风电高侵彻时电力系统的小信号稳定性能

H. Iswadi, D. Morrow, R. Best
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引用次数: 7

摘要

互联电力系统的小信号稳定性是需要研究的重要方面之一,因为这种不稳定性引起的振荡已经引起了许多事故。随着风电,特别是双馈感应发电机(DFIG)在电力系统中的渗透程度越来越高,需要充分研究风电对电力系统小信号稳定性能的影响。由于DFIG风电机组集成是通过快速变换器和关联控制实现的,因此它本身不参与机电小信号振荡。但是,它会通过影响电网有功潮流路径和替换带电力系统稳定器(PSS)的同步发电机来影响小信号的稳定性。本文采用IEEE 39总线测试系统进行分析。此外,还进行了四个研究案例和几个操作场景的分析。采用选择性特征值Arnoldi/lanczos方法获得了与机电振荡有关的0.2 Hz ~ 2 Hz频率范围内的系统特征值。结果表明,在不同工况和运行情况下,DFIG风电机组集成对系统小信号稳定性能的影响是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small signal stability performance of power system during high penetration of wind generation
The small signal stability of interconnected power systems is one of the important aspects that need to be investigated since the oscillations caused by this kind of instability have caused many incidents. With the increasing penetration of wind power in the power system, particularly doubly fed induction generator (DFIG), the impact on the power system small signal stability performance should be fully investigated. Because the DFIG wind turbine integration is through a fast action converter and associated control, it does not inherently participate in the electromechanical small signal oscillation. However, it influences the small signal stability by impacting active power flow paths in the network and replacing synchronous generators that have power system stabilizer (PSS). In this paper, the IEEE 39 bus test system has been used in the analysis. Furthermore, four study cases and several operation scenarios have been conducted and analysed. The selective eigenvalue Arnoldi/lanczos's method is used to obtain the system eigenvalue in the range of frequency from 0.2 Hz to 2 Hz which is related to electromechanical oscillations. Results show that the integration of DFIG wind turbines in a system during several study cases and operation scenarios give different influence on small signal stability performance.
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