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首页> 外文期刊>Photovoltaics, IEEE Journal of >Analysis of Multijunction Solar Cell Current–Voltage Characteristics in the Presence of Luminescent Coupling
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Analysis of Multijunction Solar Cell Current–Voltage Characteristics in the Presence of Luminescent Coupling

机译:发光耦合作用下多结太阳能电池电流-电压特性分析

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摘要

Luminescent coupling in multijunction solar cells is the phenomenon in which a junction in forward bias radiates photons that are absorbed in and converted to photocurrent by the junction beneath the radiating one. This effect can be significant in modern high-efficiency multijunction cells. We have previously developed a combined measurement and analytical approach to characterize the short-circuit current including the effects of nonlinear coupling in terms of measurable parameters η and ${varphi}$ that describe the coupling strength and linearity, respectively. Here, we develop an analytical model for the full current–voltage characteristic $V$ $(J)$ of a multijunction cell in the presence of luminescent coupling, in terms of the η and ${varphi}$ parameters. We compare the model with the measured $V$ $(J)$ parameters of GaInP/GaAs two-junction cells that exhibit differing degrees of luminescent coupling, and show that the model well describes the measurements. We then use the model to explore the consequences of luminescent coupling on the operating parameters of an idealized two-junction cell as a function of the top-junction thickness, focusing on the open-circuit voltage, fill factor, and efficiency. The results demonstrate that the strong luminescent coupling can significantly alter the dependence of cell efficiency on junction thickness, and that consequently the well-known optical-thinning design rules must be modified.
机译:多结太阳能电池中的发光耦合是一种现象,其中前向偏置中的结会辐射光子,该光子会被辐射下的结吸收并转化为光电流。在现代高效多结电池中,这种作用可能很明显。我们以前已经开发出一种组合的测量和分析方法来表征短路电流,包括可测量参数η和 $ {varphi}方面的非线性耦合效应。 $ 分别描述了耦合强度和线性。在这里,我们为全电流-电压特性开发了一个分析模型 $ V $ <存在发光耦合的多结单元的tex Notation =“ TeX”> $(J)$ ,根据η和 $ {varphi} $ 参数。我们将模型与测得的 $ V $ GaInP / GaAs两结电池的$(J)$ 参数表现出不同程度的发光耦合,表明模型很好地描述了测量结果。然后,我们使用该模型来探索发光耦合对理想化的二结电池的工作参数的影响,该工作参数是上结厚度的函数,重点是开路电压,填充系数和效率。结果表明强发光耦合可以显着改变电池效率对结厚度的依赖性,因此必须修改众所周知的光学稀化设计规则。

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