Adaptability Analysis of Fault Component Directional Elements in the Transmission Line of Large-Scale Wind Farms

Ling Zhang, Qi Zhao, Dongliang Nan, Yanfang Fan, Yudun Li, Weimin Niu
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Abstract

This article takes the large-scale doubly-fed wind farm into the power system as the background, considers the Crowbar circuit input and converter control strategy, and comprehensively considers the different voltage drop depths, slip rates, Crowbar resistance, and active power indicators of the doubly-fed wind turbine under grid fault. And reactive power indicators, theoretically calculate the positive and negative sequence impedance fluctuations on the wind turbine side when a fault occurs, combine the positive and negative sequence impedance fluctuations with the conventional sequence fault component directional element(FCDE) criterion, and analyze the sequence fault component directional element when the large-scale doubly-fed wind power is connected to power The adaptability of the system is finally verified by PSCAD/EMTDC simulation to verify the correctness of the theoretical analysis.
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大型风电场输电线路故障分量方向元件的适应性分析
本文以大型双馈风电场入网为背景,考虑了Crowbar电路输入和变流器控制策略,综合考虑了电网故障情况下双馈风电机组不同的压降深度、滑差率、Crowbar电阻和有功指标。无功指标,理论上计算风电机组侧发生故障时的正、负序阻抗波动,将正、负序阻抗波动与常规的序故障分量定向元(FCDE)判据相结合;最后通过PSCAD/EMTDC仿真验证了系统的适应性,验证了理论分析的正确性。
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