DocumentCode
57089
Title
Evaluation of Global Horizontal Irradiance to Plane-of-Array Irradiance Models at Locations Across the United States
Author
Lave, Matthew ; Hayes, William ; Pohl, Andrew ; Hansen, Clifford W.
Author_Institution
Sandia Nat. Labs., Livermore, CA, USA
Volume
5
Issue
2
fYear
2015
fDate
Mar-15
Firstpage
597
Lastpage
606
Abstract
We report an evaluation of the accuracy of combinations of models that estimate plane-of-array (POA) irradiance from measured global horizontal irradiance (GHI). This estimation involves two steps: 1) decomposition of GHI into direct and diffuse horizontal components and 2) transposition of direct and diffuse horizontal irradiance (DHI) to POA irradiance. Measured GHI and coincident measured POA irradiance from a variety of climates within the United States were used to evaluate combinations of decomposition and transposition models. A few locations also had DHI measurements, allowing for decoupled analysis of either the decomposition or the transposition models alone. Results suggest that decomposition models had mean bias differences (modeled versus measured) that vary with climate. Transposition model mean bias differences depended more on the model than the location. When only GHI measurements were available and combinations of decomposition and transposition models were considered, the smallest mean bias differences were typically found for combinations which included the Hay/Davies transposition model.
Keywords
solar energy conversion; sunlight; Hay-Davies transposition model; climate variety; decoupled analysis; diffuse horizontal irradiance transposition; direct horizontal irradiance transposition; global horizontal irradiance decomposition; mean bias differences; plane-of-array irradiance models; Analytical models; Computational modeling; Data models; Extraterrestrial measurements; Indexes; Mathematical model; Measurement uncertainty; Irradiance; photovoltaic (PV) systems; plane-of-array irradiance; solar energy; solar radiation;
fLanguage
English
Journal_Title
Photovoltaics, IEEE Journal of
Publisher
ieee
ISSN
2156-3381
Type
jour
DOI
10.1109/JPHOTOV.2015.2392938
Filename
7035020
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