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Improving the power system stabilizer dynamic characteristics in an uncertain environment using an optimal robust controller

机译:使用最佳鲁棒控制器改善不确定环境中电力系统稳定器的动态特性

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In this paper a practical approach to design an optimal robust Power System Stabilizer (PSS) is presented which improves the PSS dynamic performance facing uncertainty in its model parameters. Generally, the PSS system is a critical element in increasing the damping of the system in an emergency condition and it is necessary to strengthen its dynamic characteristics against any uncertainty in its model parameters. To model the uncertainty in the PSS, it is decomposed into two matched and unmatched types of uncertain components. The linear quadratic regulator (LQR) problem is then used to handle the matched component, while an augmented control is used to manage the unmatched component. To evaluate the robustness of the proposed optimal robust PSS system, the IEEE PSS1A PSS system model considering the reported uncertainties in its model parameters is used.
机译:本文提出了一种设计最优鲁棒电力系统稳定器(PSS)的实用方法,该方法可改善PSS动态性能,使其模型参数面临不确定性。通常,PSS系统是在紧急情况下增加系统阻尼的关键因素,因此有必要针对其模型参数的任何不确定性来增强其动态特性。为了对PSS中的不确定性建模,将其分解为两个匹配类型和不匹配类型的不确定性组件。然后,使用线性二次调节器(LQR)问题来处理匹配的组件,而使用增强控件来管理不匹配的组件。为了评估建议的最佳鲁棒PSS系统的鲁棒性,使用了考虑到模型参数中报告的不确定性的IEEE PSS1A PSS系统模型。

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