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Maximizing benefits of batteries in residential grid-connected PV-plants subject to partial shading

机译:在部分遮挡的住宅并网光伏电站中最大限度地利用电池的优势

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In this paper, a proposal for optimizing the utilization of batteries within grid-connected PV-plants is introduced and discussed. Batteries are utilized for obtaining both the conventional energy storage task and the maximum power generation of a PV-module operating under partial shading conditions. In practice, as an alternative to the conventional way of utilizing batteries as a centralized storage-bank, we propose to utilize batteries in a distributed framework in the form of “micro” battery-packs. By this way, the aforesaid micro battery-packs, if properly designed, can be utilized directly within circuitries of low-power (and low-voltage) boost-type DC/DC converters, to be profitably utilized in turn as high efficiency distributed MPPTs, so obtaining the maximization of the power generated by a PV-plant, also in presence of significant partial shading phenomena (or other mismatches among different series-connected PV-cells). Experimental and numerical data are presented, analyzed and discussed.
机译:在本文中,介绍并讨论了优化并网光伏电站中电池利用率的建议。电池用于获得常规的能量存储任务和在部分遮蔽条件下运行的PV模块的最大发电量。在实践中,作为将电池用作集中式存储库的常规方法的替代方法,我们建议在分布式框架中以“微型”电池组的形式使用电池。通过这种方式,如果设计合理,上述微型电池组可直接用于低功率(和低压)升压型DC / DC转换器的电路中,进而可作为高效分布式MPPT获利使用。因此,即使在存在明显的局部阴影现象(或不同串联PV电池之间的其他不匹配)的情况下,也要获得PV装置产生的最大功率。实验,数值数据进行了介绍,分析和讨论。

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