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Low voltage ride through of doubly-fed induction generator connected to the grid using sliding mode control strategy

机译:使用滑模控制策略的与电网相连的双馈感应发电机的低压穿越

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Wind Energy Conversion System (WECS) based on Doubly Fed Induction Generator (DFIG) connected to the grid is subjected to high transient currents at rotor side and rise in DC-link voltage during voltage sag at stator/grid side. To secure power system operation wind turbines have to meet grid requirements through the Low voltage ride through (LVRT) capability and contribute to grid voltage control during severe situations. This paper presents the modeling and control designs for WECS based on a real model of DFIG taking into account the effect of stator resistance. The non-linear control technique using sliding mode control (SMC) strategy is used to alter the dynamics of 1.5 MW wind turbine system connected to the grid under severe faults of grid voltage. The paper, also discusses the transient behavior and points out the performance limit for LVRT by using two protection circuits of an AC-crowbar and a DC-Chopper which follow a developed flowchart of system protection modes under fault which achieved LVRT requirements through results. The model has been implemented in MATLAB/SIMULINK for both rotor and grid side converters. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于与电网连接的双馈感应发电机(DFIG)的风能转换系统(WECS)在转子侧承受高瞬态电流,并且在定子/电网侧发生电压暂降时直流母线电压升高。为了确保电力系统的运行,风力涡轮机必须通过低压穿越(LVRT)功能满足电网要求,并在严重情况下为电网电压控制做出贡献。考虑到定子电阻的影响,本文基于实际的DFIG模型提出了WECS的建模和控制设计。使用滑模控制(SMC)策略的非线性控制技术用于在电网电压严重故障下更改与电网连接的1.5 MW风力发电机系统的动态。本文还讨论了瞬态行为,并通过使用交流撬棒和直流斩波器这两个保护电路指出了LVRT的性能极限,这两个电路遵循已开发的系统保护模式流程图,该电路在故障下通过结果达到了LVRT要求。该模型已在MATLAB / SIMULINK中实现,适用于转子和电网侧转换器。 (C)2015 Elsevier Ltd.保留所有权利。

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