Power Converters, Electric Drives and Energy Storage Systems for Electrified Transportation and Smart Grid

Power Converters, Electric Drives and Energy Storage Systems for Electrified Transportation and Smart Grid PDF

Author: Lucian Mihet-Popa

Publisher: Mdpi AG

Published: 2021-10-31

Total Pages: 216

ISBN-13: 9783036519371

DOWNLOAD EBOOK →

This book is a printed version of the Special Issue entitled "Power Converters, Electric Drives and Energy Storage Systems for Electrified Transportation and Smart Grid" on MDPI Energies journal. It presents 10 accepted papers from 18 submitted, as well as an Editorial, with authors from Europe, US, Asia, and Africa. The published papers are related to the emerging trends in solar power, energy storage, electric drives, and power electronic converters based on specific optimization and control methods and algorithms, with focus on electric vehicles and charging stations-based RES towards smart/micro grids. An extensive exploitation of renewable energy sources is foreseen for smart grid, as well as a close integration with the energy storage and recharging issues of the electrified transportation systems.

Energy Storage Systems and Power Conversion Electronics for E-Transportation and Smart Grid

Energy Storage Systems and Power Conversion Electronics for E-Transportation and Smart Grid PDF

Author: Sergio Saponara

Publisher: MDPI

Published: 2020-12-02

Total Pages: 492

ISBN-13: 3039364251

DOWNLOAD EBOOK →

This is a reprint in book form of the Energies MDPI Journal Special Issue , entitled “Energy Storage Systems and Power Conversion Electronics for E-Transportation and Smart Grid”. The Special Issue was managed by two Guest Editors from Italy and Norway: Professor Sergio Saponara from the University of Pisa and Professor Lucian MIHET-POPA from Østfold University College, in close cooperation with the Editors from Energies. The papers published in this SI are related to the emerging trends in energy storage and power conversion electronic circuits and systems, with a specific focus on transportation electrification, and on the evolution from the electric grid to a smart grid. An extensive exploitation of renewable energy sources is foreseen for the smart grid, as well as a close integration with the energy storage and recharging systems of the electrified transportation era. Innovations at the levels of both algorithmic and hardware (i.e., power converters, electric drives, electronic control units (ECU), energy storage modules and charging stations) are proposed. Research and technology transfer activities in energy storage systems, such as batteries and super/ultra-capacitors, are essential for the success of electric transportation, and to foster the use of renewable energy sources. Energy storage systems are the key technology to solve these issues, and to increase the adoption of renewable energy sources in the smart grid.

Energy Storage Systems and Power Conversion Electronics for E-Transportation and Smart Grid

Energy Storage Systems and Power Conversion Electronics for E-Transportation and Smart Grid PDF

Author: Sergio Saponara

Publisher:

Published: 2020

Total Pages: 492

ISBN-13: 9783039364268

DOWNLOAD EBOOK →

This is a reprint in book form of the Energies MDPI Journal Special Issue , entitled “Energy Storage Systems and Power Conversion Electronics for E-Transportation and Smart Grid”. The Special Issue was managed by two Guest Editors from Italy and Norway: Professor Sergio Saponara from the University of Pisa and Professor Lucian MIHET-POPA from Østfold University College, in close cooperation with the Editors from Energies. The papers published in this SI are related to the emerging trends in energy storage and power conversion electronic circuits and systems, with a specific focus on transportation electrification, and on the evolution from the electric grid to a smart grid. An extensive exploitation of renewable energy sources is foreseen for the smart grid, as well as a close integration with the energy storage and recharging systems of the electrified transportation era. Innovations at the levels of both algorithmic and hardware (i.e., power converters, electric drives, electronic control units (ECU), energy storage modules and charging stations) are proposed. Research and technology transfer activities in energy storage systems, such as batteries and super/ultra-capacitors, are essential for the success of electric transportation, and to foster the use of renewable energy sources. Energy storage systems are the key technology to solve these issues, and to increase the adoption of renewable energy sources in the smart grid.

Modeling and Simulation of Electricity Systems for Transport and Energy Storage

Modeling and Simulation of Electricity Systems for Transport and Energy Storage PDF

Author: Regina Lamedica

Publisher: MDPI

Published: 2021-03-05

Total Pages: 122

ISBN-13: 3036503269

DOWNLOAD EBOOK →

This book comprises five peer-reviewed articles covering original research articles on the modeling and simulation of electricity systems for transport and energy storage. The topics include: 1 - Optimal siting and sizing methodology to design an energy storage system (ESS) for railway lines; 2 - Technical–economic comparison between a 3 kV DC railway and the use of trains with on-board storage systems; 3 - How to improve electrical feeding substations, by changing transformer technology and by installing dedicated high-power-oriented storage systems; 4 - Algorithm applied to a vehicle-to-grid (V2G) technology. 5 - Thermal investigation and optimization of an air-cooled lithium-ion battery pack.

