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Simulation research for LVRT of DFIG based on rotor active crowbar protection

机译:基于转子主动撬棍保护的DFIG LVRT仿真研究

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Aiming at the problems which were brought by wind power integration, it is important to enhance the low voltage ride-through (LVRT) performance of wind turbines in order to ensure the safe and reliable operation of the power system. For the doubly-fed induction generator (DFIG) based wind turbines, crowbar is a commonly used protection method to implement the LVRT capability. Based on analyzing the electric characteristic of the stator and rotor currents during the grid voltage dips in wind turbines with or without crowbar switching, the equation to estimate maximal faulty currents of stator and rotor with crowbar switching is derived. Then a crowbar resistance design method based on the faulty rotor current and the DC-link voltage was proposed, and the specific LVRT control strategy was discussed in this paper. The crowbar resistance can limit rotor fault current, DC-link over-voltage and protect rotor converter effectively during the grid voltage dip. At the same time, reactive power can be fed to the grid through both stator and grid-side converter. A typical 2MW DFIG system was used, the analysis and simulation results show that, with the help of appropriate protective resistor and the reasonable control strategy, the additional crowbar device can effectively help wind generator provide LVRT capability.
机译:针对风力电力集成带来的问题,重要的是提高风力涡轮机的低电压骑行(LVRT)性能,以确保电力系统的安全可靠运行。对于基于双馈感应发电机(DFIG)的风力涡轮机,撬棍是一种实现LVRT能力的常用保护方法。基于分析定子和转子电流的电网电压在有或没有撬棍切换的电涡轮机的电压倾斜期间的电力特性,导出了撬杆切换的估计定子和转子的最大故障电流的等式。然后提出了一种基于故障转子电流和DC链路电压的承载机电阻设计方法,本文讨论了特定的LVRT控制策略。撬杆电阻可以在网格电压倾角期间有效地限制转子故障电流,直流链路过电压并保护转子转换器。同时,可以通过定子和电网侧转换器将无功功率馈送到电网。使用典型的2MW DFIG系统,分析和仿真结果表明,在适当的保护电阻和合理的控制策略的帮助下,额外的撬棍装置可以有效地帮助风力发电机提供LVRT能力。

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