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Asynchronous dissipative static output feedback control for discrete-time Markov jump systems with nonlinearities

机译:具有非线性的离散时间马尔可夫跳跃系统的异步耗散静态输出反馈控制

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The problem of asynchronous dissipative static output feedback control for discrete-time MJs with nonlinearities is concerned in this paper. The controller modes and system modes in this studied system model are regarded as asynchronous. Using a Markov chain, which can present the various degrees asynchronous jump, to govern the controller modes. The dissipative control theory is introduced to study the dissipative and stable performance. Through methods of LMI technique and Lyapunov theory, the sufficient condition is derived and an asynchronous static output feedback controller is designed. The stochastically stable and strictly dissipative performance of the closed-loop system is ensured.
机译:研究了具有非线性的离散时间MJ的异步耗散静态输出反馈控制问题。在该研究的系统模型中,控制器模式和系统模式被视为异步的。使用可以呈现不同程度的异步跳跃的马尔可夫链来控制控制器模式。引入耗散控制理论来研究耗散和稳定性能。通过LMI技术和Lyapunov理论的方法,推导了充分条件,并设计了异步静态输出反馈控制器。确保了闭环系统的随机稳定和严格耗散的性能。

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