Power Electronics for Renewable Energy Systems, Transportation and Industrial Applications

Power Electronics for Renewable Energy Systems, Transportation and Industrial Applications PDF

Author: Haitham Abu-Rub

Publisher: John Wiley & Sons

Published: 2014-06-02

Total Pages: 1080

ISBN-13: 1118755502

DOWNLOAD EBOOK →

Compiles current research into the analysis and design of power electronic converters for industrial applications and renewable energy systems, presenting modern and future applications of power electronics systems in the field of electrical vehicles With emphasis on the importance and long-term viability of Power Electronics for Renewable Energy this book brings together the state of the art knowledge and cutting-edge techniques in various stages of research. The topics included are not currently available for practicing professionals and aim to enable the reader to directly apply the knowledge gained to their designs. The book addresses the practical issues of current and future electric and plug-in hybrid electric vehicles (PHEVs), and focuses primarily on power electronics and motor drives based solutions for electric vehicle (EV) technologies. Propulsion system requirements and motor sizing for EVs is discussed, along with practical system sizing examples. Key EV battery technologies are explained as well as corresponding battery management issues. PHEV power system architectures and advanced power electronics intensive charging infrastructures for EVs and PHEVs are detailed. EV/PHEV interface with renewable energy is described, with practical examples. This book explores new topics for further research needed world-wide, and defines existing challenges, concerns, and selected problems that comply with international trends, standards, and programs for electric power conversion, distribution, and sustainable energy development. It will lead to the advancement of the current state-of-the art applications of power electronics for renewable energy, transportation, and industrial applications and will help add experience in the various industries and academia about the energy conversion technology and distributed energy sources. Combines state of the art global expertise to present the latest research on power electronics and its application in transportation, renewable energy and different industrial applications Offers an overview of existing technology and future trends, with discussion and analysis of different types of converters and control techniques (power converters, high performance power devices, power system, high performance control system and novel applications) Systematic explanation to provide researchers with enough background and understanding to go deeper in the topics covered in the book

Energy Efficiency in Electric Motors, Drives, Power Converters and Related Systems

Energy Efficiency in Electric Motors, Drives, Power Converters and Related Systems PDF

Author: Mario Marchesoni

Publisher:

Published: 2020

Total Pages: 248

ISBN-13: 9783039363919

DOWNLOAD EBOOK →

Today, there is a great deal of attention focused on sustainable growth worldwide. The increase in efficiency in the use of energy may even, in this historical moment, bring greater benefit than the use of renewable energies. Electricity appears to be the most sustainable of energies and the most promising hope for a planet capable of growing without compromising its own health and that of its inhabitants. Power electronics and electrical drives are the key technologies that will allow energy savings through the reduction of energy losses in many applications. This Special Issue has collected several scientific contributions related to energy efficiency in electrical equipment. Some articles are dedicated to the use and optimization of permanent magnet motors, which allow obtaining the highest level of efficiency. Most of the contributions describe the energy improvements that can be achieved with power electronics and the use of suitable control techniques. Last but not least, some articles describe interesting solutions for hybrid vehicles, which were created mainly to save energy in the smartest way possible.

Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles

Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles PDF

Author: Sheldon S. Williamson

Publisher: Springer

Published: 2016-08-23

Total Pages: 0

ISBN-13: 9781493955237

DOWNLOAD EBOOK →

This book addresses the practical issues for commercialization of current and future electric and plug-in hybrid electric vehicles (EVs/PHEVs). The volume focuses on power electronics and motor drives based solutions for both current as well as future EV/PHEV technologies. Propulsion system requirements and motor sizing for EVs is also discussed, along with practical system sizing examples. PHEV power system architectures are discussed in detail. Key EV battery technologies are explained as well as corresponding battery management issues are summarized. Advanced power electronic converter topologies for current and future charging infrastructures will also be discussed in detail. EV/PHEV interface with renewable energy is discussed in detail, with practical examples.

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 PDF

Author: Ottorino Veneri

Publisher: Springer

Published: 2016-12-30

Total Pages: 307

ISBN-13: 3319436511

DOWNLOAD EBOOK →

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.

Power Electronics for Next-Generation Drives and Energy Systems

Power Electronics for Next-Generation Drives and Energy Systems PDF

Author: Nayan Kumar

Publisher: IET

Published: 2023-03-30

Total Pages: 515

ISBN-13: 1839534680

DOWNLOAD EBOOK →

The two volumes of this reference book cover power electronics for drives and energy systems for electrified transport and the development of the power grid. Volume 1 covers converters and control for drives, while Volume 2 addresses clean generation and power grids.

Power Converter of Electric Machines, Renewable Energy Systems, and Transportation

Power Converter of Electric Machines, Renewable Energy Systems, and Transportation PDF

Author: Adolfo Dannier

Publisher: MDPI

Published: 2021-09-02

Total Pages: 218

ISBN-13: 3036511709

DOWNLOAD EBOOK →

Power converters and electric machines represent essential components in all fields of electrical engineering. In fact, we are heading towards a future where energy will be more and more electrical: electrical vehicles, electrical motors, renewables, storage systems are now widespread. The ongoing energy transition poses new challenges for interfacing and integrating different power systems. The constraints of space, weight, reliability, performance, and autonomy for the electric system have increased the attention of scientific research in order to find more and more appropriate technological solutions. In this context, power converters and electric machines assume a key role in enabling higher performance of electrical power conversion. Consequently, the design and control of power converters and electric machines shall be developed accordingly to the requirements of the specific application, thus leading to more specialized solutions, with the aim of enhancing the reliability, fault tolerance, and flexibility of the next generation power systems.