基于dfig的风力机惯性控制方法的比较

Zhiheng Zhang, Yi Wang, Heming Li, Xiaoqin Su
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引用次数: 30

摘要

基于双馈感应发电机(DFIG)的风力发电机目前在大型风电场中得到了广泛的应用。由于DFIG的控制系统不是基于电力系统的频率,因此随着风力发电渗透率的增加,电力系统的整体惯性迅速减小。这对系统频率的稳定性极为不利。因此,需要开发DFIG的辅助惯性控制策略来弥补这一不足。本文首先简要介绍了基于dfig的风力发电机组矢量控制系统。利用该模型的惯性控制方法可以在以后设计出来。在此基础上,提出了可控虚惯量的概念,并详细推导了其公式。在对DFIG的两种惯量控制策略进行详细描述后,揭示了控制DFIG虚惯量的机理:惯量控制方案中包含的参数(K1、k2和K3)成比例地决定了DFIG的虚惯量水平。最后,通过在Matlab/Simulink中的仿真,本文所采用的两种dfg型风力机惯性控制策略对系统的频率支持是有效的,可控虚拟惯性的概念具有进一步研究的理论价值。
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Comparison of inertia control methods for DFIG-based wind turbines
Doubly fed induction generator (DFIG)-based wind turbines are nowadays used widely in large wind farms. Due to the fact the control system of DFIG is not based on the power system frequency, the whole inertia of the power system is reducing rapidly with the penetration of wind generation increasing. This is extremely bad for the stability of the system frequency. Thence, ancillary inertia control strategies of DFIG need to be developed to compensate for this deficiency. At the beginning of this article, the vector control system of DFIG-based wind turbines is described briefly. The inertia control methods making use of that model could later be designed out. Then, a concept called controllable virtual inertia is put out and the derivation of its formula is given in details. After the two inertia control strategies of DFIG are described fully, the mechanism that how the virtual inertia of DFIG can be manipulated is revealed: the parameters (K1, K2and K3) contained in the inertia control schemes determine proportionally the virtual inertia level of DFIG. Finally, through the simulations in Matlab/Simulink, the two strategies of inertia control for DFIG-based wind turbines which have been utilized in this work are effective for the system frequency support and the concept named as controllable virtual inertia has theory worth for further research.
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