Daylight Photoluminescence Imaging: Quantitative Analysis of String Voltage Mismatch and Balancing Currents

IF 8 2区 材料科学 Q1 ENERGY & FUELS
Thorsten Trupke, Oliver Kunz, Juergen W. Weber
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引用次数: 0

Abstract

Large-scale daylight photoluminescence imaging of crystalline silicon solar panels in utility-scale solar farms, whereby luminescence images of several hundred to thousands of panels are acquired simultaneously, was demonstrated by our group recently. Here, we demonstrate that photoluminescence images of large solar farm sections that are connected to the same central inverter uniquely contain quantitative information about voltage mismatch between series-connected strings of modules resulting from voltage variations between groups of modules. These voltage variations cause significant balancing currents between module strings when no or only low power is extracted from the solar farm. The impact of these balancing currents on the luminescence intensity is discussed. An analytical model to correct daylight photoluminescence images for these balancing currents is proposed and validated using experimental data.

Abstract Image

日光光致发光成像:串电压失配和平衡电流的定量分析
在公用事业规模的太阳能发电场中,晶体硅太阳能电池板的大规模日光光致发光成像,同时获得数百到数千块电池板的发光图像,最近由我们的小组进行了演示。在这里,我们证明了连接到同一个中央逆变器的大型太阳能发电场部分的光致发光图像独特地包含了由模块组之间的电压变化导致的串联模块串之间电压不匹配的定量信息。当没有或仅从太阳能发电场提取低功率时,这些电压变化会在模块串之间产生显着的平衡电流。讨论了这些平衡电流对发光强度的影响。提出了一种校正这些平衡电流的光致发光图像的分析模型,并用实验数据进行了验证。
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来源期刊
Progress in Photovoltaics
Progress in Photovoltaics 工程技术-能源与燃料
CiteScore
18.10
自引率
7.50%
发文量
130
审稿时长
5.4 months
期刊介绍: Progress in Photovoltaics offers a prestigious forum for reporting advances in this rapidly developing technology, aiming to reach all interested professionals, researchers and energy policy-makers. The key criterion is that all papers submitted should report substantial “progress” in photovoltaics. Papers are encouraged that report substantial “progress” such as gains in independently certified solar cell efficiency, eligible for a new entry in the journal''s widely referenced Solar Cell Efficiency Tables. Examples of papers that will not be considered for publication are those that report development in materials without relation to data on cell performance, routine analysis, characterisation or modelling of cells or processing sequences, routine reports of system performance, improvements in electronic hardware design, or country programs, although invited papers may occasionally be solicited in these areas to capture accumulated “progress”.
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