Transient Stability Analysis in Power Systems Integrated with a Doubly-Fed Induction Generator Wind Farm

Michail Katsivelakis, D. Bargiotas, Aspassia Daskalopulu
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引用次数: 2

Abstract

Renewable energy systems, especially wind turbines and farms are nowadays integrated rapidly into power systems and smart grids. Several technical challenges arise due to penetration of wind energy into power networks and systems. In order for system stability and steady state operation to be ensured in power systems and electric networks, steady and dynamic analysis are necessary. We study a standard IEEE 9 bus test system, which is integrated with a Doubly-Fed Induction Generator wind farm, aiming to examine its behaviour during disturbances. Steady state and transient stability configurations are proposed in order to analyze the system described. A threephase fault is suddenly applied to a load bus. Moreover, critical fault clearing time is identified for the corresponding three-phase fault and results show the maximum time for system stability during a disturbance. The influence of transient stability, including voltage stability, angle stability, active power and reactive power is discussed and research results become important for the smooth integration of wind farms into networks. This study is conducted with the help of PSS/E 34 software simulation tool by Siemens.
双馈风力发电系统的暂态稳定性分析
可再生能源系统,尤其是风力涡轮机和农场,如今正迅速融入电力系统和智能电网。由于风能渗透到电力网络和系统中,出现了一些技术挑战。为了保证电力系统和电网的稳定和稳态运行,需要进行稳态和动态分析。我们研究了一个标准的IEEE 9总线测试系统,该系统与双馈感应发电机风电场集成,旨在检测其在干扰下的行为。为了分析所描述的系统,提出了稳态和暂态稳定配置。负载母线突然发生三相故障。此外,还确定了相应三相故障的临界故障清除时间,结果显示了系统在扰动时稳定的最大时间。讨论了电压稳定、角度稳定、有功功率和无功功率等暂态稳定性对风电场并网的影响,研究结果对风电场顺利并网具有重要意义。本研究借助西门子公司的PSS/E 34软件仿真工具进行。
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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