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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Determining the photocurrent of individual cells within an organic solar module by LBIC and the filtering approach: Experiments and simulations
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Determining the photocurrent of individual cells within an organic solar module by LBIC and the filtering approach: Experiments and simulations

机译:通过LBIC和滤波方法确定有机太阳能模块中单个电池的光电流:实验和模拟

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摘要

Light beam induced current (LBIC) measurements of ITO-free organic photovoltaic modules with monolithic series connection are presented. Selective bias illumination is used to extract the light beam generated current from the module. A large variation of the photocurrent is observed among the cells which is unlikely to match the real generated photocurrent. In order to investigate this behavior, a novel approach (filtering approach) is presented in which the photocurrent of the measured cell is reduced while the remaining cells are kept under full illumination. This method enables the detection of the correct photocurrent of each cell and thus to identify the cell which limits the module current if all the cells comprise large parallel resistances. Dark lock-in thermography measurements of the module revealed several shunted cells. In this case the filtering approach overestimates the photocurrent. Numerical simulations of LBIC applied to modules using either selective bias illumination or forward bias voltage were carried out to understand the observed behavior in detail. The results reveal that a reliable detection of the photocurrent is impossible when several cells have rather low parallel resistances. Whereas for selective bias illumination the photocurrent response of the measured cell is an unambiguous function of the cell's parallel resistance this is not the case for an applied forward bias voltage. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了具有单片串联的无ITO有机光伏组件的光束感应电流(LBIC)测量。选择性偏置照明用于从模块中提取光束产生的电流。在电池之间观察到光电流的大变化,这不太可能与实际产生的光电流匹配。为了研究这种行为,提出了一种新颖的方法(过滤方法),其中减少了被测细胞的光电流,而其余细胞保持在全光照下。如果所有电池都包含较大的并联电阻,则该方法能够检测每个电池的正确光电流,从而确定限制模块电流的电池。模块的暗锁热成像测量显示出几个分流的电池。在这种情况下,滤波方法会高估光电流。进行了使用选择性偏置照明或正向偏置电压应用于模块的LBIC的数值模拟,以详细了解观察到的行为。结果表明,当几个电池具有相当低的并联电阻时,不可能可靠地检测光电流。对于选择性偏置照明,被测电池的光电流响应是电池并联电阻的明确函数,而施加的正向偏置电压则不是这种情况。 (C)2014 Elsevier B.V.保留所有权利。

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