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Design of Robust Controller for LFC of Interconnected Power System Considering Communication Delays

机译:考虑通信时延的互联电力系统LFC鲁棒控制器设计

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The usage of open communication infrastructure for transmitting the control signals in the Load Frequency Control (LFC) scheme of power system introduces time delays. These time delays may degrade the dynamic performance of the power system. This paper proposes a robust method to design a controller for multi-area LFC schemes considering communication delays. In existing literature, the controller values of LFC are designed using time domain approach which is less accurate than the proposed method. In proposed method, the controller values are determined by moving the rightmost eigenvalues of the system to the left half plane in a quasi-continuous way for a preset upper bound of time delay. Then the robustness of the proposed controller is assessed by estimating the maximum tolerable value of time delay for maintaining system stability. Simulation studies are carried out for multi-area LFC scheme equipped with the proposed controller using Matlab/simulink. From the results, it has been concluded that the proposed controller guarantees the tolerance for all time delays smaller than the preset upper bound and provides a bigger delay margin than the existing controllers.
机译:在电力系统的负载频率控制(LFC)方案中使用开放式通信基础结构来传输控制信号会带来时间延迟。这些时间延迟可能会降低电源系统的动态性能。本文提出一种鲁棒的方法来设计一种考虑通信延迟的多区域LFC方案的控制器。在现有文献中,LFC的控制器值是使用时域方法设计的,该方法的准确性不如所提出的方法。在提出的方法中,控制器值是通过将系统的最右特征值以准连续方式移动到预设的时延上限来确定的,即将系统的最右特征值移至左半平面。然后,通过估计用于维持系统稳定性的时间延迟的最大可容忍值,来评估所提出控制器的鲁棒性。使用Matlab / simulink对装有建议控制器的多区域LFC方案进行了仿真研究。从结果可以得出结论,所提出的控制器保证了所有小于预定上限的时间延迟的容限,并且提供了比现有控制器更大的延迟余量。

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