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Electric energy storage systems : flexibility options for smart grids

Author: Przemyslaw Komarnicki; Pio Lombardi; Zbigniew A Styczynski
Publisher: Berlin, Germany : Springer, [2017]
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
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  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Komarnicki, Przemyslaw.
Electric energy storage systems.
Berlin, Germany : Springer, [2017]
(OCoLC)953709253
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Przemyslaw Komarnicki; Pio Lombardi; Zbigniew A Styczynski
ISBN: 9783662532751 3662532751
OCLC Number: 990802732
Description: 1 online resource (xv, 211 pages) : illustrations (some color)
Contents: Preface; Contents; Abbreviations; 1 Future Power Systems; 1.1 Introduction; 1.2 Towards a Smart Grid; 1.2.1 More Renewable Generation in the Future; 1.2.2 The Core Elements of the European Smart-Grid Vision; 1.2.3 Changes of the Energy Policy in Europe and the Consequences for Smart Grids; 1.2.4 Power System Operation in the Future. The Need for More Flexibility in the Smart Grid; 1.3 Regulatory Boundaries for Smart Grid and Electric Energy Storage; References; 2 Electric Energy Storage System; 2.1 Requirements for an EES System; 2.1.1 Development of the EES Use in the Power System. 2.1.2 Requirements for EES and Extension of Storage Usability in the Smart Grid2.2 Generic Model of EES; 2.2.1 Standardizing Generic Model of EES; 2.2.2 Physical Surface of the EES Model. Mathematical Generic Model; 2.3 EES in the Transmission and Distribution System; 2.3.1 Factors Influencing the Value of Storage in Transmission Networks; 2.3.2 EES in the Distribution System; 2.3.3 Example of Modeling and Implementation of the Models in the Planning and Simulation in Distribution; 2.3.4 Standardized Models of BES Using the Surface and Interface Structure (SIS). 2.4 Storage Systems in Isolated Power Systems2.4.1 Introduction; 2.4.2 A Case-Based Optimization of Electric Energy Storage Size in an Isolated Power System; 2.4.3 Multi-Criteria Optimization of IPS; References; 3 International Development Trends in Power Systems; 3.1 State of the Art; 3.2 Smart Grid Concept for the Future Grid; 3.3 European Scenario; 3.4 Renewable Energy Development in the Iberian Pensinsula; 3.5 The Danish Scenario; 3.6 North American Scenario; 3.7 South American Scenario; 3.8 Japanese Scenario; 3.9 Russian Scenario; 3.10 Chinese Scenario; 3.11 Australian Scenario. 6 Mobile Energy Storage Systems. Vehicle-for-Grid Options6.1 Electric Vehicles; 6.2 EV Standards and Technologies for Power and Transportation Systems; 6.3 Electric-Vehicle Networks as Energy Storage Systems in the Power and Transportation System; References; 7 Economics of Electric Energy Storage Systems; 7.1 Electric-Energy Storage System Applications and Services; 7.2 Electric-Energy Storage Economics; 7.2.1 Cost Analysis; 7.2.2 Investment and Operation Costs Analysis of EES; References; 8 Reliability in Smart Grids with Energy Storage Systems; 8.1 Reliability in Power-Energy Systems.
Responsibility: Przemyslaw Komarnicki, Pio Lombardi, Zbigniew Styczynski.

Abstract:

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  Read more...

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