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Delay-Dependent Stability Analysis of the Power System With a Wide-Area Damping Controller Embedded

机译:嵌入式广域阻尼控制器的电力系统时滞相关稳定性分析

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This paper investigates the delay-dependent stability of a power system equipped with a wide-area damping controller (WADC) using a new method which consists of a delay-dependent criterion based on Lyapunov theory and model reduction technique. The delay margin, the maximal delay which allows the closed-loop power system to retain stable, is calculated based on the reduced order model and linear matrix inequality (LMI) technique. Both constant and time-varying delays introduced by the transmission of the remote signals are investigated. Cases studies are carried out based on a two-area four-machine power system controlled by a conventional lead-lag WADC and a robust WADC. The relationship between the parameters of WADC and the delay margin has been investigated and is used to guide the design of WADC and achieve a trade-off between the damping performance and delay margin. The effectiveness of the proposed method is verified by simulation studies.
机译:本文研究了一种新的方法,该方法采用广域阻尼控制器(WADC),其基于Lyapunov理论和模型约简技术的时滞相关准则组成,该系统具有时滞相关稳定性。延迟余量是允许闭环电力系统保持稳定的最大延迟,它是基于降阶模型和线性矩阵不等式(LMI)技术计算的。研究了由远程信号的传输引入的恒定和时变延迟。案例研究基于由传统超前滞后WADC和强大WADC控制的两区域四机电源系统。已经研究了WADC的参数与延迟余量之间的关系,并将其用于指导WADC的设计并在阻尼性能和延迟余量之间进行权衡。仿真研究验证了该方法的有效性。

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