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Grid behavior under fault situations in ±380 VDC distribution systems

机译:±380 VDC配电系统在故障情况下的电网行为

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DC microgrids have become widely adapted in recent years, with 380 V being the most common voltage choice in applications like data centers and central offices around the world. For future developments with an increasing power demand, adding a second line conductor to a DC microgrid can provide means to increase overall energy efficiency. This paper evaluates fault situations in such a bipolar ±380 V DC microgrid containing only power electronic devices, thereby providing only low fault energy. Two basic grounding methods for bipolar grids and their consequences on grid safety and fault behavior are examined. Initially, exemplary fault situations are simulated. The results are then discussed and verified by setting up a test grid in the laboratory.
机译:近年来,DC微电网已得到广泛应用,其中380 V是世界各地数据中心和中央办公室等应用中最常见的电压选择。对于功率需求不断增长的未来发展,在直流微电网中增加第二条导线可以提供提高整体能效的手段。本文评估了仅包含电力电子设备的双极性±380 V DC微电网中的故障情况,从而仅提供了较低的故障能量。研究了双极电网的两种基本接地方法及其对电网安全和故障行为的影响。最初,模拟示例性故障情况。然后,通过在实验室中建立测试网格来讨论和验证结果。

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