Droop assignment algorithm for the inertial control of a DFIG-based wind power plant for supporting the grid frequency

J. Lee, Y. Kang, E. Muljadi, P. Sørensen
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引用次数: 5

Abstract

In a wind power plant (WPP) consisting of multiple wind generators (WGs), the wind speed of WGs at the downstream side decreases due to the wake effect, and thus their rotor speeds are smaller than those of the upstream WGs because of an MPPT operation. Therefore, WGs in a WPP have different amount of the kinetic energy stored in their rotating masses. This paper proposes a droop assignment algorithm for the inertial control of a doubly-fed induction generator-based WPP to support the grid frequency during the large disturbance. This paper assumes that a WG in the WPP has two supplementary loops for the inertial control, i.e. the frequency deviation loop and the rate of change of frequency (ROCOF) loop. In order to give more contribution on supporting the frequency stability by temporarily releasing more kinetic energy, the proposed algorithm assigns the droop of each WG depending on the rotor speed, while the same gains of the ROCOF loop are set for all WGs. In addition, the wake wind speed arriving at the WG is calculated by considering the wind direction and cumulative impacts of multiple shadowing. The performance of the algorithm was investigated under various wind conditions using an EMTP simulator. The results clearly indicate that the algorithm successfully improves the frequency nadir because WGs with higher wind speeds temporarily releases more kinetic energy.
基于dfig的风电场支持电网频率惯性控制的下垂分配算法
在由多台风力发电机组成的风电场中,由于尾迹效应,下游风力发电机的风速降低,因此由于MPPT运行,其转子转速小于上游风力发电机。因此,WPP中的WGs在其旋转质量中储存的动能不同。本文提出了一种基于双馈感应发电机的WPP惯性控制下垂分配算法,以支持大扰动下的电网频率。本文假设WPP中的WG有两个辅助的惯性控制环,即频率偏差环和频率变化率环(ROCOF)。为了通过暂时释放更多的动能对支持频率稳定性做出更大的贡献,该算法根据转子转速为每个转子分配下垂,同时为所有转子设置相同的roof环路增益。另外,考虑了风向和多次遮蔽的累积影响,计算了到达工作组的尾流风速。利用EMTP模拟器研究了该算法在不同风况下的性能。结果清楚地表明,该算法成功地改善了频率最低点,因为高风速的风力发电机暂时释放更多的动能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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