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A self-calibrating led-based solar test platform

机译:一种自校准的基于led的太阳能测试平台

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摘要

A compact platform for testing solar cells is presented. The light source comprises a multi-wavelength high-power LED (light emitting diode) array allowing the homogenous illumination of small laboratory solar cell devices (substrate size 50 × 25 mm) within the 390–940 nm wavelength range. The spectrum can be synthesized by independent tuning of the 18 different wavelengths to mimic AM1.5G as well as various indoor lamp spectra. The intensity can be controlled with a 214-bit accuracy and intensities up to 3 suns are possible with an approximate AM1.5G spectral distribution. For several wavelengths intensities up to 10 suns is possible, and for a few wavelengths up to 30 suns can be reached. The setup is equipped with reference diodes and an optical fibre coupling enabling calibration, monitoring and control of the light impinging on the sample. Through a computer controlled interface, it is possible to perform all the commonly employed measurements on the solar cell at very high speed without moving the sample. In particular, the LED-based illumination system provides an alternative to light-biased incident photon-to-current efficiency measurement to be performed which we demonstrate. Both top and bottom contact is possible and the atmosphere can be controlled around the sample during measurements. The setup was developed for the field of polymer and organic solar cells with particular emphasis on enabling different laboratories to perform measurements in the same manner and obtain a common basis for comparing data. The use of the platform is demonstrated using a standard P3HT:PCBM polymer solar cell but is generally applicable to any solar cell technology with a spectral response in the 390–950 nm region. Copyright © 2010 John Wiley & Sons, Ltd.
机译:提出了用于测试太阳能电池的紧凑平台。光源包括一个多波长大功率LED(发光二极管)阵列,可在390-940nm波长范围内对小型实验室太阳能电池设备(基板尺寸为50×25 mm)进行均匀照明。可以通过独立调谐18种不同的波长以模拟AM1.5G以及各种室内灯光谱来合成光谱。强度可以214位精度进行控制,并且具有大约AM1.5G光谱分布,强度最高可以达到3。对于几个波长,强度可能高达10太阳,而对于几个波长,强度可能高达30太阳。该装置配有参考二极管和光纤耦合器,可以对入射到样品上的光进行校准,监视和控制。通过计算机控制的界面,可以在不移动样品的情况下以很高的速度对太阳能电池执行所有常用的测量。特别是,基于LED的照明系统提供了一种替代方法,可替代我们将要进行的光偏置入射光子至电流效率测量。顶部和底部都可以接触,并且在测量过程中可以控制样品周围的气氛。该设备是针对聚合物和有机太阳能电池领域开发的,特别着重于使不同实验室能够以相同方式执行测量并获得比较数据的通用基础。该平台的使用已通过标准P3HT:PCBM聚合物太阳能电池进行了演示,但通常适用于在390-950nm范围内具有光谱响应的任何太阳能电池技术。版权所有©2010 John Wiley&Sons,Ltd.

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