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Battery Connected DFIG Wind System Analysis for Strong/Weak Grid Scenarios

机译:适用于强/弱电网场景的电池连接DFIG风力系统分析

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The paper helps to understand the performance of the grid with battery and doubly-fed induction generator (DFIG) wind turbines when operating in a weak grid scenario with a low short circuit ratio (SCR). The concept will analyze the performance of the grid with battery connected DFIG both in steady state and transient scenario. The grid can be represented as a Thevenin equivalent circuit and is rated at 12.5 kV. A battery system and a wind system are connected at the point of common coupling (PCC). The battery system being modeled in PSCAD software is rated at 1 MW/1 MWh and the wind system model is rated at 2 MW. The grid has been characterized and analyzed based on two categories: strong grid and weak grid. A grid is considered to be weak when the flow of active and reactive power in the network causes a significant amount of voltage fluctuation at the point of common coupling. A grid is considered to be strong when the grid is stable with allowable nominal deviations with voltage and frequency. The strength of the grid can be measured by taking the ratio of grid's short circuit power with grid nominal power.
机译:本文有助于了解在电池组和双馈感应发电机(DFIG)风力涡轮机在弱短路率(SCR)低的弱电网情况下运行时的性能。该概念将分析在稳态和瞬态情况下带有电池连接的DFIG的电网的性能。电网可以表示为戴维南等效电路,额定电压为12.5 kV。电池系统和风力系统在公共耦合点(PCC)连接。在PSCAD软件中建模的电池系统的额定功率为1 MW / 1 MWh,风力系统模型的额定功率为2 MW。网格的特征和分析基于两类:强网格和弱网格。当网络中的有功功率和无功功率流在公共耦合点引起很大的电压波动时,则认为电网较弱。当电网稳定且电压和频率允许的标称偏差时,该电网被认为是坚固的。可以通过采用电网的短路功率与电网标称功率之比来测量电网的强度。

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