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Adaptive pinning synchronization of a class of nonlinearly coupled complex networks

机译:一类非线性耦合复杂网络的自适应钉扎同步

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This paper is concerned with the pinning control of the robust synchronization of a class of nonlinearly coupled complex networks through adaptive techniques. The effect of perturbed couplings is addressed by adaptive compensation and adjustment methods with controllers and coupling strength designs, respectively. For the pinned nodes, a controller gain function is proposed to compensate the nonlinearities based on adaptive estimations of controller parameters on-line; while for the un-pinned nodes, adaptive adjustment laws are addressed to adjust unknown coupling factors to restrain the unexpected action of the nonlinearly coupled networks. On the basis of Lyapunov stability theory, adaptive pinning controllers and coupling strength adjusters are constructed to ensure that the synchronization errors of the networks can be reduced as small as desired in the presence of the nonlinear couplings. A numerical simulation is provided to illustrate the effectiveness of the theoretical results.
机译:本文涉及通过自适应技术对一类非线性耦合复杂网络的鲁棒同步进行的钉扎控制。分别通过带有控制器和耦合强度设计的自适应补偿和调整方法来解决扰动耦合的影响。对于固定节点,提出了一种控制器增益函数,用于基于对控制器参数的在线自适应估计来补偿非线性。对于非固定节点,解决自适应调整定律以调整未知耦合因子,以抑制非线性耦合网络的意外动作。基于Lyapunov稳定性理论,构造了自适应销钉控制器和耦合强度调节器,以确保在存在非线性耦合的情况下,可以将网络的同步误差减小到所需的最小程度。提供了数值模拟来说明理论结果的有效性。

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