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Detailed 3D full-cell modeling in Quokka3: Quantifying edge and solder-pad losses in an industrial PERC cell

机译:Quokka3的详细3D全蜂窝建模:量化边缘和焊盘损耗在工业Perc细胞中

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A multidomain approach is proposed and applied to model an industrial 15.6×15.6 cm~2 PERC cell in 3D in full-size. An inner cell domain and two edge domains are chosen as irreducible symmetry elements, each containing the unequal front and rear pitch, the dashed rear contacts, and part of the busbars. The full-cell current is determined by a simple summation instead of a distributed network model, as the metal resistance is accounted for in the large 3D domains. The approach is implemented in Quokka3 which automatically constructs the domains from the full-cell properties and can solve them in practical computing times. Production-line PERC cells from Tina Solar are reproduced with measured input parameters. From this, two full-cell effects are quantified: i) the influence of rear solder-pads on cell performance, and ii) the edge losses under various conditions. We find that even though the rear-solder pads are relatively wide compared to the front busbars, their impact on efficiency is negligible, unless a severe degradation of the passivation quality is present. Edge losses can be in the order of up to 0.2 %_(abs) efficiency due to edge recombination, and the edge distance should be held below 1 mm.
机译:提出了多域方法并应用于在全尺寸的3D中模拟工业15.6×15.6cm〜2个PERC细胞。内部电池域和两个边缘域被选择为不可缩小的对称元件,每个对称元件包含不等的前螺距,虚线后触点和汇流条的一部分。全电池电流由简单的求和而不是分布式网络模型确定,因为在大3D域中占了金属阻力。该方法是在Quokka3中实现的,它自动构建来自全单元属性的域,并且可以在实际计算时间中解决它们。从蒂娜太阳能的生产线PERC细胞通过测量的输入参数再现。由此,量化两个全细胞效应:i)后部焊料垫对细胞性能的影响,并且II)在各种条件下的边缘损耗。我们发现,即使与前母线相比,后焊盘相比相对宽,除非存在钝化质量的严重降低,否则它们对效率的影响可以忽略不计。由于边缘重组,边缘损耗可以是高达0.2%_(ABS)效率的效率,边缘距离应保持在1毫米以下。

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