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Dampening variations in wind power generation-the effect of optimizing geographic location of generating sites

Lina Reichenberg (Institutionen för energi och miljö, Energiteknik) ; Filip Johnsson (Institutionen för energi och miljö, Energiteknik) ; Mikael Odenberger (Institutionen för energi och miljö, Energiteknik)
Wind Energy (1095-4244). Vol. 17 (2014), 11, p. 1631-1643.
[Artikel, refereegranskad vetenskaplig]

This paper presents a method to dampen the variations in the output of aggregated wind power through geographic allocation of wind power generation sites. The method, which is based on the sequential optimization of site localization, is applied to the Nordic countries and Germany, using meteorologic wind speed data as the input. The results show that the variability in aggregated wind power output mitigates by applying sequential optimization. For the data used in this work, the coefficient of variation (standard deviation/mean) was 0.54 for the optimized aggregation of sites, as compared with 0.91 for the present day installation. An optimal allocation of wind power generation site reduces the need for dispatch and other measures to deal with the intermittent nature of wind power.

Nyckelord: wind integration, wind power allocation

Denna post skapades 2014-11-19.
CPL Pubid: 206073


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Institutioner (Chalmers)

Institutionen för energi och miljö, Energiteknik (2005-2017)



Chalmers infrastruktur

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