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Advantages and challenges of DC microgrid for commercial building a case study from Xiamen university DC microgrid

机译:厦门大学DC微普林DC微电网的优势和挑战。

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This paper discussed the advantages and challenges of DC microgrid for commercial building. The data obtained from the DC microgrid constructed at Xiamen University shows that DC microgrid with rooftop solar system is an efficient way to power varies DC loads inside the building. The capacity of the solar system on the rooftop normally will be enough to power the LED light loads in commercial buildings, even for high rise buildings. In order to power heavy loads such as air conditioning and EV charging stations, extra power are required, which can be obtained from the BIPV on the sidewall, glass window, or adjacent parking lots. To ensure the stable bus voltage and continuous operation of the DC microgrid, a suitable energy storage unit and two way AC/DC invertors are needed. Therefore we believe to use the solar power only for the matched DC loads, and keep existing AC power in the building to power the rest loads (or an AC and DC hybrid microgrid) maybe a more viable solution. The economical analysis shows that installation cost of a DC microgrid system is about $2.2/W, which is becoming a marketable technology.
机译:本文讨论了DC微电网对商业建筑的优缺点。从厦门大学建造的DC微电网中获得的数据表明,具有屋顶太阳系的DC微电网是一种有效的电力方式,在建筑物内部的电力变化。即使对于高层建筑,屋顶上的太阳能系统在屋顶上的容量通常足以为商业建筑中的LED光负载供电。为了输电诸如空调和EV充电站的重负载,需要额外的功率,可以从侧壁,玻璃窗或相邻停车场的BIPV获得。为确保直流微电网的稳定总线电压和连续操作,需要合适的能量存储单元和两种方式AC / DC逆变器。因此,我们相信仅针对匹配的直流负载使用太阳能电力,并将建筑物中的现有交流电源保持在剩余负载(或AC和DC混合微电网)中,可能是一个更加可行的解决方案。经济学分析表明,直流微电网系统的安装成本约为2.2 /倍,成为可款待的技术。

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