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Back-to-back converter control of grid-connected wind turbine to mitigate voltage drop caused by faults

机译:并网逆变器控制并网风力发电机,以减轻故障引起的压降

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Power electronic converters enable wind turbines, operating at variable speed, to generate electricity more efficiently. Among variable speed operating turbine generators, permanent magnetic synchronous generator (PMSG) has got more attentions due to low cost and maintenance requirements. In addition, the converter in a wind turbine with PMSG decouples the turbine from the power grid, which favors them for grid codes. In this paper, the performance of back-to-back (B2B) converter control of a wind turbine system with PMSG is investigated on a faulty grid. The switching strategy of the grid side converter is designed to improve voltage drop caused by the fault in the grid while maximum available active power of wind turbine system is injected to the grid and the DC link voltage in the converter is regulated. The methodology of the converter control is elaborated in details and its performance on a sample faulty grid is assessed through simulation.
机译:功率电子转换器使以可变速度运行的风力涡轮机能够更高效地发电。在变速运行的涡轮发电机中,永磁同步发电机(PMSG)由于成本低廉和维护要求而受到更多关注。另外,具有PMSG的风力涡轮机中的转换器将涡轮机与电网解耦,这有利于它们获得电网代码。本文在故障电网上研究了带有PMSG的风力发电系统的背靠背(B2B)变流器控制性能。电网侧变流器的开关策略旨在改善由电网故障引起的电压降,同时将风力涡轮机系统的最大可用有功功率注入电网并调节变流器中的直流母线电压。详细阐述了变流器控制的方法,并通过仿真评估了其在故障样本网格上的性能。

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