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Mal-operation risk assessment for the feeder overcurrent protection in large-scale clustering wind farms

机译:大型集群风电场馈线过电流保护误动风险评估

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Conventionally, the Doubly-fed Induction Generator (DFIG) has no impacts on the arrangement and the setting of the feeder overcurrent protection in the large-scale, concentrated-wind farm, since the DFIG has long been regarded as a normal load under the fault conditions. As a result, existing overcurrent protection equipped on a sound feeder may mal-operate when a fault occurs on adjacent feeders, if the DFIG feeding current on the corresponding sound feeder is high enough. To prevent this, further investigation is thereby undertaken in this paper. The characteristics of the DFIG feeding current is analyzed under various fault conditions in the first place. Secondly, the feeder overcurrent protection is set according to currently-applied principles, based on which the corresponding mal-operation zone and the mal-operation risk are calculated under different system operation conditions. It can be deduced from the results that a reasonable DFIG crowbar resistance value and an optimized wind farm arrangement can be of positive effect to limit the mal-operation risk. Directional element must be configured for the existing protection if above countermeasures are not available and the mal-operation risk still exists. (C) 2015 Elsevier Ltd. All rights reserved.
机译:传统上,双馈感应发电机(DFIG)对大型集中风电场的馈线过电流保护的设置和设置没有影响,因为DFIG长期以来一直被视为故障下的正常负载条件。结果,如果在相应的馈线上的DFIG馈电电流足够高,则当相邻馈线上发生故障时,在馈线上安装的现有过电流保护可能会失灵。为了防止这种情况,本文进行了进一步的研究。首先,在各种故障条件下分析DFIG馈电电流的特性。其次,根据当前应用的原则设置馈线过电流保护,在此基础上,计算出在不同系统运行条件下相应的误动作区域和误动作风险。从结果可以得出,合理的DFIG撬杠电阻值和优化的风电场布置对限制误操作风险具有积极作用。如果没有上述对策,并且仍然存在误操作风险,则必须为现有保护配置方向性元件。 (C)2015 Elsevier Ltd.保留所有权利。

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