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Smart DC micro-grid for efficient utilization of distributed renewable energy

机译:智能直流微电网可有效利用分布式可再生能源

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A new, smart distributed DC micro-grid suitable for high-penetration and that efficiently utilizes energy available from distributed, renewable generators is described. It is shown that energy saving in excess of 10% is feasible using the proposed DC power distribution system when compared to the current approach where inverters are used. This conclusion is substantiated by first-order calculations of a 50 kW solar photovoltaics (PV) array delivering power to DC-compatible electrical loads typically present in a household and/or commercial building. Further energy saving may be achieved by replacing state-of-the-art silicon-based DC-DC power converters with more-efficient emerging Gallium Nitride (GaN) FET converters at a reduced cost. The proposed DC micro-grid architecture is hybrid in nature and is easily scalable to other power levels. It is ideally suited for residential and commercial applications as well as for powering sustainable communities.
机译:描述了一种适用于高渗透率的新型智能分布式直流微电网,该微电网有效利用了分布式可再生发电机的可用能量。结果表明,与使用逆变器的当前方法相比,使用建议的DC配电系统可以节省超过10%的能源。通过对50 kW太阳能光伏(PV)阵列进行一阶计算来证实这一结论,该阵列可为通常存在于家庭和/或商业建筑中的与DC兼容的电负载供电。通过以更低的成本用更高效的新兴氮化镓(GaN)FET转换器代替最新的基于硅的DC-DC电源转换器,可以进一步节省能源。提出的直流微电网架构本质上是混合的,并且可以轻松扩展到其他功率级别。它非常适合住宅和商业应用以及为可持续社区提供动力。

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