失配情况下基于门连接的光伏电池输出功率分析

Han Feng, M. Hou, Shiling Liu, Haozhi Wang
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引用次数: 2

摘要

解决光伏失配问题的传统方法是将二极管和光伏电池串联或并联进行电压和电流补偿。考虑到生产成本,每个光伏电池与一个旁路二极管平行是不现实的。一个旁路二极管可能与十几个或更多的太阳能电池平行。因此,并联光伏电池与旁路二极管的连接是非常重要的。本文提出当阴影覆盖部分组件时,传统的连接方式可能会降低整个光伏组件的输出功率。为了解决这一问题,提出了一种新的光伏电池连接方式,称为“门-连接”。本文分析了三种典型阴影情况下门机输出功率的特性。实验证明,与传统连接方式相比,新型连接方式能明显提高输出功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the photovoltaic cells output power based on the door-connection under mismatch
The traditional methods to solve the PV mismatch problem are using diodes and photovoltaic cells in series and in parallel to compensate voltage and current. Considering the cost of production, it is unrealistic that each photovoltaic cell parallels with one bypass diode. One bypass diode may parallels with dozen or more solar cells. Therefore, the connection of the photovoltaic cells in parallel with bypass diodes is very important. This paper proposes the traditional connection may reduce the whole PV modules output power when the shadow covers partial modules. A new photovoltaic cells connection, named "door-connection", is proposed to solve this problem. The paper analyses the characteristics of the door-connection output power in three typical shadow cases. It is proved that the new connection can improve the output power obviously compared with the traditional connection.
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