Coordinated Design of PSS and IPFC Using FFA to Control Low Frequency Oscillations

A. Sabo, N. A. Abdul Wahab, M. Lutfi Othman
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引用次数: 5

Abstract

Grid damping stabilizers and FACTS devices can work together in real time to improve power system dynamic stability. The usefulness of an Interline Power Flow Controller (IPFC) and a Power System Stabilizer (PSS) in real-time coordination to regulate low frequency oscillations (LFOs) in a Single Machine Infinite Bus (SMIB) power system is investigated in this study. The grid PSS is designed using a modern intelligence technique called Farmland Fertility Algorithm (FFA), whereas the IPFC in the SMIB test system is designed using the supplementary controller of Power Oscillations Damping (POD). For the controller design, an eigenvalue objective function and a creation of close to zero control modes were devised. The test system was simulated for IPFC supplementary controller design and the FFA-PSS using nonlinear time-domain simulation in the MATLAB/SIMULINK domain. According to the simulation results, adding a supplementary controller to the IPFC increased LFO control and overall system dynamic stability.
利用FFA控制低频振荡的PSS和IPFC协同设计
电网阻尼稳定器和FACTS装置可以实时协同工作,提高电力系统的动态稳定性。本研究探讨了线间潮流控制器(IPFC)和电力系统稳定器(PSS)在单机无限总线(SMIB)电力系统中实时协调调节低频振荡(LFOs)的有效性。网格PSS采用农田肥力算法(FFA)设计,而SMIB测试系统中的IPFC采用功率振荡阻尼(POD)辅助控制器设计。对于控制器的设计,设计了特征值目标函数和近零控制模式的创建。在MATLAB/SIMULINK环境下对IPFC辅助控制器设计和FFA-PSS测试系统进行了非线性时域仿真。仿真结果表明,在IPFC中加入辅助控制器可以提高LFO的控制性能和系统整体的动态稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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