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Quantitative analysis of degradation mechanisms in 30-year-old PV modules

机译:30岁的PV模块中降解机制的定量分析

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摘要

Quantitative analysis of two 30-year-old PV modules is performed by a combination of the equivalent-circuit model and optoelectronic characterization methods. The two modules under analysis were manufactured in 1984 with the nameplate power of 41.0 W, but degraded under two different conditions; one was operated in the field in Northern California for about 30 years, and the other was stored in a warehouse for the same period. The power outputs of the two modules measured in 2016 are as 28.4W for the field-exposed one and 35.9 W for the warehoused one. We further break down this power difference of 7.5 W +/- 0.3 W to specific physical mechanisms. Through the encapsulant transmittance measurements and the circuit modeling of module I-V curves, the power degradation due to encapsulant discoloration is found as 59% +/- 4% of the total difference. With the bias-dependent electroluminescence imaging and the dark I-V measurement of solar cells (via the additionally-attached probe wires), the series-resistance increase is attributed to 33% +/- 1%, with the split of 13% +/- 4% due to interconnection resistance and 20% +/- 4% due to cell resistance. In addition, the synergistic effect of all the physical mechanisms makes up the remaining 8% +/- 4%. This case study presents an example of analyzing multiple degradation mechanisms of the PV modules. With more characterization data being collected for today's modules, the same analysis framework can be broadly applied, yield great insights module power degradation attributed to multiple loss mechanisms.
机译:通过等效电路模型和光电子表征方法的组合来执行两个30岁的PV模块的定量分析。在1984年制造的两种模块,铭牌功率为41.0W,但在两个不同的条件下降解;一个人在北加州北部的领域运作了大约30年,另一个人储存在同一时期的仓库中。用于2016年测量的两个模块的功率输出为仓储1和35.9 W为28.4W。我们进一步分解了7.5 W +/- 0.3 W的这种功率差异到特定的物理机制。通过密封透射率测量和模块I-V曲线的电路建模,发现封装变色引起的功率劣化是总差异的59%+/- 4%。随着偏见的电致发光成像和太阳能电池的暗IV测量(通过附加附加的探针线),串联电阻增加归因于33%+/- 1%,分裂为13%+/-由于电池电阻,由于互连电阻和20%+/- 4%,4%。此外,所有物理机制的协同效应均占8%+/- 4%。本案例研究提出了分析光伏模块的多种劣化机制的示例。对于当今模块收集的更多特征数据,可以广泛应用相同的分析框架,产生符合多重损耗机制的良好见解模块功率劣化。

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