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Grid code compliance of VSC-HVDC in offshore multi-terminal DC networks

机译:离岸多终端DC网络中VSC-HVDC的网格规范合规性

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This paper studies grid code compliance of offshore wind farms (OWFs) when connected to a multi-terminal dc network (MTDC) using VSC-HVDC technology. As the wind farms become decoupled from the ac grids via the dc network, the onshore VSC-HVDC terminals are responsible for complying with the grid codes. However, the onshore VSCs are an active part of the MTDC network control. Voltage-source converters can independently control active and reactive power, but only within their rated capability. If reactive power requirements are too strict, it detriments the converter active power capability, influencing the MTDC network operation. The work is divided as follows: at first, the most common grid codes requirements are introduced. Secondly, the capability chart of a VSC-HVDC terminal is analyzed. Afterwards, the operation of VSC-HVDC terminals inside MTDC networks is explained. Lastly, dynamic simulations verify whether VSC-HVDC terminals fulfill the grid codes requirements when inside MTDC networks.
机译:本文研究了使用VSC-HVDC技术连接到多终端直流网络(MTDC)时,海上风电场(OWF)的网格规范合规性。随着风电场通过直流网络与交流电网分离,陆上的VSC-HVDC终端负责遵守电网法规。但是,陆上VSC是MTDC网络控制的活跃部分。电压源转换器可以独立控制有功功率和无功功率,但只能在其额定能力范围内。如果无功功率要求太严格,则会损害转换器的有功功率能力,从而影响MTDC网络的运行。工作分为以下几部分:首先,介绍最常见的网格代码要求。其次,分析了VSC-HVDC终端的功能图表。之后,将解释MTDC网络内VSC-HVDC终端的操作。最后,动态仿真验证了在MTDC网络中时,VSC-HVDC终端是否满足电网规范要求。

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