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Distributed Event-Triggered Output Synchronization of Complex-Valued Memristive Reaction-Diffusion Complex Networks with Spatial Sampled-Data

机译:具有空间采样数据的复值回忆反应扩散复合网络的分布式事件触发同步

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This study addresses the problem of output quasisynchronization for coupled complex-valued memristive reaction-diffusion complex networks via the distributed event-triggered control scheme. First, by using the separate method, set value mapping, and intermediate value theorem, the complex-valued memristive reaction-diffusion complex networks can be transferred into two semi-uncertain real-valued reaction-diffusion complex networks. Second, a distributed output piecewise event-triggered control (OPETC) scheme with spatial sampled-data is first proposed including a spatial sampling event-triggered generator and spatiotemporal sampling state feedback controller. Furthermore, this scheme can effectively save the measurement resources and lower the update rate of controllers in spatial and time domain. Third, the synchronization analysis is considered by utilizing an appropriate Lyapunov function, the Halanay inequality, and the improved Wirtinger inequality. Subsequently, several output event-triggered quasisynchronization criteria are derived. The relations among event trigger conditions, spatial sampling interval, convergence rate, and control gain are given by rigorous mathematical derivation. Finally, multiple simulations are compared to substantiate the validation of the OPETC scheme.
机译:该研究通过分布式事件触发的控制方案解决了用于耦合复值忆阻复杂网络的输出Quasis同步的问题。首先,通过使用单独的方法,设定值映射和中间值定理,可以转移到两个半不确定的真实值的反应扩散复合网络中的复值值的忆阻复合网络。其次,首先提出具有空间采样数据的分布输出分段事件触发控制(OPETC)方案,包括空间采样事件触发发生器和时空采样状态反馈控制器。此外,该方案可以有效地节省测量资源并降低空间和时域中的控制器的更新速率。第三,通过利用适当的Lyapunov函数,Halanay不等式和改进的丝网不等式来考虑同步分析。随后,派生了几个输出事件触发的Quasis同步标准。事件触发条件,空间采样间隔,收敛速度和控制增益之间的关系由严格的数学推导给出。最后,比较多种模拟,以证实OPETC方案的验证。

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