Title :
Storage operation for peak shaving of distributed PV and wind generation
Author :
Nykamp, S. ; Molderink, Albert ; Hurink, Johann L. ; Smit, Gerard J. M.
Author_Institution :
Network Planning Div., RWE, Germany
Abstract :
The integration of fluctuating power generation based on renewable energy systems (RES-E) in distribution grids require grid reinforcement resulting from high feed-in peaks. Introducing storage assets can decrease these peaks. For this, storage technologies need to be chosen and dimensioned according to the prevailing RES-E portfolio. In this paper characteristic parameters for storage devices, which are used for peak reductions of photovoltaic and wind generation, are derived. For this, real world data of generators located in a German distribution grid are used. An empirical relation between the peak to be reduced and the required capacity and the number of charging cycles is given enabling a discussion and choice of appropriate storage technologies. The achieved results show, that the parameters of the storage are influenced not only by the considered RES-E technology but also by the number of decentralized generators.
Keywords :
distributed power generation; energy storage; hybrid power systems; photovoltaic power systems; wind power plants; German distribution grid; RES-E portfolio; RES-E technology; charging cycles; decentralized generators; distributed PV generation; distributed wind generation; fluctuating power generation; high feed-in peaks; peak reductions; peak shaving; photovoltaic generation; renewable energy systems; storage devices; storage operation; Batteries; Bismuth; Electricity; Generators; Portfolios; Power generation; Production; Batteries; Distributed Power Generation; Energy storage; Photovoltaic systems; Smart Grids; Solar Power Generation; Wind Energy;
Conference_Titel :
Innovative Smart Grid Technologies (ISGT), 2013 IEEE PES
Conference_Location :
Washington, DC
Print_ISBN :
978-1-4673-4894-2
Electronic_ISBN :
978-1-4673-4895-9
DOI :
10.1109/ISGT.2013.6497786