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Hybrid passive and communications-based methods for islanding detection in medium and low voltage smart grids

机译:中,低压智能电网中基于无源和基于通信的混合孤岛检测方法

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Islanding condition takes place when a distributed generator (DG) continues to power a part of the grid even if power from electric utility is no longer present. Adverse effects of islanding are power quality deterioration, grid-protection interference, equipment damage, and personnel safety hazards. For these reasons, DG systems must detect an islanding condition and immediately disconnect from the grid (anti-islanding protection). This paper proposes an hybrid solution, for both low voltage (LV) and medium voltage (MV) applications, which makes use of passive and communication-based methods for islanding detection. Among the existing communication technologies, the study is focused on power line communications (PLCs). An interface device for DGs is presented, which implements the proposed method. An analysis of the proposed solution is carried out and its feasibility is showed, by means of simulation and experimental results.
机译:当分布式发电机(DG)继续为部分电网供电时,即使不再有来自电力公司的电力,也会发生孤岛状态。孤岛的不利影响是电能质量下降,电网保护干扰,设备损坏和人员安全隐患。由于这些原因,DG系统必须检测到孤岛情况并立即从电网断开连接(防孤岛保护)。本文提出了一种针对低压(LV)和中压(MV)应用的混合解决方案,该解决方案利用无源和基于通信的方法进行孤岛检测。在现有的通信技术中,该研究集中于电力线通信(PLC)。提出了一种用于DG的接口设备,该接口设备实现了所提出的方法。通过仿真和实验结果对所提出的解决方案进行了分析,并证明了其可行性。

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