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Adaptive Event-Triggered Observer-Based Output Feedback L∞ Load Frequency Control for Networked Power Systems

机译:基于Adaptive事件触发的基于观察者的输出反馈L∞网络电源系统的负载频率控制

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This article investigates the event-triggered observer-based output feedback load frequency control (LFC) problem for power systems. To reduce the amount of the transmitted signals, a dynamic event-triggered scheme is proposed by adding an exponential term. Moreover, an adaptive event-triggered scheme is proposed to provide a balance between the control performance and the number of the transmitted signals. Under the proposed schemes, a new model is formulated for the observer-based output feedback LFC system via a time-delay system method. By employing the Lyapunov functional method, sufficient conditions are derived for global asymptotical stability and L performance. Then, a controller design method is developed. Finally, two examples are given to illustrate the effectiveness of the proposed schemes.
机译:本文调查了电力系统的事件触发的基于观察者的输出反馈负载频率控制(LFC)问题。为了减少发送信号的量,通过添加指数术语来提出动态事件触发方案。此外,提出了一种自适应事件触发方案,以在控制性能和发送信号的数量之间提供平衡。在提议的方案下,通过时延系统方法为观察者的输出反馈LFC系统配制了一种新模型。通过采用Lyapunov功能方法,推导出充分的条件用于全局渐近稳定性和L性能。然后,开发了一种控制器设计方法。最后,给出了两个示例来说明所提出的方案的有效性。

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