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A new circular contact grid pattern, designed for solar cells in a mechanical stack

机译:一种新的圆形接触网格图案,设计用于机械堆栈中的太阳能电池

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Applying a genuine circular contact grid pattern to the constituent solar cells in a mechanical stack, makes the lower cell(s) relatively insensitive to any rotational misalignment with respect to the higher cell(s), because this generates relatively small secondary shadowing losses. Such a grid differs from the regular (radial) grid often applied to round solar cells, in that it has a lot less radial lines and many more concentric rings, to the effect that the rings now take on the role of fingers, while the lines serve as busbars. For a 16 mm2 n-on-p GaAs cell and irradiances ranging from 1 to 1000 suns, optimised grids of this new circular design were compared to equivalent radial, square and inverted square grids. The circular grid was found to suffer less power loss than a comparable radial grid at low concentration ratios. At high concentration ratios, cells with a radial grid performed better, while comparable square and inverted square grids perform better over the entire range of concentration ratios. The effects of secondary shadowing were calculated for a range of translational misalignments, as well as rotational misalignment angles Δθ, for the four patterns optimised for an irradiance of 500 suns. The former only showed relatively small differences between the grids, but the latter confirmed the strength of the circular grid, since its shadowing loss hardly increases with increasing Δθ, while that of the other three patterns quickly approaches a doubling. When these secondary shadowing effects are taken into account, it is demonstrated that the application of a circular grid is a viable approach to minimise the losses associated with the rotational misalignment of mechanically stacked solar cells.
机译:将真正的圆形接触栅格图案应用于机械堆叠中的组成太阳能电池,会使下部电池相对于较高电池对任何旋转未对准相对不敏感,因为这会产生相对较小的二次遮蔽损耗。这样的网格不同于通常用于圆形太阳能电池的常规(辐射)网格,因为它具有更少的径向线和更多的同心环,从而使环现在起手指的作用,而线充当母线。对于16 mm 2 n-on-p GaAs电池,辐照度范围为1到1000个太阳,将这种新的圆形设计的优化栅格与等效的径向栅格,正方形栅格和倒置正方形栅格进行了比较。在低浓度比下,发现圆形栅格的功率损耗要比类似的径向栅格小。在高浓度比下,带有放射状网格的电池性能更好,而在整个浓度比范围内,可比较的正方形和倒置正方形网格的性能更好。对于平移未对准范围以及旋转未对准角度Δθ,针对针对500个太阳辐照进行了优化的四个图案,计算了次要阴影的影响。前者仅显示出栅格之间的差异相对较小,但后者证实了圆形栅格的强度,因为其阴影损失几乎不会随Δθ的增加而增加,而其他三个样式的阴影损失很快就会增加一倍。当考虑到这些次级阴影效应时,证明了使用圆形栅格是使与机械堆叠的太阳能电池的旋转未对准相关的损失最小化的可行方法。

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