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Validation of global irradiance derived from INSAT-3D over India

机译:在印度验证insat-3d的全球辐照度

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摘要

Geostationary satellites offer the possibility of producing high-frequency time series irradiance datasets, covering a large geographical area. Here, we derive half-hourly global irradiance (GHI) at 4 km spatial resolution from visible channel radiance of INSAT-3D satellite using a semi-empirical model and validate it against 19 ground stations over 2015-16, across India. Our model uses the Advanced Solis clear-sky model with monthly climatological values of modern-era retrospective analysis for research and applications-2 (MERRA-2) aerosol optical depth (AOD) and precipitable water (PW) as inputs. The relative root mean squared error (rRMSE) and relative mean bias error (rMBE) are 24.02% and -0.05%, respectively. Over the validation period, INSAT-3D derived GHI outperformed SARAH-E model and MERRA-2 reanalysis GHI.
机译:地静止卫星提供生产高频时间序列辐照度数据集的可能性,覆盖着大型地理区域。在这里,我们使用半经验模型从Insat-3D卫星的可见通道辐射到4公里的空间分辨率,并使用半实证模型来获得半小时的全球辐照度(GHI),并在印度核对2015-16的195-16次验证。我们的模型使用高级Solis Clear-Sky模型,每月近期回顾性的高潮气候值,用于研究和应用-2(Merra-2)气溶胶光学深度(AOD)和可降水(PW)作为输入。相对根平均平方误差(RRMSE)和相对平均偏差误差(RMBE)分别为24.02%和-0.05%。在验证期间,INSAT-3D导出的GHI优势表现优于SARAH-E模型和MERRA-2 Reanalysis GHI。

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