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Applying Reactive Power Compensators to Large Wind Farms to Improve the Stability of Isolated Power Systems

机译:在大型风电场中使用无功功率补偿器,以提高隔离电力系统的稳定性

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As wind power generation technology has advanced, investment in the construction of wind farms has flourished, and the consequences of parallel connection of wind farms to the electric power transmission grid have become particularly important. The aim of this study is to analyze the effect of voltage-ampere reactive (VAR) compensators on improving the system stability of regional electric power transmission grids containing wind farms. A voltage stability analysis in coordination with appropriate search methods is performed to determine the optimal location and capacity in configuring these VAR compensators. In addition to the method proposed in this paper of simulating the eastern regional electric power system of the Taiwan Power Company (Taipower), the Electrical Transient Analysis Program (ETAP) is used to analyze the voltage distribution situation of the eastern regional electric power system, and Matrix Laboratory (MATLAB) and Power System Analysis Toolbox (PSAT) software are used to analyze wind farm integration and assess the influence of the static VAR compensator (SVC) and static synchronous compensator (STATCOM) on the system. The research results show that the STATCOM and the SVC can indeed effectively improve the dynamic characteristics of the system under the interference of faults, which can provide a reference and application for planning the configuration of VAR compensators and the analysis of wind power integration.
机译:随着风力发电技术的进步,对风电场建设的投资蓬勃发展,并且将风电场并联到输电电网的后果变得尤为重要。这项研究的目的是分析电压-安培无功(VAR)补偿器对改善包含风电场的区域输电电网的系统稳定性的影响。结合适当的搜索方法进行电压稳定性分析,以确定配置这些VAR补偿器的最佳位置和容量。除了本文提出的模拟台湾电力公司(Taipower)东部地区电力系统的方法之外,还使用电暂态分析程序(ETAP)分析东部地区电力系统的电压分布情况,矩阵实验室(MATLAB)和电力系统分析工具箱(PSAT)软件用于分析风电场集成并评估静态VAR补偿器(SVC)和静态同步补偿器(STATCOM)对系统的影响。研究结果表明,STATCOM和SVC的确可以有效地改善系统在故障干扰下的动态特性,为无功补偿器的配置规划和风电集成分析提供参考和应用。

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