马德智, 栗文义, 温彩凤, 柴瑞. 基于双馈发电机组调频参与度的风/储协调一次调频控制策略[J]. 电网技术, 2023, 47(3): 968-977. DOI: 10.13335/j.1000-3673.pst.2022.1874
引用本文: 马德智, 栗文义, 温彩凤, 柴瑞. 基于双馈发电机组调频参与度的风/储协调一次调频控制策略[J]. 电网技术, 2023, 47(3): 968-977. DOI: 10.13335/j.1000-3673.pst.2022.1874
MA Dezhi, LI Wenyi, WEN Caifeng, CHAI Rui. Wind/Storage Coordinated Primary Frequency Regulation Control Strategy Based on Participation Level of DFIG Units[J]. Power System Technology, 2023, 47(3): 968-977. DOI: 10.13335/j.1000-3673.pst.2022.1874
Citation: MA Dezhi, LI Wenyi, WEN Caifeng, CHAI Rui. Wind/Storage Coordinated Primary Frequency Regulation Control Strategy Based on Participation Level of DFIG Units[J]. Power System Technology, 2023, 47(3): 968-977. DOI: 10.13335/j.1000-3673.pst.2022.1874

基于双馈发电机组调频参与度的风/储协调一次调频控制策略

Wind/Storage Coordinated Primary Frequency Regulation Control Strategy Based on Participation Level of DFIG Units

  • 摘要: 双馈异步发电机(doubly-fed induction generator,DFIG)机组利用转子动能参与电网一次调频,必须保证频率响应过程中机组的转速及有功输出均处于安全范围之内,否则将对频率稳定性造成严重的负面影响。由此,提出一种基于DFIG机组调频参与度的风/储协调一次调频控制策略。考虑DFIG机组转速变化范围和变流器容量约束,通过整定、优化所定义的调频参与度系数,量化机组的实时调频能力。在此基础上,将机组和电池储能系统视作独立调频源,分别采用比例–微分算法和计及储能荷电状态的模糊算法计算各自调频有功,并利用调频参与度系数为风、储有功分配权重,协调二者出力。仿真结果表明,该控制策略可在保障机组转速和功率安全的同时,有效抑制频率二次跌落,并增强了系统对电网频率的有功支撑性。

     

    Abstract: When the doubly-fed induction generator (DFIG) unit utilizes the rotor kinetic energy to participate in the primary frequency regulation of the power grid, the rotor speed and the active power output of the generator must be guaranteed to be within the safe range. Otherwise, the frequency stability may not be ensured. Therefore, a wind/storage coordinated primary frequency regulation control strategy based on the participation level of the DFIG units is proposed. Considering the DFIG unit's rotor speed variable range and the capacity of its converter, the real-time frequency regulated capability of the unit is quantified by calculating and optimizing the defined participation level coefficient. On this basis, regarding the unit and the battery energy storage system (BESS) as the independent frequency regulation sources, the proportional- differential algorithm and the fuzzy algorithm are used to calculate their respective active power of frequency regulation considering the battery's state of charge. Then, the participation level coefficient is applied to assign the weights to the active power of unit and the BESS in order to realize the coordination of the outputs of the two. The simulation results show that the control strategy is able to effectively suppress the secondary frequency drop and enhance the active power support to the grid frequency while ensuring the safety of rotor speed and the converter power.

     

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