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Adaptive Instantaneous Overcurrent Powered By Frequency Estimation: A case study using a real Brazilian system

机译:自适应瞬时过电流由频率估计提供动力:使用真正的巴西系统进行案例研究

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With increasing of distributed generation (DG) and smart grid applications, power protection system (PPS) have been passing for several challenges. Traditional relay coordination presents a relevant difficult to operate with DG plants. Modifications on short-circuits levels and current directionality may include miscoordinations on PPS. An alternative of traditional relay system is adaptive protective system (APS). APS provides an automatic update of relay setting ever when power grid have a modification. A large number of method may be used to identify these modification. In this paper a frequency estimation method was used to identify grid modification and flag to APS methods. To evaluate proposed method, a real Brazilian distribution system was used considering that only instantaneous overcurrent relay compose PPS. Obtainer results shown a efficacy on grid topology identification and same modification among obtained relay settings using APS architecture.
机译:随着分布式发电(DG)和智能电网应用的增加,电源保护系统(PPS)一直在发挥几个挑战。传统的继电器协调具有与DG植物一起操作的相关难度。对短路水平和当前方向性的修改可能包括PPS上的MiscoordInation。传统继电器系统的替代方案是自适应保护系统(APS)。当电网具有修改时,APS提供了一次自动更新继电器设置。可以使用大量方法来识别这些修改。在本文中,使用频率估计方法将网格修改和标志识别到APS方法。为了评估提出的方法,考虑到仅瞬时过电力继电器组成PPS的实际巴西分布系统。获取者结果显示了使用APS架构获得的RID拓扑识别和相同的修改。

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