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Anticipating Synchronization of Chaotic Lur'e Systems via Output Feedback and Active Sliding Mode Control Schemes

机译:通过输出反馈和主动滑模控制方案预测混沌LUR'E系统的同步

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This paper investigates anticipating synchronization of a general form of chaotic lur'e master-slave systems. Through the analysis of the set-valued nonlinearities, linear matrix inequalities (LMI)-based output feedback is firstly proposed to achieve globally asymptotic prediction of the given system's future states. Then, based on the ideology of active control, sliding mode controllers are adopted to ensure accurate anticipation of Lur'e systems, which are provided with high robustness against possible disturbances. The control techniques are both verified through Lyapunov stability analysis, and illustrated by numerical simulation of Chua's circuit. Simulation results show that active sliding mode control scheme has better performance.
机译:本文研究了一般形式的混沌LUR'E主从系统的同步。通过分析设定值的非线性,首先提出了基于线性矩阵不等式(LMI)基于输出反馈,以实现给定系统未来状态的全球渐近预测。然后,基于主动控制的意识形态,采用滑模控制器来确保LUR'E系统的准确预期,其具有对可能的干扰的高稳健性。通过Lyapunov稳定性分析验证控制技术,并通过CHUA电路的数值模拟说明。仿真结果表明,主动滑模控制方案具有更好的性能。

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