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A new control strategy of DFIG-based wind farms for power system frequency regulation

机译:基于DFIG的风电场控制电力系统频率的新控制策略

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As doubly fed induction generators (DFIGs) are connected to the power system by the converters which decouple the rotor speed and the grid frequency, high penetration of DFIG- based wind farms may cause the lack of power system equivalent rotation inertia and primary frequency control contribution. In order to improve the DFIGs' contribution to system frequency regulation, this paper presents a new integrated frequency control strategy combining the inertial control and pitch angle control. With the proposed control strategy, DFIGs will release kinetic energy to support the power system inertia and make use of reserved capacity to participate the long-term frequency control. A power system including synchronous generators and DFIG-based wind farm is modeled in MATLAB/Simulink and the control strategy is validated in simulation studies. The results show that DFIGs with proposed control strategy can provide effective inertia support and reduce the static error of post-disturbance grid frequency.
机译:由于双馈感应发电机(DFIG)通过将转子速度和电网频率解耦的转换器连接到电力系统,基于DFIG的风电场的高渗透率可能会导致缺乏电力系统的等效旋转惯量和主频率控制功能。为了提高DFIG对系统频率调节的贡献,本文提出了一种将惯性控制和俯仰角控制相结合的新型集成频率控制策略。通过提出的控制策略,双馈发电机将释放动能以支持电力系统惯性,并利用保留的容量参与长期的频率控制。在MATLAB / Simulink中对包括同步发电机和基于DFIG的风电场的电力系统进行建模,并在仿真研究中验证了控制策略。结果表明,采用所提出的控制策略的双馈异步电动机可以提供有效的惯性支持,并减少扰动后电网频率的静态误差。

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