Voltage stability analysis of grid-connected wind farms with FACTS: Static and dynamic analysis

K. Z. Heetun, S. H. A. Abdel Aleem, A. Zobaa
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引用次数: 27

Abstract

ABSTRACT Recently, analysis of some major blackouts and failures of power system shows that voltage instability problem has been one of the main reasons of these disturbances and network collapses. In this article, a systematic approach to voltage stability analysis using various techniques for the IEEE 14-bus case study is presented. Static analysis is used to analyze the voltage stability of the system under study, while the dynamic analysis is used to evaluate the performance of compensators. The static techniques used are power flow, V–P curve analysis, and Q–V modal analysis. In this study, Flexible Alternating Current Transmission system (FACTS) devices—namely, static synchronous compensators (STATCOMs) and static var compensators (SVCs)—are used as reactive power compensators, taking into account maintaining the violated voltage magnitudes of the weak buses within the acceptable limits defined in ANSI C84.1. Simulation results validate that both the STATCOMs and the SVCs can be effectively used to enhance the static voltage stability and increasing network loadability margin. Additionally, based on the dynamic analysis results, it has been shown that STATCOMs have superior performance, in dynamic voltage stability enhancement, compared to SVCs.
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并网风电场的电压稳定性分析:静态和动态分析
摘要:近年来,对一些重大停电和故障的分析表明,电压不稳定问题已成为这些干扰和网络崩溃的主要原因之一。在这篇文章中,一个系统的方法来电压稳定性分析使用各种技术的IEEE 14总线案例研究提出。静态分析用于分析被研究系统的电压稳定性,而动态分析用于评估补偿器的性能。静态技术使用功率流,V-P曲线分析和Q-V模态分析。在本研究中,柔性交流传输系统(FACTS)设备——即静态同步补偿器(STATCOMs)和静态无功补偿器(SVCs)——被用作无功补偿器,同时考虑到将弱母线的违反电压值保持在ANSI C84.1中定义的可接受范围内。仿真结果表明,statcom和SVCs都可以有效地提高静态电压稳定性,提高网络的负载裕度。此外,基于动态分析结果,与svc相比,statcom在动态电压稳定性增强方面具有优越的性能。
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