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Influence on transmission line relay protection under DFIG-based wind farm intergration

机译:基于DFIG的风电场集成下传输线继电保护的影响

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In conventional wind farm outgoing line protections, the fault characteristics of wind farms have been rarely considered and thus the protections may mal-operate or refusal-operation due to the integration of large-scale wind power. This paper analyzes fault characteristics of the outgoing transmission line from a DFIG-based wind farm with LVRT capability and indicates that the main frequency component of the wind farm side short-circuit current varies with the speed of wind turbine generators, while the main frequency component of the wind farm side bus voltage still maintains the power frequency during a non-bolted-three-phase fault in the outgoing transmission line. Performances of directional protection based on the positive sequence voltage and current power frequency, the distance element using the power frequency voltage current ratio to measure fault distance, and the fault-type element which uses the sequence current or phase current differential mutation quantity are affected severely, while zero sequence current protection is affected to some degrees. Performances of those two algorithms are analyzed and compared on the PSCAD/EMTDC platform.
机译:在传统的风电场拨出线路保护中,风电场的故障特性很少考虑,因此由于大规模风电的整合,保护可能与拒绝运行。本文用LVRT能力分析了从基于DFIG的风电场输送线的故障特性,并表示风电场侧短路电流的主频率分量随着风力涡轮机发生器的速度而变化,而主频率分量风电场侧总线电压仍然在输出传输线中的非螺栓三相故障期间保持功率频率。基于正序列电压和电流功率频率的方向保护性能,距离元件使用功率频率电压电流比测量故障距离,以及使用序列电流或相电流差异突变量的故障型元件受到严重影响,零序电流保护受到一些程度的影响。分析了这两种算法的性能并在PSCAD / EMTDC平台上进行了比较。

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