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Prediction and performance assessment of global solar radiation in Indian cities: A comparison of satellite and surface measured data

机译:印度城市全球太阳辐射的预测和性能评估:卫星和地面测量数据的比较

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摘要

The design and performance assessment of solar photovoltaic/thermal system requires the knowledge of global solar radiation. Generalised models to assess the monthly average global solar radiation of twelve locations in India were established using sunshine hours available for 14 years (2000-2014) obtained from the World Radiation Data Centre (WRDC), Russia. Statistical analysis is carried out to assess the accurate model to estimate the global solar radiation which includes mean bias error, root mean square error, mean absolute percentage error, the coefficient of determination and uncertainty at 95%. Also, the assessment of the global radiation values obtained from satellite data by the National Renewable Energy Laboratory (NREL) is performed. Further, Global Performance Indicator (GPI) is introduced to find the ranking of models from the overall performance of the investigated models by scaling statistical indicators. The comparison of the NREL estimated data and WRDC data shows that the satellite data overestimates the surface measured data between 10 and 15% for seven locations, whereas, for the remaining four stations, it is between 7 and 9.5%. (C) 2019 Elsevier Ltd. All rights reserved.
机译:太阳能光伏/热力系统的设计和性能评估需要了解全球太阳辐射。利用从俄罗斯世界辐射数据中心(WRDC)获得的14年(2000年至2014年)可获得的日照小时数,建立了评估印度12个地区月平均全球太阳辐射的通用模型。进行统计分析以评估准确的模型,以估计全球太阳辐射,其中包括平均偏差误差,均方根误差,平均绝对百分比误差,确定系数和95%的不确定性。而且,对国家可再生能源实验室(NREL)从卫星数据获得的全球辐射值进行了评估。此外,引入了全球绩效指标(GPI),以通过缩放统计指标从调查的模型的整体绩效中找到模型的排名。 NREL估计数据和WRDC数据的比较表明,卫星数据高估了七个位置的地面测量数据,介于10%和15%之间,而其余四个站点的卫星数据,则估计介于7%和9.5%之间。 (C)2019 Elsevier Ltd.保留所有权利。

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