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Optimal auxiliary frequency control of wind turbine generators and coordination with synchronous generators

机译:风力涡轮发电机的最优辅助频率控制与同步发电机的协调

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摘要

Auxiliary frequency control of a wind turbine generator (WTG) has been widely used to enhance the frequency security of power systems with high penetration of renewable energy. Previous studies recommend two types of control schemes, including frequency droop control and emulated inertia control, which simulate the response characteristics of the synchronous generator (SG). This paper plans to further explore the optimal auxiliary frequency control of the wind turbine based on previous research. First, it is determined that the virtual inertia control has little effect on the maximum rate of change of frequency (Max-ROCOF) if the time delay of the control link of WTG is taken into consideration. Secondly, if a WTG operates in maximum power point tracking (MPPT) mode and uses the rotor deceleration for frequency modulation, its optimal auxiliary frequency control will contain only droop control. Furthermore, if the droop control is properly delayed, better system frequency response (SFR) will be obtained. The reason is that coordination between the WTG and SG is important for SFR when the frequency modulation capability of the WTG is limited. The frequency modulation capability of the WTG is required to be released more properly. Therefore, when designing optimal auxiliary frequency control for the WTG, a better control scheme is worth further study.
机译:风力涡轮发电机(WTG)的辅助频率控制已被广泛用于增强具有可再生能源的高渗透的电力系统的频率安全性。以前的研究建议使用两种类型的控制方案,包括频率下垂控制和模拟惯性控制,其模拟了同步发电机(SG)的响应特性。本文计划进一步探索基于先前研究的风力涡轮机的最优辅助频率控制。首先,如果考虑了WTG的控制链路的时间延迟,则确定虚拟惯性控制对频率的最大变化率(max-rocof)的影响几乎没有影响。其次,如果WTG在最大功率点跟踪(MPPT)模式下运行并使用转子减速进行频率调制,则其最佳辅助频率控制将仅包含下垂控制。此外,如果下垂控制被正确延迟,将获得更好的系统频率响应(SFR)。原因是当WTG的频率调制能力有限时,WTG和SG之间的协调对于SFR是重要的。 WTG的频率调制能力需要更好地释放。因此,在为WTG设计最佳辅助频率控制时,更好的控制方案值得进一步研究。

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