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Coordinated Control Strategies of VSC-HVDC-Based Wind Power Systems for Low Voltage Ride Through

机译:基于VSC-HVDC的低压穿越风力发电系统的协调控制策略

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The Voltage Source Converter-HVDC (VSC-HVDC) system applied to wind power generation can solve large scale wind farm grid-connection and long distance transmission problems. However, the low voltage ride through (LVRT) of the VSC-HVDC connected wind farm is a key technology issue that must be solved, and it is currently lacking an economic and effective solution. In this paper, a LVRT coordinated control strategy is proposed for the VSC-HVDC-based wind power system. In this strategy, the operation and control of VSC-HVDC and wind farm during the grid fault period is improved. The VSC-HVDC system not only provides reactive power support to the grid, but also effectively maintains the power balance and DC voltage stability by reducing wind-farm power output, without increasing the equipment investment. Correspondingly, to eliminate the influence on permanent magnet synchronous generator (PMSG)-based wind turbine (WT) systems, a hierarchical control strategy is designed. The speed and validity of the proposed LVRT coordinated control strategy and hierarchical control strategy were verified by MATLAB/Simulink simulations.
机译:应用于风力发电的电压源转换器-HVDC(VSC-HVDC)系统可以解决大规模风电场并网和远距离传输问题。然而,VSC-HVDC连接的风电场的低压穿越(LVRT)是必须解决的关键技术问题,目前还缺乏经济有效的解决方案。本文针对基于VSC-HVDC的风力发电系统提出了LVRT协调控制策略。该策略改善了电网故障期间VSC-HVDC和风电场的运行和控制。 VSC-HVDC系统不仅为电网提供无功功率支持,而且还通过减少风电场的功率输出来有效地维持功率平衡和直流电压稳定性,而无需增加设备投资。相应地,为了消除对基于永磁同步发电机(PMSG)的风力涡轮机(WT)系统的影响,设计了分级控制策略。通过MATLAB / Simulink仿真验证了所提出的LVRT协调控制策略和分层控制策略的速度和有效性。

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