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Dynamic power flow algorithm considering frequency regulation of wind power generators

机译:考虑风力发电机频率调节的动态潮流算法

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摘要

Power flow calculation is a basic tool for power systems operation and control. Considering static frequency regulation characteristics of power systems, dynamic power flow (DPF) gives more precise results of system operation with frequency deviation than conventional power flow. The increasing penetration of wind energy into power grid makes it necessary to take wind power into consideration in DPF calculation. The operational traits and frequency regulation characteristics of major types of wind turbines are discussed, including fixed speed wind turbines and variable speed wind turbines with integrated control strategy combining over-speed control and droop control. With the primary frequency regulation characteristics of wind turbines, a simplified DPF algorithm is proposed in this study for power systems integrating wind power generation. The IEEE 30-bus system is modified to verify the proposed method considering different levels of wind power penetration.
机译:潮流计算是电力系统运行和控制的基本工具。考虑到电力系统的静态调频特性,与传统的电力潮流相比,动态电力潮流(DPF)给出了具有频率偏差的系统操作的更精确结果。风能越来越多地渗透到电网中,因此在DPF计算中必须考虑风能。讨论了主要类型的风力涡轮机的运行特性和频率调节特性,包括定速风力涡轮机和变速风力涡轮机,它们具有结合了超速控制和下垂控制的集成控制策略。鉴于风力发电机的主要频率调节特性,本研究针对集成风力发电的电力系统提出了一种简化的DPF算法。修改了IEEE 30总线系统,以考虑不同水平的风力渗透来验证所提出的方法。

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