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Frequency Regulation and Control of Grid-Connected Wind Farms Based on Online Reduced-Order Modeling and Adaptive Control

机译:基于在线降阶建模和自适应控制的并网风电场频率调节与控制

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摘要

This article presents a frequency regulation and stabilization control architecture for a wind turbine generator (WTG) integrated power grid, which can be added to existing WTGs. The architecture uses online reduced-order modeling of the power grid with frequency-dependent network equivalent that can seamlessly evaluate the grid fluctuations with respect to the point of common coupling of the wind farm. Then, an adaptive control architecture with the help of an online identification routine is used to balance the torque control of the wind generator (here doubly fed induction generator is considered) such that the frequency of the system is balanced. The main advantage of the proposed architecture is that the approach ensures frequency stability during grid oscillations at any location due to grid-related or WTG-related problems. The proposed approach not only maintains the frequency within acceptable limits during oscillations, but also makes sure that voltages are at normal values. The approach can work without wind speed measurements. The architecture is evaluated using wind-farm-integrated Kundur two-area and IEEE 39-bus test systems using a real-time digital simulator.
机译:本文介绍了一种用于风力涡轮发电机(WTG)集成电网的频率调节和稳定控制架构,可以将其添加到现有的WTG中。该体系结构使用具有频率依赖网络等效性的电网在线降阶建模,可以无缝评估风电场公共耦合点的电网波动。然后,借助于在线识别例程的自适应控制体系结构用于平衡风力发电机的转矩控制(此处考虑为双馈感应发电机),从而使系统的频率达到平衡。所提出的架构的主要优点在于,该方法确保了由于电网相关或与WTG相关的问题,在任何位置的电网振荡期间的频率稳定性。所提出的方法不仅在振荡期间将频率保持在可接受的限度内,而且确保电压处于正常值。该方法可以在没有风速测量的情况下工作。使用风电场集成的Kundur两区域和IEEE 39总线测试系统(使用实时数字模拟器)对体系结构进行评估。

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