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Effect of anti reflecting coating (ARC) in GaAs based P-i-N solar device with GaP as window layer

机译:GaAs基P-i-N太阳器件中以GaP为窗口层的抗反射涂层(ARC)效应

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In this we have simulate a p-i-n solar with SCAPS-1D solar photovoltaic device simulator to observe the effect anti reflecting coating over p-i-n solar Device. The device was constructed using GaP. GaAs were used as P+, P, i, n+,n layer with changing doping in it. table it is quite clear that there is there is significant impact of this layer in p-i-n PV Device. In the device of p+-p-i-n-n+ we have observed 36.948% efficiency with anti reflective coating. But without anti reflective coating it went down only at 24.3850%. Almost 12% varies with layer here. In the device of p+-p-i-n we have observed 33.5399% efficiency with anti reflective coating. In the device of p-i-n we have observed 33.4215% efficiency with anti reflective coating. But without anti reflective coating it went down only at 22.0723%. Almost 11% varies with layer here. So, it can be said that, anti reflecting coating reduces the loss and increases the efficiency of a p-i-n PV Device.
机译:在本文中,我们用SCAPS-1D太阳能光伏器件模拟器模拟了一个p-i-n太阳能器件,以观察p-i-n太阳能器件上的防反射涂层的效果。这个装置是用GaP制造的。采用GaAs作为P+,P,i,n+,n层,改变掺杂方式。表很明显,该层对p-i-n光伏器件有显著影响。在p+-p-i-n-n+装置中,我们观察到使用抗反射涂层的效率为36.948%。但在没有防反射涂层的情况下,它只下降了24.3850%。在这里,几乎12%因层而异。在p+-p-i-n装置中,我们观察到使用抗反射涂层的效率为33.5399%。在p-i-n装置中,我们观察到使用抗反射涂层的效率为33.4215%。但在没有防反射涂层的情况下,它只下降了22.0723%。在这里,几乎有11%因层而异。因此,可以说,防反射涂层降低了p-i-n光伏器件的损耗,提高了效率。

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