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Operational inductance of DFIG-based wind turbines for fault current analysis during LVRT

机译:LVRT期间用于故障电流分析的基于DFIG的风力发电机的工作电感

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As doubly fed induction generator (DFIG) based wind turbines (WTs) have already become a significant power source in modern power systems, characterizing its fault current is one of the basic requirements for system analysis. However, due to various fault ride through strategies and flexible switching schemes, this research is of less progress under severe grid fault conditions. In this paper, the operational inductance of DFIG-based WT is proposed for extracting the influence of various ride through strategies on fault current characteristics. Furthermore, a uniform and simple analytical expression is developed under the switch of three typical ride through strategies. Based on the obtained analytical expression, the allocation of initial value, damping and frequency deviation of stator current are identified and described clearly. Finally, the analytical results are verified with the mathematic solution and the IGBT-detailed simulation of a commercial GE 1.5MW WT.
机译:由于基于双馈感应发电机(DFIG)的风力涡轮机(WTs)已成为现代电力系统中的重要电源,表征其故障电流是系统分析的基本要求之一。然而,由于各种故障穿越策略和灵活的切换方案,在严峻的电网故障条件下,这项研究的进展较少。在本文中,提出了基于DFIG的WT的工作电感,以提取各种穿越策略对故障电流特性的影响。此外,在三种典型的穿越策略的转换下,开发出了一种统一而简单的分析表达式。根据所获得的解析表达式,可以识别并明确描述定子电流的初始值,阻尼和频率偏差的分配。最后,通过数学解决方案和商用GE 1.5MW WT的IGBT详细仿真验证了分析结果。

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