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Ground Fault Analysis and Grounding Design Considerations in DC Microgrids

机译:直流微电网接地故障分析及接地设计考虑因素

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Low voltage DC microgrids (DCMGs) are future power systems to meet the increasing energy demand and solve problems caused by conventional power systems. Although DCMGs have some clear advantages over AC microgrids, several DCMG issues are still open for study. DCMG system grounding is such an issue, and realizing a suitable grounding scheme would accelerate the integration of DCMGs to the utility network. To design suitable grounding and protection scheme for DCMGs, it is important to determine transient and steady state ground fault characteristics of the system. In this paper ground faults with different grounding configurations are simulated (PSCAD/EMTDC) and results are analyzed to identify grounding configurations and ground fault detection schemes, which enables reliable fault detection and uninterrupted supply to the loads.
机译:低压DC微电网(DCMGS)是未来的电力系统,以满足越来越多的能源需求,并解决传统电力系统引起的问题。虽然DCMGS与AC微电网具有一些明显的优势,但几个DCMG问题仍然开放研究。 DCMG系统接地是这样的问题,实现了合适的接地方案将加速DCMGS对公用事业网络的集成。为了为DCMG设计合适的接地和保护方案,重要的是确定系统的瞬态和稳态接地故障特性。在该造纸中,模拟了不同接地配置的接地故障(PSCAD / EMTDC),并分析了结果以识别接地配置和接地故障检测方案,可实现可靠的故障检测和对负载的供应。

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