海上风力发电
风力发电
工程类
谐波
断层(地质)
传输(电信)
转换器
电气工程
电容器
交流电源
脉冲宽度调制
电子工程
海洋工程
电压
地震学
地质学
作者
Jiahang Xia,Xiaojiang Guo,Chenxin Wang,Xiaoling Xiong,Chengyong Zhao,Chunyi Guo
标识
DOI:10.1109/tpwrd.2022.3160074
摘要
The actively commutated current source converter (CSC) does not need large energy storage capacitors and can realize the black start of wind farms, which provides a practicable scheme for the lightweight offshore wind power DC transmission system. However, resulted from utilizing pulse width modulation, the existing CSC has the disadvantages of high DC harmonics and high switching loss. To solve this problem, an offshore wind power transmission system based on the current source converter with fundamental frequency modulation employed (FFM-CSC) is investigated. Firstly, the topology and mathematical model are analyzed. Then, a steady-state control strategy coordinated by the offshore CSC and the onshore CSC is put forward, and the power operating range is researched. A black start control strategy for wind farms is also proposed. Finally, the offshore wind power transmission system is tested by simulation in PSCAD/EMTDC. The results demonstrate that the FFM-CSC-based offshore wind power transmission system can smoothly realize the black start, stably control the frequency and amplitude of AC voltage, adapt to output changes of wind turbines, and realize the fault ride-through.
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