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Hybrid linearization of a power system with FACTS devices for a small signal stability study: Concept and application

机译:具有FACTS器件的电力系统的混合线性化,用于小信号稳定性研究:概念和应用

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This paper deals with a hybrid linearization method of a power system with flexible AC transmission system (FACTS) devices. The linearized power system model provides useful information, which is necessary for the small signal stability study and the controller design. Although the algebraic linearization method provides an accurate and parameterized linear system, it may incur computation burdens for the large power system especially with multiple FACTS devices. The numerical identification of linearized system by utilizing input output numerical data is highly versatile. However, quite amount of valuable information may be not fully utilized. In this paper, a hybrid method in which the algebraic and the numerical linearization technique are combined is presented. While both the power system and the FACTS devices are separately linearized by using algebraic method, the interaction terms between the power system and FACTS devices are numerically identified by adopting the quadratic optimization technique. The proposed hybrid linearization technique is tested on the WSCC system in which one thyristor-controlled series capacitor is installed. Both eigenvalue analysis and time-domain simulation results verify that the proposed method can effectively identify the linearized model of the power system with FACTS devices.
机译:本文讨论了一种具有柔性交流输电系统(FACTS)设备的电力系统的混合线性化方法。线性电源系统模型提供了有用的信息,这对于小信号稳定性研究和控制器设计是必需的。尽管代数线性化方法提供了精确且参数化的线性系统,但它可能会给大型电力系统(特别是具有多个FACTS器件的系统)带来计算负担。利用输入输出数值数据对线性化系统进行数值识别具有很高的通用性。但是,大量有价值的信息可能没有得到充分利用。本文提出了一种将代数与数值线性化技术相结合的混合方法。电力系统和FACTS装置分别通过代数方法线性化,而电力系统和FACTS装置之间的相互作用项则采用二次优化技术进行数值识别。所提出的混合线性化技术在WSCC系统上进行了测试,其中安装了一个可控硅控制的串联电容器。特征值分析和时域仿真结果均证明该方法可以有效地识别具有FACTS装置的电力系统的线性化模型。

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