Simulation and Experimental Analysis of Grid-Connected Doubly-Fed Induction Generators

Gu Jiayang, Yuhe Xiao, Wu Tao, Chang Xianrong, Liu Shanying, L. Hui, Sun Yu
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引用次数: 2

Abstract

With the increase of wind generation penetration in power systems, it becomes more and more important to study its impact on power systems characteristics. The accurate dynamic modeling of wind plants is critical for the grid planning and operating studies. The field test of a three phase short circuit fault at a 35kV busbar in a wind farm in Zhangjiakou Area was performed and a series of corresponding measurements were carried out. A variable speed doubly fed induction generator (DFIG) model in Power System Analysis Software Package (PSASP) is validated and parameters in the models are adjusted by comparing with the results from the field test. Based on the well adjusted parameters of the DFIG model, simulation result shows a better agreement with the field test, and the model has been verified. The reasons for the mismatch between the simulation and the field test results have also been analyzed in the paper. The study contributes to analyzing the impact of grid-connected DFIG on transient stability of the power system.
并网双馈感应发电机的仿真与实验分析
随着风力发电在电力系统中的渗透率不断提高,研究其对电力系统特性的影响变得越来越重要。准确的风电场动态建模对电网规划和运行研究至关重要。对张家口地区某风电场35kV母线三相短路故障进行了现场试验,并进行了一系列相应的测量。对电力系统分析软件包(PSASP)中的变速双馈感应发电机(DFIG)模型进行了验证,并与现场试验结果进行了比较,对模型参数进行了调整。在DFIG模型参数调整良好的基础上,仿真结果与现场试验吻合较好,并对模型进行了验证。本文还对模拟结果与现场试验结果不匹配的原因进行了分析。该研究有助于分析并网DFIG对电力系统暂态稳定的影响。
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