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Switched-capacitor converter for PV modules under partial shading and mismatch conditions

机译:在部分遮光和失配条件下用于光伏模块的开关电容器转换器

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摘要

Partial shading and mismatch among the Photovoltaic (PV) modules is an important issue, which decreases the harvested power from the PV modules, and causes an efficiency problem for renewable energy systems. Several power electronics topologies that allow charge redistribution between the PV modules, have been proposed to balance PV modules which are connected in series. Differential Power Processing (DPP) is a technique which improves the overall efficiency of the power balance system by processing only a fraction of the module power. In this study, the power loss analysis of the switched-capacitor (SC) converter, which is configured in ladder architecture with the PV sub-modules for power balancing purpose, is derived and verified by simulation and experimental works. The proposed loss model predicts the percentage of power loss of the SC converter working under arbitrary partial shading conditions. Switched-Capacitor converter prototype was built and tested using a 140 W photovoltaic module. It is found that for 0–25% overall partial shading the overall efficiency remains above 98%. The experimentally obtained loss is in reasonable agreement with its theoretical counterpart.
机译:光伏(PV)模块之间的部分阴影和不匹配是一个重要问题,这会降低从PV模块收集的功率,并导致可再生能源系统的效率问题。已经提出了几种允许在PV模块之间进行电荷重新分配的功率电子拓扑,以平衡串联连接的PV模块。差分功率处理(DPP)是一项仅处理模块功率的一小部分,即可提高功率平衡系统整体效率的技术。在这项研究中,通过模拟和实验工作推导并验证了开关电容器(SC)转换器的功率损耗分析,该电容器以梯形结构配置,带有PV子模块,用于功率平衡。所提出的损耗模型预测了在任意局部阴影条件下工作的SC转换器的功率损耗百分比。使用140-W光伏模块构建并测试了开关电容器转换器原型。结果发现,对于0%到25%的整体局部阴影,整体效率保持在98%以上。实验获得的损失与理论上的损失在合理的范围内。

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