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A novel topology for HVDC link connecting to offshore wind farms

机译:连接到海上风电场的HVDC链路新颖拓扑

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Offshore wind power has developed rapidly and will play an important role in China power market in the near future due to its advantages in effectiveness and convenience. HVDC transmission technology is believed to be an effective way for integration of offshore wind power. To push the connection to grid at a low price to be achieved sooner, this paper proposes a novel topology for transmission of offshore wind power with integration of permanent magnet direct-driven wind turbines. HVDC diodes on the rectifier side and a modular multilevel converter (MMC) on the inverter side is adopted in the HVDC link. The HVDC diodes are used instead of IGBTs for rectification in sending end convertor station. An integrated control strategy based on wind converter and MMC is investigated. The presented results show a stable operation of the offshore ac-grid voltage and frequency. Moreover, the proposed system shows good behavior in the case of cable fault. It is concluded that the proposed topology is a technically feasible solution for the connection of offshore wind farms. By virtue of the HVDC diodes instead of the voltage-source converter on the offshore platform, the cost, occupied area and power loss of HVDC converters are reduced compared with the case of the conventional fully rated VSC. The system performance, meanwhile, is kept stable.
机译:海上风力发电迅速发展,并将在不久的将来在中国电力市场中发挥重要作用,因为它的有效性和便利性的优势。 HVDC传输技术被认为是越野风电整合的有效途径。为了以低价格推动与网格的连接延时,提出了一种新颖的拓扑,用于传输海上风电源直接驱动风力涡轮机的集成。在HVDC链路中采用整流侧的HVDC二极管和逆变器侧的模块化多电平转换器(MMC)。使用HVDC二极管代替IGBT,用于发送结束转换器站中的整流。研究了基于风转换器和MMC的集成控制策略。所提出的结果显示了近海交流电压电压和频率的稳定运行。此外,所提出的系统在电缆故障的情况下显示出良好的行为。得出结论,拟议的拓扑是用于联系海上风电场的技术上可行的解决方案。借助于HVDC二极管而不是在海上平台上的电压源转换器,与传统完全额定VSC的情况相比,HVDC转换器的成本,占用面积和功率损耗减少。同时,系统性能保持稳定。

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