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Frequency regulation control strategy for PMSG wind-power generation system with flywheel energy storage unit

机译:带飞轮储能单元的PMSG风力发电系统的调频控制策略

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摘要

To enhance the frequency regulation capability of direct-drive permanent magnet synchronous generator (PMSG)-based wind-power generation system, the frequency regulation control strategy for wind-power system with flywheel energy storage unit (FESU) based on fuzzy proportional plus differential (PD) controller is proposed in this study. According to the mathematical model of PMSG-based wind-power generation system with FESU, the small-signal model of the whole system is deduced in detail. In addition, the eigenvalue loci of the system are investigated to obtain the appropriate ranges of FESU's PD controller parameters for ensuring the system stable operation. Meanwhile, the impact of system equivalent inertia and damping on system frequency stability is analysed. Furthermore, a fuzzy PD controller of FESU is designed to dynamically regulate the system equivalent inertia and damping, leading to improved grid frequency characteristics. Finally, simulation studies on a 2 MW PMSG-based wind-power generation system with 400 kW FESU verify the validity of the proposed control strategy, contributing to enhance the frequency stability of power grid.
机译:为了提高基于直驱永磁同步发电机(PMSG)的风力发电系统的频率调节能力,基于飞轮储能单元(FESU)的风力发电系统的频率调节控制策略基于模糊比例加微分( PD)控制器是在这项研究中提出的。根据基于FESG的基于PMSG的风力发电系统的数学模型,详细推导了整个系统的小信号模型。此外,还对系统的特征值位点进行了研究,以获得FESU的PD控制器参数的适当范围,以确保系统稳定运行。同时,分析了系统等效惯量和阻尼对系统频率稳定性的影响。此外,FESU的模糊PD控制器设计用于动态调节系统的等效惯量和阻尼,从而改善电网频率特性。最后,对基于2 MW PMSG的400 kW FESU风力发电系统的仿真研究验证了所提出的控制策略的有效性,有助于提高电网的频率稳定性。

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