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Photovoltaic system derived data for determining the solar resource and for modeling the performance of other photovoltaic systems

机译:光伏系统得出的数据可用于确定太阳能资源并为其他光伏系统的性能建模

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Using performance data from some of the millions of installed photovoltaic (PV) modules with micro inverters may afford the opportunity to provide ground-based solar resource data critical for developing PV projects. A method was developed to back-solve for the direct normal irradiance (DNI) and the diffuse horizontal irradiance (DHI) from the measured ac power of south-facing PV module/micro-inverter systems. The method was validated using one year of irradiance and PV performance measurements for five PV systems, each with a different tilt/azimuth orientation, and located in Golden, Colorado. Compared to using a measured global horizontal irradiance for PV performance model input, using the back-solved values of DNI and DHI only increased the range of mean bias deviations from measured values by 0.6% for the modeled annual averages of the global tilt irradiance and ac power for the five PV systems. Correcting for angle-of-incidence effects is an important feature of the method to prevent underestimating the solar resource and for modeling the performance of PV systems with more dissimilar PV module orientations. The results for the method were also shown more favorable than the results when using an existing power projection method for estimating the ac power. (C) 2017 Published by Elsevier Ltd.
机译:将数百万个已安装的光伏(PV)模块中的一些模块的性能数据与微型逆变器一起使用,可能会提供机会提供对开发PV项目至关重要的地面太阳能资源数据。开发了一种方法,可以从测得的朝南光伏模块/微型逆变器系统的交流电中反算直接法线辐照度(DNI)和漫射水平辐照度(DHI)。该方法使用一年的辐照度和PV性能测量值对五个光伏系统进行了验证,每个光伏系统的倾斜/方位角方向不同,并且位于科罗拉多州的Golden。与对PV性能模型输入使用测得的全局水平辐照度相比,使用DNI和DHI的反向求解值仅将对全球倾斜辐照度和交流的建模年度平均值的测量值的平均偏差偏差范围增加了0.6%。五个光伏系统的电源。校正入射角效应是该方法的一个重要功能,可防止低估太阳能资源并为具有更多不同PV模块方向的PV系统性能建模。与使用现有的功率投影方法估算交流功率时的结果相比,该方法的结果也显示出更好的效果。 (C)2017由Elsevier Ltd.发布

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