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Spectral Response of Polycrystalline Silicon Photovoltaic Cells under Real-Use Conditions

机译:实际使用条件下多晶硅光伏电池的光谱响应

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The standard test conditions for photovoltaic modules are not capable of reproducing the environmental variations to which the modules are subjected under real operating conditions. The objective of this experimental work is to be an initial study on how the electric energy generation of photovoltaic cells varies according to the different wavelength ranges of the solar light spectrum under real operating conditions. Two modules were installed outdoors; color filters, which allow the passage of light at specific wavelengths, were installed on one of them. The amount of energy produced by the module with the filter was compared to the reference module, and the relative efficiency of each filter was defined. As a result, it was found that crystalline silicon modules do not respond uniformly to sunlight, being more sensitive to the red band (relative efficiency of 23.83%) and less sensitive to the green band (19.15%). The infrared contributes to a significant portion of energy production (relative efficiency of 13.56%), overcoming its negative effect of reducing energy generation capacity due to high photovoltaic cell temperature.
机译:光伏模块的标准测试条件无法再现实际操作条件下模块所经受的环境变化。该实验工作的目的是初步研究光伏电池的电能在实际工作条件下如何根据太阳光谱的不同波长范围而变化。室外安装了两个模块;其中之一上安装了允许特定波长的光通过的彩色滤光片。将带有过滤器的模块产生的能量与参考模块进行比较,并定义每个过滤器的相对效率。结果,发现结晶硅模块对太阳光的响应不均匀,对红带更敏感(相对效率为23.83%)而对绿带更不敏感(19.15%)。红外线有助于产生大量的能量(相对效率为13.56%),克服了由于光伏电池温度高而降低能量产生能力的负面影响。

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