Electric Energy Storage Systems : Flexibility Options for Smart Grids

The book describes methods of modeling, planning and implementing electric energy storage systems. Energy storage becomes an important issue when more and more electric power is generated by wind mills and photovoltaics systems, because green energy is more volatile. So energy storage is necessary t...

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Détails bibliographiques
Auteur principal : Komarnicki Pzemyslaw (Auteur)
Autres auteurs : Lombardi Pio (Auteur), Styczynski Zbigniew (Auteur)
Format : Livre
Langue : anglais
Titre complet : Electric Energy Storage Systems : Flexibility Options for Smart Grids / by Przemyslaw Komarnicki, Pio Lombardi, Zbigniew Styczynski.
Publié : Berlin, Heidelberg : Springer , C 2017
Description matérielle : 1 vol. (XV-211 p.)
Contenu : Future Power Systems. Electric Energy Storage Systems. International Development Trends in Power Systems. Need for Storage. Practical Examples. Storage Technologies and Systems. Mobile Electric Energy Storage Systems - Vehicle-for-Grid Options. Economics of Electric Energy Storage Systems. Reliability in Smart Grids with Electric Energy Storage Systems.
Sujets :
Documents associés : Autre format: Electric Energy Storage Systems
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327 1 |a Future Power Systems  |a Electric Energy Storage Systems  |a International Development Trends in Power Systems  |a Need for Storage. Practical Examples  |a Storage Technologies and Systems  |a Mobile Electric Energy Storage Systems - Vehicle-for-Grid Options  |a Economics of Electric Energy Storage Systems  |a Reliability in Smart Grids with Electric Energy Storage Systems. 
330 |a The book describes methods of modeling, planning and implementing electric energy storage systems. Energy storage becomes an important issue when more and more electric power is generated by wind mills and photovoltaics systems, because green energy is more volatile. So energy storage is necessary to guarantee safe and secure electric energy supply. Market and power system oriented operations of electric energy storage require different planning methods and different algorithms for searching the optimal solution. These methods are described in detail for energy storage implementations in generation, transmission and distribution levels. Economic aspects are considered. For many years, the authors have been developing smart grid solutions as well as a methology of modeling and planning electric energy storage usage. The aim has been to increase the flexibility of the power system heading for an energy system which is completely generated by green energy. (Résumé éditeur) 
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