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Local short-term variability in solar irradiance

Item

Title (Dublin Core)

Local short-term variability in solar irradiance

Description (Dublin Core)

Characterizing spatiotemporal irradiance variability is important for the successful grid integration of increasing numbers of photovoltaic (PV) power systems. Using 1 Hz data recorded by as many as 99 pyranometers during the HD(CP)<sup>2</sup> Observational Prototype Experiment (HOPE), we analyze field variability of clear-sky index <i>k</i>* (i.e., irradiance normalized to clear-sky conditions) and sub-minute <i>k</i>* increments (i.e., changes over specified intervals of time) for distances between tens of meters and about 10 km. By means of a simple classification scheme based on <i>k</i>* statistics, we identify overcast, clear, and mixed sky conditions, and demonstrate that the last of these is the most potentially problematic in terms of short-term PV power fluctuations. Under mixed conditions, the probability of relatively strong <i>k</i>* increments of ±0.5 is approximately twice as high compared to increment statistics computed without conditioning by sky type. Additionally, spatial autocorrelation structures of <i>k</i>* increment fields differ considerably between sky types. While the profiles for overcast and clear skies mostly resemble the predictions of a simple model published by Hoff and Perez (2012), this is not the case for mixed conditions. As a proxy for the smoothing effects of distributed PV, we finally show that spatial averaging mitigates variability in <i>k</i>* less effectively than variability in <i>k</i>* increments, for a spatial sensor density of 2 km<sup>−2</sup>.

Creator (Dublin Core)

Lohmann, Gerald M.
Monahan, Adam H.
Heinemann, Detlev

Date (Dublin Core)

2018-09-10

Type (Dublin Core)

Text

Format (Dublin Core)

application/pdf

Identifier (Dublin Core)

10.5194/acp-16-6365-2016
https://acp.copernicus.org/articles/16/6365/2016/

Source (Dublin Core)

eISSN: 1680-7324

Language (Dublin Core)

eng
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