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Modeling of multi-junction solar cells by Crosslight APSYS

机译:利用Crosslight APSYS对多结太阳能电池进行建模

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In this work, based on the advanced commercial software, the Crosslight APSYS with improved tunnel junction model, two-dimensional (2D) simulation has been performed on the triple-junction (TJ) GaInP/GaAs/Ge solar cell devices. The APSYS simulator solves several interwoven equations including the basic Poisson's equation, and drift-diffusion current equations for electrons and holes. The model of tunnel junction with the equivalent mobility enables an efficient modeling of multi-junction solar cell across the whole solar spectra, where all the spectrum data points are processed by taking into account the effects of multiple layer optical interference and photon generation. Basic physical quantities like band diagrams, optical absorption and generation are demonstrated. The modeled IV characteristics and offset voltage agree well with the published experimental results for TJ GaInP/GaAs/Ge solar cell device. The quantum efficiency spectra have also been computed for the modeled TJ solar cell device. Possible design optimization issues to enhance the quantum efficiency have also been discussed with respect to some applicable features of Crosslight APSYS.
机译:在这项工作中,基于先进的商用软件,具有改进的隧道结模型的Crosslight APSYS,已经在三结(TJ)GaInP / GaAs / Ge太阳能电池设备上进行了二维(2D)仿真。 APSYS仿真器解决了几个交织的方程,包括基本的泊松方程以及电子和空穴的漂移扩散电流方程。具有等效迁移率的隧道结模型可以对整个太阳光谱进行多结太阳能电池的高效建模,在该模型中,所有光谱数据点均通过考虑多层光学干涉和光子生成的影响进行处理。演示了基本物理量,如能带图,光吸收和产生。建模的IV特性和补偿电压与TJ GaInP / GaAs / Ge太阳能电池器件的已发布实验结果非常吻合。还已经为建模的TJ太阳能电池设备计算了量子效率谱。关于Crosslight APSYS的一些适用功能,还讨论了可能会提高量子效率的设计优化问题。

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