时间延迟蜂窝神经网络的逐步防风设计

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An algebraic anti-windup compensation design for a class of time-delayed cellular neural networks (CNNs) is considered in this paper. Based on Lyapunov theory, Schurcomplementprinciple and some lemma, the quadratic matrix inequality (QMI) criterion keeping system stable can be get by solving an exact Lyapunov function, which controller and compensator can be determined simultaneously. The proposed method is a one-step anti-windup strategy, it can get a more optimized solution than those methods which design controller and compensator separately. By some matrix transformation, the QMI control criterion can be changed into linear matrix inequality (LMI) criterion then it can be easily solved by computer. The attraction domain and its optimization are also presented. The simulation results verify the effectiveness and feasibility of the proposed method.
机译:本文考虑了一类时间延迟蜂窝神经网络(CNNS)的代数抗卷绕补偿设计。基于Lyapunov理论,SchurcomplementPrinciple和一些引理,通过求解精确的Lyapunov功能,可以获得二次矩阵不等式(QMI)标准保持系统稳定,可以同时确定控制器和补偿器。所提出的方法是一步的防风策略,它可以获得比这些方法分别设计控制器和补偿器的方法更优化的解决方案。通过一些矩阵变换,可以将QMI控制标准更改为线性矩阵不等式(LMI)标准,那么它可以通过计算机容易地解决。吸引域及其优化也被呈现。仿真结果验证了所提出的方法的有效性和可行性。

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