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Irradiance adjustment system developed for various types of solar cells and illumination conditions

机译:针对各种类型的太阳能电池和照明条件开发的辐照度调节系统

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AbstractA new irradiance adjustment system for the light source named “Programmable Reference cell system for Irradiance adjustment by Spectral Measurement (PRISM)” has been developed for photovoltaics evaluation. It can be applied for various kinds of solar cells and illumination conditions without the preparation of conventional reference cells. This system consists of a device for absolute spectral responsivity measurements, that is, the spectral responsivity unit, and a device for irradiance adjustment of the light source, that is, the spectral reference cell. First, the short circuit current of the target solar cell (Iref) is calculated by convolution of the absolute spectral responsivity with the spectral irradiance under STC (AM1.5 G, 1 kW/m2, 25°C) as defined in IEC 60904-3. The spectral irradiance of the light source is then adjusted for I–V measurements so that the short-circuit current of the spectral reference cell (Ical), calculated by convolution of the absolute spectral responsivity with the spectral irradiance of the light source, agrees with Iref. The difference between Iref and the short circuit current, as determined at an internationally recognized test center under STC, was within ±2% for crystalline silicon solar cells and ±3% for organic solar cells. The difference between Ical and the short-circuit current measured under a solar simulator or LED in which the irradiance was adjusted by this system was within ±4% when the irradiance was higher than 4 W/m2.
机译:摘要已开发出一种新的光源辐照度调节系统,称为“用于光谱测量辐照度调节的可编程参考电池系统(PRISM)”,用于光伏评估。无需准备常规的参考电池,即可用于各种太阳能电池和照明条件。该系统由用于绝对光谱响应度测量的设备(即光谱响应度单元)和用于光源的辐照度调整的设备(即光谱参考单元)组成。首先,通过将绝对光谱响应度与STC(AM1.5G,1kW / m )下的光谱辐照度进行卷积来计算目标太阳能电池的短路电流(I ref ) 2 ,25°C),如IEC 60904-3所定义。然后调整光源的光谱辐照度以进行IV测量,以使光谱参考电池的短路电流(I cal )通过绝对光谱响应度与光谱的卷积计算得出光源的辐照度与I ref 一致。 I 和短路电流之间的差异(由国际认可的测试中心根据STC确定)对于晶体硅太阳能电池而言为±2%以内,对于有机太阳能电池而言为±3%以内。当辐照度高于4W / m < sup> 2

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