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GRID INTEGRATION OF OFFSHORE WIND FARMS USING MULTI-TERMINAL DC TRANSMISSION SYSTEMS (MTDC)

机译:使用多终端直流传输系统(MTDC)的海上风电场网格集成

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This paper discusses the control flexibility and fault ride-through capability of the bi-polar multi-terminal DC transmission system based on voltage source converters used for integration of large-scale offshore wind farms. Issues such as voltage support and short-term frequency stabilization of the AC network utilizing the stored energy in the wind turbine inertia and DC link capacitors are discussed. Regarding control flexibility, two aspects are presented: power sharing between the grid-side converters by any ratio, and provision of an alternative path for the power flow in case of a permanent DC fault or loss of one grid-side converter. In this investigation, the wind farms are based on fixed-speed wind generators, while the converters are modelled as a neutral-point clamped converter using the universal bridge. The investigation was conducted in Matlab/Simulink.
机译:本文讨论了基于大型近海风电场集成的电压源转换器的双极多端直流传输系统的控制柔韧性和故障乘坐功能。讨论了利用风力涡轮机惯性和DC链路电容器中存储的能量的AC网络等电压支撑和短期频率稳定的问题。关于控制灵活性,提出了两个方面:通过任何比率在网格侧转换器之间的功率共享,并且在永久直流故障或一个电网侧转换器的情况下提供电力流的替代路径。在这次调查中,风电场基于固定速度的风力发电机,而转换器使用通用桥将转换器建模为中性点夹紧转换器。调查在Matlab / Simulink中进行。

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