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State estimation for a class of complex networks with event-triggered transmission scheme

机译:一类具有事件触发传输方案的复杂网络的状态估计

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In this paper, the state estimation problem is investigated for a class of complex networks with the event-triggered transmission scheme. Different from the periodically triggered communication, the measurement from the sensors is transmitted to the estimator only when the so-called “event-triggered condition” is satisfied in the event-triggered transmission scheme, thereby reducing the unnecessary network traffic between the sensors and the estimator. Attention is focused on the analysis and design of the estimator subject to the predetermined event-triggered transmission scheme such that the estimation error is bounded in mean square. Sufficient conditions are obtained for the existence of admissible estimators. The desired estimator gain matrices is derived via solving a convex problem based on Lyapunov theory combined with the stochastic analysis approach. A numerical example is given to illustrate the effectiveness of the results.
机译:在本文中,对具有事件触发传输方案的一类复杂网络研究了状态估计问题。 与周期性触发的通信不同,当在事件触发的传输方案中满足所谓的“事件触发条件”时,来自传感器的测量仅发送到估计器,从而减少了传感器之间的不必要的网络流量。 估计师。 注意力集中在预定的事件触发传输方案的估计器的分析和设计上,使得估计误差在均方中界定。 获得允许估算估计值的充分条件。 期望的估计器增益矩阵是通过基于Lyapunov理论的凸面问题与随机分析方法结合的凸面问题来导出。 给出了一个数值例子来说明结果的有效性。

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