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Ride-Through and Grid Support of the DFIG based Wind Farm During Asymmetrical Faults

机译:非对称故障乘坐基于DFIG的风电场的网格支持

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Grid codes require wind farm to ride through disturbances such as faults and support the grid during such events. Doubly fed induction generator (DFIG) based wind farm with conventional design has limited capability to ride through severe asymmetrical faults due to low capacity of the rotor-side-converter (RSC). DFIG wind turbine with series grid-side converter (SGSC) can help to extend the operation areas during the fault and satisfy the future grid codes. This paper addresses the capacity design and coordinating control scheme of the SGSC-DFIG based wind farm to ride through the severe asymmetrical fault and support the power grid. Considering the control capability of the RSC and the requirements of the present grid code, the SGSC capacity can be minimized if it is employed to compensate part of the negative-sequence grid voltages. By coordinating the control of SGSC and the DFIG, the positive-and negative-sequence reactive current can be carefully regulated to support the grid and satisfy the code requirements. At the same time, the torsional oscillation of the generator shaft can be mitigated by the negative current control. Simulation results verify the effectiveness of the design and scheme.
机译:网格代码要求风电场通过诸如故障等干扰来骑行,并在此类事件期间支持网格。具有传统设计的基于双馈馈送发电机(DFIG)的风电场具有由于转子侧转换器(RSC)的低容量而通过严重的不对称断层骑行的有限能力。 DFIG风力涡轮机与串联电网侧转换器(SGSC)可以帮助在故障期间扩展操作区域并满足未来的网格代码。本文介绍了SGSC-DFIG基风电场的容量设计和协调控制方案,通过严重的不对称故障骑行并支持电网。考虑到RSC的控制能力和本网格码的要求,如果采用它以补偿部分负序网格电压,则可以最小化SGSC容量。通过协调SGSC和DFIG的控制,可以仔细调节正负序列的反应电流以支持网格并满足代码要求。同时,可以通过负电流控制来减轻发电机轴的扭转振荡。仿真结果验证了设计和方案的有效性。

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