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Dynamic System Performance Analysis of a Novel Grid Connection Topology for Offshore Wind Farms using MMC-HVDC Transmission

机译:使用MMC-HVDC传输的新型海上风电场并网拓扑动态系统性能分析

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Large amounts of offshore wind energy are planned by the Dutch government for the next years. The power system will continue to evolve to integrate these new sources of green power efficiently. The dynamic system performance of a grid topology with transmission capacity above 1 GW connecting offshore wind farms (OWFs) at distances close to 100 km in a standardized and modular manner is the focus of this paper. An electromagnetic transient (EMT) model was built in PSCAD in which OWFs are connected with 66 kV cables to a centralized offshore platform and a transmission link with a capacity of 1050 MW. The connection to the onshore transmission network is through a high voltage direct current (HVDC) link that uses a modular multilevel converter (MMC) topology. A dynamic performance analysis with several expected operational cases is done to obtain a complete overview and understanding of the system.
机译:荷兰政府计划在未来几年内大量使用海上风能。电力系统将继续发展,以有效地整合这些新的绿色能源。本文的重点是传输容量大于1 GW的网格拓扑的动态系统性能,该网格拓扑以标准化和模块化的方式连接距离近100 km的海上风电场(OWF)。在PSCAD中构建了电磁瞬变(EMT)模型,其中OWF用66 kV电缆连接到集中式海上平台和容量为1050 MW的传输链路。通过使用模块化多电平转换器(MMC)拓扑结构的高压直流(HVDC)链路,可以连接到陆上传输网络。进行了具有几个预期操作案例的动态性能分析,以获得对系统的完整概述和理解。

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