基于dfig的风力发电厂增强的低压全程控制能力

K. Thapa, Kishan Jayasawal, P.R. Khatri
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引用次数: 2

摘要

根据电网规范对低电压穿越(LVRT)的要求,风力发电机组(WTG)应在扰动中存活并产生无功功率以支撑电网电压。本文提出了一种基于双馈感应发电机(DFIG)的风力发电厂(WPP)的增强LVRT控制能力。为此,DFIG的转子侧变换器(RSC)控制器具有自适应无功电流电压(IQ-V)特性,WPP控制器根据各DFIG的转子电压余量(RVM)为各DFIG提供不同的参考电压。因此,WPP中的DFIGs向电网注入不同数量的无功功率,以支撑互连点(POI)的电压。为了在故障期间使DFIG存活,DFIG的RSC中的参考电磁转矩与DFIG终端的权重因子和电压下降成比例降低,旨在监测直流链路电容器的电压上升。对由20个6-MVA dfig组成的120 MVA WPP进行了测试。结果表明,与传统方法相比,该方法能够产生额外的无功功率,从而在电网扰动时贡献POI电压并调节DFIGs直流链路的电压上升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Low Voltage Ride- Through Control Capability of a DFIG-Based Wind Power Plant
As per the grid code requirements for low voltage ride-through (LVRT), the wind turbine generator (WTG) should survive and produce reactive power to prop up the grid voltage during a disturbance. The manuscript proposes an enhanced LVRT control capability of a doubly fed induction generator (DFIG) based wind power plant (WPP). To accomplish it, the rotor side converter (RSC) controller of the DFIG is provided with adaptive reactive current to voltage (IQ-V) characteristics and the WPP controller provides different reference voltage to each DFIG, relying on their rotor voltage margins (RVM). Thus, the DFIGs in a WPP injects different amount of reactive power into the grid to prop up voltage at point of interconnection (POI). To survive the DFIG during a fault, the reference electromagnetic torque in the RSC of the DFIGs is decreased proportionate to the weighting factor and voltage sags at the terminals of the DFIGs intending to monitor the voltage rise across the capacitor of the DC-link. The proposed method is tested for 120 MVA WPP consisting of twenty 6-MVA DFIGs. The results validate the ability of the proposed method to produce additional reactive power in comparison to the conventional method to contribute to the POI voltage and regulate voltage rise in DC-link of the DFIGs during a grid disturbance.
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