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Class AAA LED-Based Solar Simulator for Steady-State Measurements and Light Soaking

机译:基于AAA级LED的太阳能模拟器,用于稳态测量和光吸收

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摘要

Recent improvements in light-emitting diode (LED) technology has allowed for the use of LEDs for solar simulators with excellent characteristics. In this paper, we present a solar simulator prototype fully based on LEDs. Our prototype has been designed specifically for light soaking and current–voltage $(I(V))$ measurements of amorphous silicon solar cells. With 11 different LED types, the spectrum from 400 to 750 nm can be adapted to any reference spectrum—such as AM1.5g—with a spectral match corresponding to class A+ or better. The densely packed LEDs provide power densities equivalent to 4 suns for AM1.5g or 5 suns with all LEDs at full power with no concentrator optics. The concept of modular LED blocks and electronics guarantees good uniformity and easy up-scalability. Instead of cost-intensive LED drivers, low-cost power supplies were used with current control, including a feedback loop on in-house developed electronics. This prototype satisfies the highest classifications (better than AAA from 400 to 750 nm) with an illuminated area of 18 cm $times$ 18 cm. For a broader spectrum, the spectral range could be extended by using other types of LEDs or by adding halogen lamps. The space required for this can be saved by using LEDs with higher power or by reducing the maximum light intensity.
机译:发光二极管(LED)技术的最新改进已允许将LED用于具有卓越特性的太阳能模拟器。在本文中,我们介绍了完全基于LED的太阳能模拟器原型。我们的原型专为光吸收和非晶硅太阳能电池的电流-电压 $(I(V))$ 测量而设计。使用11种不同的LED类型,可以将400至750 nm的光谱适应于任何参考光谱(例如AM1.5g),并且光谱匹配度相当于A +级或更高。密集封装的LED提供的功率密度相当于AM1.5g的4个太阳或5个太阳,所有LED都在没有聚光器的情况下处于全功率。模块化LED块和电子元件的概念可确保良好的均匀性和易于升级的性能。低成本的电源代替了成本高昂的LED驱动器,而是采用了电流控制功能,包括内部开发的电子设备上的反馈回路。此原型满足最高的分类标准(400至750 nm优于AAA),照射面积为18 cm $ times $ 18 cm 。对于更广的光谱,可以通过使用其他类型的LED或通过添加卤素灯来扩展光谱范围。可以通过使用更高功率的LED或降低最大光强度来节省所需的空间。

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