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PV System With Reconnection to Improve Output Under Nonuniform Illumination

机译:光伏系统重新连接以提高照明不均匀时的输出

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摘要

Photovoltaic (PV) systems are often nonuniformly illuminated owing to shadows of neighboring buildings, trees, clouds, etc. In order to reduce the effect of shadows on solar panels, we propose the concept of a PV system with reconnection; this system consists of PV arrays that can be reconnected to minimize the mismatch loss, depending on the output of each of its module, measured at regular time intervals. In this study, the relationship between the output improvement with reconnection and the switching interval is shown. For a 3-kW PV system, under conditions of cloudlessness and cloudiness, a sharp difference in the output improvement relative to the switching interval is not observed. However, under the condition of shading, the output improvement sharply decreases relative to the switching interval; the output improvement at a 1-min switching interval is 0.15 kWh·h (+22.4%). For the 90-kW building-integrated photovoltaic system, during the summer solstice, a sharp difference in the output improvement relative to the switching interval is not observed. However, during the vernal equinox and winter solstice, when a large area of the PV system is shaded for a long period of time, the output improvement sharply decreases relative to the switching interval. The output improvement at a 1-min switching interval is 6.5 kWh·d (+2.9%) during the vernal equinox and 2.3 kWh·d (+3.7%) during winter solstice.
机译:由于相邻建筑物,树木,云层等的阴影,光伏(PV)系统通常会受到不均匀的照明。为了减少阴影对太阳能电池板的影响,我们提出了具有重新连接的PV系统的概念。该系统由可重新连接的PV阵列组成,以最大程度地减少失配损耗,具体取决于每个模块的输出(以固定的时间间隔测量)。在这项研究中,显示了重新连接的输出改善与切换间隔之间的关系。对于3 kW光伏系统,在无云和无云的条件下,相对于切换间隔,没有观察到输出改善的明显差异。但是,在阴影条件下,输出改善相对于切换间隔急剧下降。在1分钟的切换间隔内,输出改善为0.15 kWh·h(+ 22.4%)。对于90 kW的建筑物集成光伏系统,在夏至期间,未观察到相对于切换间隔的输出改善的明显差异。然而,在春分和冬至期间,当光伏系统的大面积长时间被遮挡时,输出改善相对于切换间隔急剧下降。在春分时,每1分钟切换间隔的输出改进为6.5 kWh·d(+ 2.9%),在冬至期间为2.3 kWh·d(+ 3.7%)。

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