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Control Strategies for AC Fault Ride Through in Multiterminal HVDC Grids

机译:多端HVDC电网中交流故障穿越的控制策略

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摘要

A fully operational multiterminal dc (MTDC) grid will play a strategic role for mainland ac systems interconnection and to integrate offshore wind farms. The importance of such infrastructure requires its compliance with fault ride through (FRT) capability in case of mainland ac faults. In order to provide FRT capability in MTDC grids, communication-free advanced control functionalities exploiting a set of local control rules at the converter stations and wind turbines are identified. The proposed control functionalities are responsible for mitigating the dc voltage rise effect resulting from the reduction of active power injection into onshore ac systems during grid faults. The proposed strategies envision a fast control of the wind turbine active power output as a function of the dc grid voltage rise and constitute alternative options in order to avoid the use of classical solutions based on the installation of chopper resistors in the MTDC grid. The feasibility and robustness of the proposed strategies are demonstrated and discussed in the paper under different circumstances.
机译:全面运行的多端子直流(MTDC)电网将为大陆交流系统互连和整合海上风电场发挥战略作用。这种基础设施的重要性要求其在发生大陆交流故障时必须遵守故障穿越(FRT)功能。为了在MTDC电网中提供FRT功能,需要识别出无通讯的高级控制功能,这些功能利用了换流站和风力发电机组的一组本地控制规则。所提出的控制功能可减轻由于电网故障期间向陆上交流系统注入有功功率而导致的直流电压上升效应。所提出的策略设想了根据直流电网电压升高快速控制风力涡轮机有功功率并构成替代方案,以避免基于在MTDC电网中安装斩波电阻的经典解决方案。本文在不同情况下证明并讨论了所提出策略的可行性和鲁棒性。

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