
Electric Vehicle Components and Charging Technologies
Design, modeling, simulation and control
Institution of Engineering and Technology (Publisher)
Published on 30. January 2024
Book
Hardback
377 pages
978-1-83953-671-7 (ISBN)
Description
In order to create a reliable, safe and cost-effective electric vehicle with acceptable range, battery charging time, battery life and driving performance, it is important to design optimised and compatible components and charging systems.
This book offers an overview of the design, modeling, simulation and control of electric vehicle components and charging technologies. Chapters address the fundamentals of electric vehicles and the essentials of their power electronics components, discuss the principles of design, modeling, simulation and control, and then apply those principles to electric machines, drives and battery management systems. Where relevant, MATLAB/Simulink models are included. Further topics include fault tolerant operation, wired and wireless charging systems, power quality control, and grid integration. Current regulations and standards are also addressed.
Electric Vehicle Components and Charging Technologies: Design, modeling, simulation and control is intended to be suitable for newcomers to the field, though it assumes an engineering background. The discussions of emerging concepts, methods and realisation are also intended to be thought-provoking for more established researchers, engineers and industry professionals.
This book offers an overview of the design, modeling, simulation and control of electric vehicle components and charging technologies. Chapters address the fundamentals of electric vehicles and the essentials of their power electronics components, discuss the principles of design, modeling, simulation and control, and then apply those principles to electric machines, drives and battery management systems. Where relevant, MATLAB/Simulink models are included. Further topics include fault tolerant operation, wired and wireless charging systems, power quality control, and grid integration. Current regulations and standards are also addressed.
Electric Vehicle Components and Charging Technologies: Design, modeling, simulation and control is intended to be suitable for newcomers to the field, though it assumes an engineering background. The discussions of emerging concepts, methods and realisation are also intended to be thought-provoking for more established researchers, engineers and industry professionals.
More details
Series
Language
English
Place of publication
Stevenage
United Kingdom
Target group
College/higher education
Professional and scholarly
Product notice
sewn/stitched
Cloth over boards
Dimensions
Height: 234 mm
Width: 156 mm
Thickness: 22 mm
Weight
703 gr
ISBN-13
978-1-83953-671-7 (9781839536717)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Persons
Sanjeev Singh is a professor in the Electrical Engineering Department at Maulana Azad National Institute of Technology, Bhopal, India. He has 23 years' experience in teaching and research. His research interests are focused on energy management, renewable energy integration, electric vehicles, power electronics, and drives. He is a senior member of the IEEE, fellow of Institution of Engineers (IE) India, The Institution of Electronics and Telecommunication Engineers (IETE) India, and System Society of India (SSI) and a life member of the Indian Society for Technical Education (ISTE).
Sanjay Gairola is a professor in the Electrical Engineering Department at Govind Ballabh Pant Institute of Engineering and Technology (GBPIET), Uttarakhand, India. His fields of interest include power quality, power electronics, electric machines, drives, electric vehicles, and renewable energy. He is a senior member of the IEEE and a life member of the Indian Society for Technical Education (ISTE), India.
Sanjeet Dwivedi is a senior technology leader at green hydrogen based Danish MNC Everfuel A/S. Previously, he worked as a technology leader in Danfoss Global R&D in Denmark. His research interests include control methods of PM motors, induction motors, and synchronous reluctance motors, sensor-less control of AC drives, energy efficient control of drive, and power quality. He is a senior member of the IEEE and fellow of IET (UK).
Sanjay Gairola is a professor in the Electrical Engineering Department at Govind Ballabh Pant Institute of Engineering and Technology (GBPIET), Uttarakhand, India. His fields of interest include power quality, power electronics, electric machines, drives, electric vehicles, and renewable energy. He is a senior member of the IEEE and a life member of the Indian Society for Technical Education (ISTE), India.
Sanjeet Dwivedi is a senior technology leader at green hydrogen based Danish MNC Everfuel A/S. Previously, he worked as a technology leader in Danfoss Global R&D in Denmark. His research interests include control methods of PM motors, induction motors, and synchronous reluctance motors, sensor-less control of AC drives, energy efficient control of drive, and power quality. He is a senior member of the IEEE and fellow of IET (UK).
Editor
ProfessorMaulana Azad National Institute of Technology, Electrical Engineering Department, Bhopal, India
ProfessorGB Pant Institute of Engineering and Technology, Electrical Engineering Department, Uttrakhand, India
Senior Technology LeaderEverfuel A/S, Technology Management, Denmark
Content
Chapter 1: Electric vehicles and its components
Chapter 2: Electric vehicle fundamentals
Chapter 3: Electric energy sources and storage device
Chapter 4: Power electronic essentials in electric vehicle
Chapter 5: Design, modeling, simulation, and control of electric vehicle
Chapter 6: Design, modelling, simulation and control of electric machines and drives used in electric vehicle
Chapter 7: Battery management system for electric vehicle
Chapter 8: Fault-tolerant operation of electric vehicles
Chapter 9: Design, simulation, and control of battery charger for electric vehicle
Chapter 10: Power quality control of battery charging system
Chapter 11: Wireless power transfer for electric vehicle
Chapter 12: Grid integration of electric vehicles
Chapter 13: Regulations and standards of electric vehicles
Chapter 2: Electric vehicle fundamentals
Chapter 3: Electric energy sources and storage device
Chapter 4: Power electronic essentials in electric vehicle
Chapter 5: Design, modeling, simulation, and control of electric vehicle
Chapter 6: Design, modelling, simulation and control of electric machines and drives used in electric vehicle
Chapter 7: Battery management system for electric vehicle
Chapter 8: Fault-tolerant operation of electric vehicles
Chapter 9: Design, simulation, and control of battery charger for electric vehicle
Chapter 10: Power quality control of battery charging system
Chapter 11: Wireless power transfer for electric vehicle
Chapter 12: Grid integration of electric vehicles
Chapter 13: Regulations and standards of electric vehicles