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Control strategy of system coordination in Nanao multi-terminal VSC-HVDC project for wind integration

机译:南澳风电多端VSC-HVDC项目系统协调控制策略

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The ±160 kV three-terminal voltage source converter (VSC) based HVDC system under construction in Island of Nanao, China, is expected to be the first multi-terminal VSC-HVDC industrial project. The system has been designed to extract wind energy from the wind intensive areas on the island to the bulk power system at the mainland of China. At present, the system is being tested online, and planned to be committed by the end of 2013. Due to the outstanding controllability of VSC-HVDC system, the control strategy becomes critical for coordination between each converter station, as well as the interconnected DC and AC system. This paper presents the detailed control schemes for each individual active and reactive power parameter according to different operation modes, including paralleled operation of AC and DC circuits, DC operation only, and working as a reactive power compensator. In this system, the power flow management ensures efficient power transmission in normal operation, and fast response in emergency condition, which improves the ability of fault ride-through. Also, the converter station is capable to provide a stable AC system for connecting wind farms.
机译:基于±160 kV三端电压源转换器(VSC)的高压直流输电系统正在中国南澳岛建设中,有望成为首个多端VSC-HVDC工业项目。该系统旨在将风能从岛上的风力密集区提取到中国大陆的大型电力系统。目前,该系统正在在线测试中,计划于2013年底投入使用。由于VSC-HVDC系统出色的可控性,控制策略对于每个换流站以及互连的DC之间的协调至关重要。和交流系统。本文根据不同的工作模式,针对每个单独的有功和无功功率参数,给出了详细的控制方案,包括交流和直流电路的并联运行,仅直流工作以及用作无功补偿器。在该系统中,潮流管理可确保正常运行中有效的电力传输,以及在紧急情况下的快速响应,从而提高了故障穿越的能力。而且,换流站能够提供稳定的交流系统以连接风电场。

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