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Assessment of DG Effect on a Protection Scheme considering High Impedance Faults

机译:考虑高阻​​抗断裂的保护方案对DG影响的评估

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This paper presents the effect of Distributed Generation (DG) implementation on the protection scheme coordination of an IEEE 13-nodes test feeder. DG integration, simulated in OpenDSS, includes scenarios with different locations, penetration and spread levels. Single-phase High Impedance Faults (HIF) are used for testing the scheme response. Reactions are presented in the protection devices, such as Trips ahead and Unexecuted trips, due to the Loss of Coordination (LOC) and of the device sensibility. As the priority is the customers safety, it is appointed that Unexecuted trip is the least desired reaction. Scenarios with highest penetration level show the most inadequate behavior, although scenarios with few Distribution Energy Resources (DERs) located close to the main line have the best performance. In addition, it is concluded that nodes with reclosers are not a desired location to position a DER, similarly to the network external nodes.
机译:本文提出了分布式发电(DG)实施对IEEE 13节点测试馈线的保护方案协调的影响。 DG集成在开放中模拟,包括具有不同位置,渗透和扩展水平的场景。单相高阻抗故障(HIF)用于测试方案响应。由于协调(LOC)的损失和设备感性,因此在保护装置中提出反应,例如前方的跳闸和未执行的旅行。随着优先级的是客户的安全,它被任命为未安全的行程是最不期望的反应。具有最高渗透水平的场景显示出最不充分的行为,尽管具有近距离主线的分销能源(DER)的场景具有最佳性能。此外,得出结论,具有重新选择器的节点不是将DER定位的所需位置,类似于网络外部节点。

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