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SPECTRAL SENSITIVITY ANALYSES OF TANDEM MODULES USING STANDARD FLASHER AND DYNAMIC LED BACKLIGHT

机译:基于标准柔光和动态LED背光的串联模块的光谱灵敏度分析

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As the solar spectra are changing during the day, seasons and weather conditions, the accurate annualenergy rating has to be based not only on the nominal power at Standard Test Conditions STC but also on thesensitivity of power versus spectrum. The aim of the work is to measure the spectral sensitivity of tandem moduleswithin the current/voltage scan. A standard industrial flasher was used to measure amorphous / microcrystalline (a-Si/uc-Si) tandem modules. This system was equipped with a special developed dynamic LED backlight at ZHAW.Test samples were analyzed using different shapes of dynamic backlight superposing the standard flasher STCspectra. The change of the LED backlight in the millisecond regime according to triangular, rectangular andsinusoidal shapes were applied. The analyzes were manly performed on a-Si/uc-Si tandem modules (1.1m x 1.3m). Atriangle backlight characteristic was applied, increasing the IR LED light from 0% to 7% of ISC of the crystallineSilicon reference cell. Immediately after that period of 1.25ms, the IR LEDs are turned off and the blue LED decayfrom again 7% of ISC to 0% remaining on top of the STC spectra. This analysis shows significantly different spectralsensitivity at this specific time of changing from IR to blue. On the one hand the current of the module at maximumpower point (MPP) changes proportionally with the IR intensity increase. On the other hand the tandem module’sshort circuit current shows no significant changes at the same IR intensity variation. The same method of analyzes areapplied to a-Si/uc-Si tandem modules operating during 4 months and 34 months respectively, under real outdoorconditions. It is evident that this outdoor degraded modules show only marginal changes of the module current atMPP for the same increase of this dynamic IR LED backlight. Thus, a method together with the setup is presentedand confirmed to measure the state of degradation of this kind of tandem module during the flasher period of a fewmilliseconds. The use of the presented dynamic LED backlight has the potential, in the industrial module productionprocess, to improve the output of a standard STC flash during several milliseconds by providing information aboutthe current matching of top and bottom tandem cells on a module scale.
机译:随着太阳光谱在白天,季节和天气条件下的变化,准确的年度 能量额定值不仅必须基于标准测试条件STC的标称功率,而且还必须基于 功率对频谱的灵敏度。工作的目的是测量串联模块的光谱灵敏度 在电流/电压扫描范围内。使用标准的工业闪光器来测量非晶/微晶(a- Si / uc-Si)串联模块。该系统在ZHAW配备了专门开发的动态LED背光。 使用叠加有标准闪光器STC的不同形状的动态背光来分析测试样品 光谱。根据三角形,矩形和矩形,LED背光在毫秒范围内的变化 使用正弦曲线形状。分析是在a-Si / uc-Si串联模块(1.1m x 1.3m)上手动进行的。一种 应用了三角形背光特性,使IR LED的光从晶体的ISC的0%增加到7% 硅参比电池。在1.25ms的时间之后,立即关闭IR LED,并且蓝色LED衰减 从ISC的7%再次上升到STC光谱之上的0%。该分析表明光谱差异很大 从IR变为蓝色的特定时间的灵敏度。一方面,模块的电流最大 功率点(MPP)随IR强度的增加成比例地变化。另一方面,串联模块的 短路电流在相同的IR强度变化下没有显着变化。相同的分析方法是 适用于在真实室外条件下分别工作4个月和34个月的a-Si / uc-Si串联模块 情况。显然,这种室外退化的模块仅显示了模块电流在 MPP同样增加了这种动态IR LED背光。因此,提出了一种与设置一起的方法 并确认在几次闪光期间测量这种串联模块的退化状态 毫秒。提出的动态LED背光的使用在工业模块生产中具有潜力 过程,通过提供有关以下内容的信息来在几毫秒内改善标准STC闪光灯的输出 模块规模上的顶部和底部串联单元的当前匹配。

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