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Spectral modeling and spectral impacts on the performance of mc-Si and new generation CdTe photovoltaics in warm and sunny climates

机译:在温暖和阳光明媚的气候下,光谱建模和光谱对mc-Si和新一代CdTe光伏性能的影响

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This paper presents an analysis of spectral impacts on me-Si and new generation CdTe in two distinct regions of Brazil: Florianopolis-SC (27 degrees S, 48 degrees W) in the South, and Assu-RN (5 degrees S, 37 degrees W) in the Northeast. As utility-scale PV power plants are progressively being deployed in the Brazilian Northeast, the need for evaluation of the spectral effects of local blue-biased spectra on the energy yield of different PV technologies arises, as well as the need for spectral correction of field peak-power measurements done during commissioning and system performance tests. Considering the high cost of adequate spectral measurement equipment, this paper proposes a new approach for the estimation of spectral impacts without the need for in loco measurements. The proposed methodology consists of the use of satellite data acquired from NASA's Giovanni platform as inputs for the SMARTS 2.9.5 spectra model. Results for measured spectra showed that, for both locations, new generation CdTe (i.e. First Solar Series 4 and 6) has significant spectral gains: up to 10% for Assu-RN (Northeastern Brazil) and 2% for Florianopolis-SC (Southern Brazil). A seasonal variation could also be detected for the Florianopolis site, with lower spectral gains for CdTe - and higher for mc-Si - close to the Southern Hemisphere's winter solstice, due to higher air mass values and lower precipitable water content of the atmosphere. The proposed method using Giovanni data and SMARTS spectra modeling produced very similar spectra to those measured for clear days in the field at both sites, yielding good results for the calculation of spectral factors for both mc-Si and CdTe. For days with a higher diffuse fraction the results were not as satisfactory, as expected. The proposed method was also applied to instantaneous measurements for three different times (and AM values) of the day for Florianopolis: 9:00, 12:00 and 15:00, yielding satisfactory results for IV curve spectral correction.
机译:本文介绍了对巴西两个不同地区对me-Si和新一代CdTe的光谱影响的分析:南部的Florianopolis-SC(南纬27度,48度)和Assu-RN(南纬5度,37度) W)在东北。随着在巴西东北部逐步部署公用事业规模的光伏电站,需要评估局部蓝偏光谱对不同光伏技术的能量产量的光谱效应,以及对现场光谱进行校正的需求在调试和系统性能测试期间完成峰值功率测量。考虑到适当的频谱测量设备的高昂成本,本文提出了一种无需进行机车测量即可估算频谱影响的新方法。拟议的方法包括使用从NASA的Giovanni平台获取的卫星数据作为SMARTS 2.9.5光谱模型的输入。测量光谱的结果表明,在两个位置上,新一代CdTe(即First Solar Series 4和6)均具有显着的光谱增益:Assu-RN(巴西东北部)高达10%,Florianopolis-SC(巴西南部)高达2% )。由于较高的空气质量值和较低的大气可降水量,在弗洛里亚诺波利斯地区也可能发现季节变化,CdTe的光谱增益较低,而mc-Si的光谱增益较高,接近南半球的冬至。所提出的使用乔凡尼数据和SMARTS光谱建模的方法所产生的光谱与在两个站点现场晴天所测得的光谱非常相似,为计算mc-Si和CdTe的光谱因子产生了良好的结果。对于扩散分数较高的日子,结果并不如预期的那样令人满意。所建议的方法还应用于弗洛里亚诺波利斯一天的三个不同时间(和AM值)的瞬时测量:9:00、12:00和15:00,为IV曲线光谱校正产生了令人满意的结果。

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