并联FACTS控制器在提高电压稳定性中的应用

F. Berrouk, B. Ali Rachedi, A. Lemzadmi, K. Bounaya, H. Zeghache
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引用次数: 13

摘要

电压稳定性分析是电力系统安全运行的重要内容。在此背景下,为提高电压稳定性进行了大量的研究工作。FACTS器件可用于控制潮流、传输电压、改善电压分布、减少无功损耗。为了提高电力系统的电压稳定性,本文选择了两种不同的FACTS装置放置在合适的位置。系统地推导了分别配置静态无功补偿器(SVC)和静态同步补偿器(STATCOM)的电力系统的数学模型,并将并联FACTS的参数建模到潮流方程中,用于控制策略。这两种FACTS模型是针对IEEE 30总线系统开发的,并采用Newton-Raphson负载流算法实现,以控制并联FACTS所连接的总线电压。本研究利用MATLAB编写程序求解潮流问题,计算IEEE 30总线系统各母线电压、有功功率和无功功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of shunt FACTS controller for voltage stability improvment
Voltage stability analysis is the major concern in order to operate any power system safely. In this context considerable research work has been carried out to improve the voltage stability. FACTS devices can used for controlling power flow, transmission voltage, improving voltage profile, and reducing reactive losses. In this paper two different FACTS devices have been selected to place in suitable location to improve voltage stability in power system. The mathematical model of the power system equipped with a Static VAR Compensator (SVC) and Static synchronous compensator (STATCOM) separately is systematically derived and the parameters of the shunt FACTS are modeled into the power flow equations and used in the control strategy. The two models of FACTS are developed for the IEEE 30-bus system and implemented in Newton-Raphson load flow algorithm in order to control the voltage of the bus to which the shunt FACTS is connected. In this study a MATLAB written program is used for the solution of power flow problems and calculate voltages, active and reactive power at each bus of IEEE 30-bus system.
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