Title of article
Modeling PV fleet output variability
Author/Authors
Thomas E. Hoff a، نويسنده , , Richard Perez، نويسنده , , ?، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2012
Pages
13
From page
2177
To page
2189
Abstract
This paper introduces a novel approach to estimate the maximum short-term output variability that an arbitrary fleet of PV systems
places on any considered power grid. The paper begins with a model that demonstrates that the maximum possible variability for N
identical, uncorrelated PV systems equals the total installed capacity divided by
ffiffiffiffiffiffiffi
2N
p
. The paper then describes a general methodology
that is applicable to arbitrary PV fleets. A key input to this generalized approach is the correlation, or absence thereof, existing between
individual installations in the fleet at the considered variability time scale. In this respect, the article includes a presentation of new experimental
evidence from hourly satellite-derived irradiances relating distance and fluctuation time scales in three geographic regions in the
United States (Southwest, Southern Great Plains, and Hawaii) and from recent high density network measurements that both confirm
and extend conclusions from previous studies, namely: (1) correlation coefficients decrease predictably with increasing distance, (2) correlation
coefficients decrease at a similar rate when evaluated versus distance divided by the considered variability time scale, and (3) the
accuracy of results is improved by including an implied cloud speed term.
2011 Elsevier Ltd. All rights reserved.
Keywords
Solar resource , Fluctuations , Power grid , Photovoltaics , Variability
Journal title
Solar Energy
Serial Year
2012
Journal title
Solar Energy
Record number
941058
Link To Document