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Analysis of initial stabilization of cell efficiency in amorphous silicon photovoltaic modules under real outdoor conditions

机译:实际室外条件下非晶硅光伏组件中电池效率的初始稳定性分析

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This contribution presents a field study in which the initial stabilization of thin-film amorphous silicon (a-Si:H) is investigated. Two grid-connected a-Si:H photovoltaic plants have been monitored and analyzed under real outdoor conditions. A per-unit approach is proposed to compare PV plants with differences in their electrical characteristic and the start-up date. The representation of a normalized per unit PV power versus the accumulated incoming irradiation reveals an evolution that can be characterized through an exposure-response function. By this function, two populations of defects in the cells are detected. It is found that the stabilization process in the first year of operation produces a decrease of 10% in the peak power, equivalent to a decrease of 0.5% in cell efficiency. The use of the accumulated PSH for conducting the analysis of the initial stabilization produces similarities that cannot be obtained if a time scale is used. These results provide a powerful tool for PV plant designers because they enable a prediction to be made of the time-scale stabilization response in terms of unitary power, correlated with the peak sun hours received. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这一贡献提出了一项现场研究,其中研究了薄膜非晶硅(a-Si:H)的初始稳定性。在真实的室外条件下,对两个并网的a-Si:H光伏电站进行了监测和分析。提出了一种按单位的方法来比较光伏电站的电气特性和启动日期的差异。归一化的每单位PV功率与累积的入射辐射的关系表示可以通过曝光响应函数来表征的演变。通过此功能,可以检测出细胞中的两个缺陷群体。发现在运行的第一年的稳定过程中,峰值功率降低了10%,相当于电池效率降低了0.5%。如果使用时间标度,则使用累积的PSH进行初始稳定性分析会产生相似性。这些结果为光伏电站设计人员提供了强大的工具,因为它们使我们能够根据单位功率与接收到的峰值太阳小时相关的时间尺度稳定响应做出预测。 (C)2017 Elsevier Ltd.保留所有权利。

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