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Analysis of submerged amorphous, mono-and poly-crystalline silicon solar cells using halogen lamp and comparison with xenon solar simulator

机译:利用卤素灯的浸没式无定形,单晶硅太阳能电池分析及与氙气太阳能模拟器的比较

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Utilization of Solar Photovoltaic (PV) cells underwater can mitigate the lack of enduring renewable energy sources in marine environments. In our recent studies, the performance of different commercially available silicon Solar cells have been analysed using Xenon Lamp Solar simulator at shallow depths up to 20 cm and the effect of the variation in the water environments was studied. The obtained results show an immense possibility to utilize various Solar PV cells in the submerged conditions. Therefore, it is essential to study a light source other than Xenon lamp with different spectra and its change in intensities in underwater conditions to analyse the performance of various Solar PV cells. In this work, a Halogen lamp was used, which can cover the IR spectrum efficiently, whereas the Xenon lamp spectrum performed well in the visible spectrum. Also, the halogen lamp spectrum was identical to the black-body irradiance of the real Sunlight and amenable to emit light from near ultraviolet to deep-infrared. Further, the performance of different Solar PV cells underwater has been examined. Subsequently, the obtained results were compared with our previous studies reported with the standard Xenon lamp of Air mass 1.5. Further, it was observed that the variation of the light source could also play a significant role in the underwater transmission of Solar irradiance. Finally, it was shown that the performance of Solar PV cells, in submerged conditions using an artificial light, was similar to the actual Sunlight.
机译:水下太阳能光伏(PV)细胞的利用可以减轻海洋环境中缺乏持久的可再生能源。在我们最近的研究中,使用氙灯太阳能模拟器在浅深度下进行了分析了不同市售硅太阳能电池的性能,并且研究了水环境变化的效果。所得结果表明,在浸没条件下使用各种太阳能光伏电池的巨大可能性。因此,必须研究具有不同光谱的氙灯以外的光源及其在水下条件下强度的变化,以分析各种太阳能光伏电池的性能。在这项工作中,使用卤素灯,其可以有效地覆盖IR光谱,而氙灯谱在可见光谱中表现良好。而且,卤素灯光谱与真实阳光的黑体辐照度相同,并允许从紫外线附近发光到深红外线。此外,研究过水下的不同太阳光伏电池的性能。随后,将得到的结果与我们以前的研究报告的空气质量1.5的标准氙灯进行了比较。此外,观察到光源的变化也可能在太阳辐照度的水下传输中起着重要作用。最后,表明使用人造光的浸没条件下的太阳能光伏电池的性能类似于实际的阳光。

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