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Analysis of the By-Pass Resistance of an Active Crowbar for Doubly-Fed Induction Generator Based Wind Turbines under Grid Faults

机译:基于双馈电动发电机的激活撬棍逐循环电阻分析

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摘要

The doubly-fed induction generator (DFIG) based wind turbines of today are often equipped with a crowbar, which can be used to limit the inrush rotor current and protect the ac excitation converter from damage via a set of resistors that are connected to the rotor windings of the DFIG. When the rotor current becomes too high due to the severe grid voltage dips on the transmission line, the crowbar is activated and the rotor side converter is disconnected from the rotor windings at the same time, which makes the DFIG behave as a squirrel cage induction generator with increased rotor resistance. This paper analyzes the influence of the crowbar resistors on the electrical behavior of the DFIG during the grid voltage dips. Approximate expression of the fault stator and rotor currents are deduced from mathematical analysis and verified by simulation. Different crowbar by-pass resistances and their impacts on the maximal fault currents and electromagnetic torque are examined by simulations with different parameter sets of the DFIG. Based on the simulation results, the appropriate crowbar by-pass resistance can be effectively predicted.
机译:今天的双馈感应发电机(DFIG)的风力涡轮机通常配备有撬棍,可用于限制浪涌转子电流,并通过一组连接到转子的电阻器保护交流励磁转换器免受损坏DFIG的绕组。当转子电流由于传输线上的严格电网电压划分而变得太高时,撬棍被激活,转子侧转换器同时从转子绕组断开,这使得DFig表现为鼠笼式感应发电机随着转子电阻增加。本文分析了撬杆电阻对电网电压倾斜期间DFIG电能的影响。故障定子和转子电流的近似表达从数学分析推导出并通过模拟验证。通过DFIG的不同参数集来检查不同的撬棍旁路电阻及其对最大故障电流和电磁扭矩的影响。基于仿真结果,可以有效地预测适当的撬棍旁路阻力。

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