饱和电流
饱和(图论)
电致发光
暗电流
共发射极
材料科学
硅
光电子学
电压
光学
约翰逊-奈奎斯特噪音
噪音(视频)
物理
纳米技术
计算机科学
图像(数学)
光电探测器
人工智能
组合数学
量子力学
数学
图层(电子)
作者
Markus Glatthaar,Johannes Giesecke,Martin Käsemann,Jonas Haunschild,Wilhem Warta,Stefan Rein
摘要
We present a novel method to determine spatially resolved the dark saturation current of standard silicon solar cells. For this two electroluminescence images are taken at two different voltages. From these two images, first the spatial voltage distribution can be calculated. Second by applying the Laplacian to the voltage image from Ohm’s law and the continuity equation, the current through the device at a certain position can be determined. Knowing the local current through the device, the local voltage, and the emitter sheet resistance allows to determine the local dark saturation current. The clue of this method is to cope with the noise by using an appropriate noise reduction algorithm. By simulating electroluminescence images with realistic noise and known dark saturation current we demonstrate the applicability of the method with our noise reduction algorithm. Experimentally we compare our method with spectral response light beam induced current on multicrystalline solar cell.
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