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Full characterization of photovoltaic modules in real operating conditions: theoretical model, measurement method and results

机译:实际工作条件下光伏组件的完整表征:理论模型,测量方法和结果

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摘要

The photovoltaic (PV) system performance essentially depends on the modules response to five effects: spectral, reflection, temperature, irradiance, and nominal power variations. Providing a full characterization of modules behavior in terms of the impact of these effects on real operating conditions performance is very important both to compare different PV technologies and to choose the best technology for a specific site, position, and installation feature. In this work, a systematic approach is used. A theoretical model to calculate the performance ratio related to each effect is proposed. The model is used to compare and to explain the annual behavior of two different technologies: a multicrystalline silicon module (mc-Si) and a double junction amorphous silicon module (a-Si/DJ). The basic features of these modules performance are observed. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:光伏(PV)系统的性能基本上取决于模块对五种效应的响应:光谱,反射,温度,辐照度和标称功率变化。就这些影响对实际工作条件性能的影响而言,提供模块行为的完整表征对于比较不同的PV技术以及为特定地点,位置和安装功能选择最佳技术都非常重要。在这项工作中,使用了系统的方法。提出了一种计算每种效应相关性能比的理论模型。该模型用于比较和解释两种不同技术的年度性能:多晶硅模块(mc-Si)和双结非晶硅模块(a-Si / DJ)。观察了这些模块性能的基本特征。版权所有(c)2014 John Wiley&Sons,Ltd.

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