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Distributed Simulation of Real Tunnel Junction Effects in Multi-Junction Solar Cells

机译:多结太阳能电池实际隧道结效应的分布式仿真

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In this paper, we present an improved 3D distributed model that considers real operation regimes in a tunnel junction. This advanced method is able to accurately simulate the high concentrations at which the current in the solar cell surpasses the peak current of the tunnel junction. Simulations of dual-junction solar cells were carried out with different light profiles and including chromatic aberration to show the capabilities of the model. Such simulations show that, under some circumstances, the solar cell short circuit current may be slightly higher than the tunnel junction peak current without showing the characteristic dip in the J-V curve. This behavior is caused by the lateral current spreading towards the dark regions, which occurs through the anode region of the tunnel junction.
机译:在本文中,我们提出了一种改进的3D分布式模型,其考虑隧道交界处的实际操作制度。这种高级方法能够精确地模拟太阳能电池中电流的高浓度超过隧道结的峰值电流。用不同的光轮廓进行双结太阳能电池的模拟,包括色差以显示模型的能力。这种模拟表明,在某些情况下,太阳能电池短路电流可以略高于隧道结峰电流,而不显示J-V曲线中的特性倾度。这种行为是由朝向暗区的横向电流引起的,这通过隧道结的阳极区域发生。

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