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Very short-term wind speed prediction-based inertial control of a DFIG wind farm

机译:基于短期风速预测的DFIG风电场的惯性控制

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Rapid growth of wind power penetration brings difficulties in maintaining the power system frequency stability after a large active power disturbance. It is specified in some countries that wind farms must provide frequency support functions. To properly exploit the kinetic energy stored in the doubly fed induction generator (DFIG) to support the frequency regulation, especially considering the realistic wind speed variation during the transient process, a very short-term wind speed prediction (VSWSP)-based inertial control scheme is proposed in this paper, including the rate of change of frequency (ROCOF) and droop loops. Two loop gains are adjusted based on the predicted average wind speed in the future 10 seconds, which enables the inertial control adaptive to the wind speed variation during the transient process. Simulation results indicate that the proposed scheme shows better performance than conventional fixed gain scheme in terms of improving the frequency nadir and preventing the DFIG from over-deceleration during the inertial control.
机译:风力电力渗透的快速增长带来了在大主动电力干扰后保持电力系统频率稳定性的困难。它在一些国家指定的风电场必须提供频率支持功能。为了适当地利用存储在双馈感应发电机(DFIG)中的动能以支持频率调节,特别是考虑到瞬态过程中的现实风速变化,非常短期的风速预测(VSWSP)基于基于惯性控制方案在本文中提出,包括频率变化率(Rocof)和Droop环。在未来的10秒内基于预测的平均风速调整两个环路,这使得误动控制能够在瞬态过程中适应风速变化。仿真结果表明,在改善频率Nadir并防止惯性控制期间,所提出的方案表现出比传统固定增益方案更好的性能,并且在惯性控制期间防止DFIG过减速。

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