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DFIG-based offshore wind power plant connected to a single VSC-HVDC operated at variable frequency: Energy yield assessment

机译:基于DFIG的海上风力发电厂连接到以可变频率运行的单个VSC-HVDC:发电量评估

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The existence of HVDC (High Voltage Direct Current) transmission systems for remote offshore wind power plants allows devising novel wind plant concepts, which do not need to be synchronized with the main AC grid. This paper proposes an OWPP (offshore wind power plant) design based on variable speed wind turbines driven by DFIGs (doubly fed induction generators) with reduced power electronic converters connected to a single VSC-HVDC converter which operates at variable frequency and voltage within the collection grid. It is aimed to evaluate the influence of the power converter size and wind speed variability within the WPP on energy yield efficiency, as well as to develop a coordinated control between the VSC-HVDC converter and the individual back-to-back reduced power converters of each DFIG-based wind turbine in order to provide control capability for the wind power plant at a reduced cost. To maximise wind power generation by the OWPP, an optimum electrical frequency search algorithm for the VSC-HVDC converter is proposed. Both central wind power plant control level and local wind turbine control level are presented and the performance of the system is validated by means of simulations using MA'FLAB/Simulink (R). (C) 2015 Elsevier Ltd. All rights reserved.
机译:用于偏远海上风力发电厂的HVDC(高压直流电)传输系统的存在允许设计新颖的风力发电厂概念,而无需与主交流电网同步。本文提出了一种OWPP(海上风力发电厂)设计,该设计基于由DFIG(双馈感应发电机)驱动的变速风力涡轮机,其降功率电子转换器连接到单个VSC-HVDC转换器,该转换器在集合中以可变频率和电压运行网格。目的是评估WPP中功率转换器尺寸和风速变化对能量产生效率的影响,以及在VSC-HVDC转换器和单个背靠背降压功率转换器之间建立协调控制。每个基于DFIG的风力涡轮机,以降低的成本为风力发电厂提供控制功能。为了通过OWPP最大化风力发电,提出了一种用于VSC-HVDC转换器的最佳电频率搜索算法。介绍了中央风力发电厂的控制水平和本地风力发电机的控制水平,并通过使用MA'FLAB / Simulink(R)进行的仿真验证了系统的性能。 (C)2015 Elsevier Ltd.保留所有权利。

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