李鹏, 崔玉, 孔祥平, 刘裕桦. ±800kV多落点LCC-MMC直流系统控制器建模[J]. 现代电力, 2019, 36(6): 38-44.
引用本文: 李鹏, 崔玉, 孔祥平, 刘裕桦. ±800kV多落点LCC-MMC直流系统控制器建模[J]. 现代电力, 2019, 36(6): 38-44.
LI Peng, CUI Yu, KONG Xiangping, LIU Yuhua. Modeling of ±800kV Multi-terminal LCC-MMC HVDC Controller[J]. Modern Electric Power, 2019, 36(6): 38-44.
Citation: LI Peng, CUI Yu, KONG Xiangping, LIU Yuhua. Modeling of ±800kV Multi-terminal LCC-MMC HVDC Controller[J]. Modern Electric Power, 2019, 36(6): 38-44.

±800kV多落点LCC-MMC直流系统控制器建模

Modeling of ±800kV Multi-terminal LCC-MMC HVDC Controller

  • 摘要: 结合线换相换流器和模块化多电平换流器直流输电各自的优点,在电力资源丰富的地区采用适用于高压大容量的LCC作为输送端电能汇集换流站,在受端的高负荷集中区域采用LCC换流站逆变成交流提供电能,对于负荷相对较小的其他区域采用多落点的MMC换流站进行逆变,以灵活分配电能。针对采用上述拓扑的±800kV白鹤滩水电直流输送工程,提出了一种适用于多落点LCC-MMC系统的协调控制策略,并在PSCAD上搭建了白鹤滩直流工程单极模型,实验证明混合系统可以平稳启动,传输功率时系统运行稳定,验证了所提出控制策略的有效性。

     

    Abstract: Combining the advantages of line commutation converter and flexible direct current transmission based on modular multilevel converter, LCC is adopted as power convergence converter station for high voltage and large capacity at sending end, LCC converter station is used in heavy load concentrated area at receiving end to provide AC power, and MMC converter station with multiple terminals is used for other areas with relatively light load to distribute electric energy flexibly. In this paper, a coordination control strategy for multi-terminal LCC-MMC system is proposed based on the ±800kV Baihetan hydropower DC transmission project with the above topology. A unipolar model of Baihetan DC project is built on PSCAD. The hybrid system can run smoothly and steadily when transmitting power. The validity of the control strategy proposed in this paper is verified.

     

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