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Low irradiance losses of photovoltaic modules

机译:光伏组件的辐照损耗低

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The efficiency of a photovoltaic cell/module changes, as the intensity of incident irradiance decreases, in a non linear way and these changes are referred to as low irradiance losses. In this study data from field experiments, developed and organized by the National Renewable Energy Laboratory, are used to evaluate the low irradiance losses for a variety of module technologies. The results demonstrate that the ratio of the normalized power divided by the normalized short circuit current provide a good measure of the module's low light efficiency losses after both the maximum power and the short circuit current are adjusted for temperature effects. The normalized efficiencies determined through the field data, spanning for several months, are in good agreement with those determined under controlled conditions in a solar simulator. An analytical relation for the normalized efficiency is proposed based on existing formulation for the fill factor. Despite the approximate nature of the fill factor relation, this approach produces reliable results. It will be shown that a normalized efficiency curve can be used to extract information on the series and shunt resistances of the PV module and that the shunt resistance as a function of solar irradiance can be studied. Alternately, this formulation can be used to study the low irradiance losses of a module when the internal resistances are known.
机译:随着入射辐照强度的降低,光伏电池/组件的效率以非线性方式变化,这些变化被称为低辐照损耗。在这项研究中,由国家可再生能源实验室开发和组织的现场实验数据用于评估各种模块技术的低辐照度损失。结果表明,在针对温度影响调整最大功率和短路电流后,归一化功率除以归一化短路电流的比值可以很好地衡量模块的低光效率损耗。通过数月的现场数据确定的归一化效率与在太阳模拟器中受控条件下确定的归一化效率非常一致。基于现有的填充因子公式,提出了归一化效率的解析关系。尽管填充因子关系具有近似性质,但此方法仍可产生可靠的结果。可以看出,可以使用归一化效率曲线来提取有关PV模块的串联电阻和分流电阻的信息,并且可以研究分流电阻随太阳辐照度的变化。或者,当内部电阻已知时,该公式可用于研究模块的低辐照损耗。

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