Examining the effects of utilizing “D-STATCOM and D-SVC” in the grid power connected to the wind farm

M. Belhamidi, F. Lakdja, L. Boumediene, H. Guentri
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Abstract

Networks are becoming more sophisticated with time, and stability issues have become more prevalent. In general, the problem of voltage instability increases as various energy sources, such as solar, wind, etc., are connected to the grid. The most notable issue is grid control. Controlling the flow of reactive power in the grid is essential for optimizing power system performance. When a system fails, is overloaded, and the voltage varies, unbalanced reactive power occurs. Connecting a device to the transmission line that can inject or absorb reactive power, depending on the system requirements, can restore reactive power balance. D-FACTS (Distributed Flexible AC Transmission System) is one of the most useful sources of reactive power. Distributed Static Var Compensation (D-SVC) and Distributed Static Synchronous Compensation (D-STATCOM) are the famous compensation methods of the D-FACTS families. The influence of D-SVC and D-STATCOM on increasing the dynamic voltage stability of distribution networks with distributed wind generation and variable load is investigated in this paper. Simulations using MATLAB/Simulink were used to observe the dynamic behavior of both devices. This article provides a comparison of simulation results between grids without D-FACTS and grids with D-FACTS.
考察“D-STATCOM和D-SVC”在与风电场相连的电网中使用的效果
随着时间的推移,网络变得越来越复杂,稳定性问题变得越来越普遍。一般来说,随着各种能源(如太阳能、风能等)接入电网,电压不稳定问题也会增加。最显著的问题是网格控制。控制电网无功潮流是优化电力系统性能的关键。当系统发生故障、过载、电压变化时,会产生不平衡的无功功率。根据系统需要,在输电线上接入能注入或吸收无功功率的设备,可以恢复无功功率的平衡。分布式柔性交流输电系统是最有用的无功电源之一。分布式静态无功补偿(D-SVC)和分布式静态同步补偿(D-STATCOM)是D-FACTS系列中著名的两种补偿方法。本文研究了D-SVC和D-STATCOM对提高分布式风力发电和变负荷配电网动态电压稳定性的影响。利用MATLAB/Simulink进行仿真,观察两种器件的动态行为。本文提供了不带D-FACTS和带D-FACTS网格的仿真结果比较。
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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