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Technologies and applications for smart charging of electric and plug-in hybrid vehicles
Record Type:
Electronic resources : Monograph/item
Title/Author:
Technologies and applications for smart charging of electric and plug-in hybrid vehiclesedited by Ottorino Veneri.
other author:
Veneri, Ottorino.
Published:
Cham :Springer International Publishing :2017.
Description:
xxiv, 307 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Battery chargers.
Online resource:
http://dx.doi.org/10.1007/978-3-319-43651-7
ISBN:
9783319436517$q(electronic bk.)
Technologies and applications for smart charging of electric and plug-in hybrid vehicles
Technologies and applications for smart charging of electric and plug-in hybrid vehicles
[electronic resource] /edited by Ottorino Veneri. - Cham :Springer International Publishing :2017. - xxiv, 307 p. :ill., digital ;24 cm.
Preface -- Introduction -- Impacts and benefits of increasing electric vehicle loads on distribution infrastructures -- AC and DC micro-grids with distributed energy resources -- Integration of renewable energy sources into the transport and electricity sectors -- Charging architectures for electric and plug-in hybrid vehicles -- Storage technologies as solutions for intermittent renewable energy sources -- Storage systems for electric and hybrid vehicles -- Case Studies: Fast recharging station pilot projects and experiences.
This book outlines issues related to massive integration of electric and plug-in hybrid electric vehicles into power grids. Electricity is becoming the preferred energy vector for the next new generation of road vehicles. It is widely acknowledged that road vehicles based on full electric or hybrid drives can mitigate problems related to fossil fuel dependence. This book explains the emerging and understanding of storage systems for electric and plug-in hybrid vehicles. The recharging stations for these types of vehicles might represent a great advantage for the electric grid by facilitating integration of renewable and distributed energy production. This book presents a broad review from analyzing current literature to on-going research projects about the new power technologies related to the various charging architectures for electric and plug-in hybrid vehicles. Specifically focusing on DC fast charging operations, as well as, grid-connected power converters and the full range of energy storage systems. These key components are analyzed for distributed generation and charging system integration into micro-grids. The authors demonstrate that these storage systems represent effective interfaces for the control and management of renewable and sustainable distributed energy resources. New standards and applications are emerging from micro-grid pilot projects around the world and case studies demonstrate the convenience and feasibility of distributed energy management. The material in this unique volume discusses potential avenues for further research toward achieving more reliable, more secure and cleaner energy. Explores the application of electric vehicle charging technologies in the smart grid sector Examines the impacts and uses of EVs and Hybrids in micro-grids, renewable energy uptake, and distributed generation paradigms Provides solutions to key challenges hindering an upsurge in the electric and plug-in hybrid market.
ISBN: 9783319436517$q(electronic bk.)
Standard No.: 10.1007/978-3-319-43651-7doiSubjects--Topical Terms:
772122
Battery chargers.
LC Class. No.: TL220 / .T43 2017
Dewey Class. No.: 629.229
Technologies and applications for smart charging of electric and plug-in hybrid vehicles
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Preface -- Introduction -- Impacts and benefits of increasing electric vehicle loads on distribution infrastructures -- AC and DC micro-grids with distributed energy resources -- Integration of renewable energy sources into the transport and electricity sectors -- Charging architectures for electric and plug-in hybrid vehicles -- Storage technologies as solutions for intermittent renewable energy sources -- Storage systems for electric and hybrid vehicles -- Case Studies: Fast recharging station pilot projects and experiences.
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This book outlines issues related to massive integration of electric and plug-in hybrid electric vehicles into power grids. Electricity is becoming the preferred energy vector for the next new generation of road vehicles. It is widely acknowledged that road vehicles based on full electric or hybrid drives can mitigate problems related to fossil fuel dependence. This book explains the emerging and understanding of storage systems for electric and plug-in hybrid vehicles. The recharging stations for these types of vehicles might represent a great advantage for the electric grid by facilitating integration of renewable and distributed energy production. This book presents a broad review from analyzing current literature to on-going research projects about the new power technologies related to the various charging architectures for electric and plug-in hybrid vehicles. Specifically focusing on DC fast charging operations, as well as, grid-connected power converters and the full range of energy storage systems. These key components are analyzed for distributed generation and charging system integration into micro-grids. The authors demonstrate that these storage systems represent effective interfaces for the control and management of renewable and sustainable distributed energy resources. New standards and applications are emerging from micro-grid pilot projects around the world and case studies demonstrate the convenience and feasibility of distributed energy management. The material in this unique volume discusses potential avenues for further research toward achieving more reliable, more secure and cleaner energy. Explores the application of electric vehicle charging technologies in the smart grid sector Examines the impacts and uses of EVs and Hybrids in micro-grids, renewable energy uptake, and distributed generation paradigms Provides solutions to key challenges hindering an upsurge in the electric and plug-in hybrid market.
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based on 0 review(s)
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000000137184
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EB TL220 T255 2017
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1 records • Pages 1 •
1
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http://dx.doi.org/10.1007/978-3-319-43651-7
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