Please use this identifier to cite or link to this item: http://hdl.handle.net/10553/73827
Title: Site-adaptation of modeled solar radiation data: the SiteAdapt procedure
Authors: Fernández-Peruchena, Carlos M.
Polo, Jesús
Martín, Luis
Mazorra Aguiar, Luis 
UNESCO Clasification: 210601 Energía solar
250121 Simulación numérica
Keywords: Bankability of solar projects
Bias removal
Data fusion
Satellite-derived irradiance
Site-adaptation
Issue Date: 2020
Journal: Remote Sensing 
Abstract: The adaptation of modeled solar radiation data with coincident ground measurements has become a standard practice of the industry, typically requested by financial institutions in the detailed solar resource assessments of solar projects. This practice mitigates the risk of solar projects, enhancing the adequate solar plant design and reducing the uncertainty of its yield estimates. This work presents a procedure for improving the accuracy of modeled solar irradiance series through site-adaptation with coincident ground-based measurements relying on the use of a regression preprocessing followed by an empirical quantile mapping (eQM) correction. It was tested at nine sites in a wide range of latitudes and climates, resulting in significant improvements of statistical indicators of dispersion, distribution similarity and overall performance: relative bias is reduced on average from-1.8% and-2.3% to 0.1% and 0.3% for GHI and DNI, respectively; relative root mean square deviation is reduced on average from 17.9% and 34.9% to 14.6% and 29.8% for GHI and DNI, respectively; the distribution similarity is also improved after the site-adaptation (KSI is 3.5 and 3.9 times lower for GHI and DNI at hourly scale, respectively). The methodology is freely available as supplementary material and downloadable as R-package from SiteAdapt.
URI: http://hdl.handle.net/10553/73827
ISSN: 2072-4292
DOI: 10.3390/rs12132127
Source: Remote Sensing [EISSN 2072-4292], v. 12 (13), 2127, (Julio 2020)
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