基于短时功率超调的MTDC系统集成海上风电场快速频率控制

Y. Xin, Q. Peng, Tianqi Liu, Tingyun Gu, Huachun Han
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引用次数: 0

摘要

可再生能源系统需要为电网提供快速的频率支持,以保持频率稳定。对于通过多端直流(MTDC)系统并入大电网的海上风电场,实现快速频率控制的挑战在于不同风速下海上风电场的协调和有限的通信条件。针对这些挑战,本文提出了一种基于短时功率超调的MTDC集成owf快速频率控制方法。采用频率-直流电压降控制,将陆上电力系统的频率偏差信号传输到无远程通信依赖的owf。然后,将FFC应用于风电机组(WT)功率控制回路,使OWF能够响应频率波动,并根据短期功率超调基准利用转子动能进一步支持陆上电力系统。在此基础上,提出了不同风速下自动机的协调策略,根据实时转子转速自适应调整功率控制系数。仿真结果表明,该方法能及时响应电网频率波动,并能有效协调owf对电网频率的支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast Frequency Control of MTDC System Integrated Offshore Wind Farms Based on Short-Term Power Overshoot
Renewable energy systems are required to provide fast frequency support to the power grid for maintaining frequency stability. For the offshore wind farms (OWFs) integrated into the bulk power grid by multi-terminal direct current (MTDC) systems, the challenges for realizing fast frequency control consist of coordination of OWFs with different wind speeds and limited communication condition. Address those challenges, this paper proposes a fast frequency control (FFC) method for MTDC integrated OWFs based on short-term power overshoot. The frequency-DC voltage droop control is used to transmit the frequency deviation signal from the onshore power system to the OWFs without long-distance communication dependency. Then, the FFC is applied to the wind turbine (WT) power control loop, allowing the OWF to respond to frequency fluctuation and further support the onshore power system by use of the rotor kinetic energy according to short-term power overshoot reference. Moreover, the coordination strategy of OWFs with different wind speeds are proposed, which adaptively adjusts the power control coefficients according to real-time rotor speeds. Simulation results show that the proposed method can respond to grid frequency fluctuation in time and can effectively coordinate the OWFs for supporting the grid frequency.
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