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An Adaptive Photovoltaic Topology to Overcome Shading Effect in PV Systems

机译:克服光伏系统中阴影效应的自适应光伏拓扑

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摘要

Shading in photovoltaic systems can cause many undesired effects. When shading occurs, the power generated from the PV system is much less than nominal power, increasing the electrical mismatching losses between PV system components. Active research to address this power loss focuses on static and adaptive systems. This paper addresses an adaptive system solution and proposes a new method to adaptively overcome losses due to shading during low radiation conditions. In addition, a statistical analysis for choosing the most feasible and efficient configuration for the system size is presented. The proposed system has been validated under shade conditions in a simulation and prototype experiment. The experiments are conducted using a PV system consisting of 10 PV modules located at the Petroleum Institute in the United Arab Emirates. The proposed system is shown to minimize the shading losses of the PV array in real time by an average of 100% under simulated conditions and 84% in practical experiments.
机译:光伏系统中的阴影可能会导致许多不良影响。发生阴影时,光伏系统产生的功率远小于标称功率,从而增加了光伏系统组件之间的电气失配损耗。解决这种功率损耗的积极研究集中在静态和自适应系统上。本文提出了一种自适应系统解决方案,并提出了一种新的方法来自适应克服在低辐射条件下由于遮光引起的损耗。此外,还提供了用于选择最可行,最有效的系统大小配置的统计分析。拟议的系统已经在阴影条件下的仿真和原型实验中得到了验证。使用位于阿拉伯联合酋长国石油学院的由10个光伏模块组成的光伏系统进行实验。所提出的系统显示出在模拟条件下实时将光伏阵列的阴影损失最小化,平均为100%,而在实际实验中为84%。

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