Buch, Englisch, 582 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 450 g
Global Trends, Policies, and Practices
Buch, Englisch, 582 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 450 g
ISBN: 978-0-323-95201-9
Verlag: Elsevier Science
Each part of the book covers a subdomain of e-mobility, beginning with an introductory chapter reviewing existing literature; the subsequent chapters are arranged to each follow the previous one. Other available books focus on specific technical subdomains of e-mobility, but none provides the wider outlook to meet the requirements of all audiences. This book uniquely brings together topics that are not otherwise easily accessible or available to these audiences.
This book will be beneficial for engineers, scientists, and researchers, providing them with a comprehensive standard benchmark work to explore the evolving aspects of charging infrastructure for e-mobility. Further, it will also help policymakers, practitioners and government entities formulate policies for successful implementations of e-motility for their masses. The techno-socio-economic focus will serve as standard literature for all.
Autoren/Hrsg.
Weitere Infos & Material
Part 1: EV Charging Technologies and Integration
1. Integration of PV to EV Charging Systems - State of the Art
2. Emerging Electric Vehicle Technologies: Topologies, Charging Infrastructure, Grid Stability, and Economic Impacts
3. EV Charger and its Technologies
4. Power Converter Topologies for EV Chargers: Future Technology, Challenges and Trends
5. A Detailed Review on Fast Charging Solutions for Electric Vehicles
Part 2: Energy Management and Infrastructure
6. Requirement of Integration of RES with Charging Infrastructure
7. RES and EV Charging - Potential Scenarios
8. Energy Storage System for EV Chargers
9. Charging Infrastructure as an Enabler for E-Mobility
Part 3: Policy, Management, and Socio-Economic Impact
10. Innovative Approaches to E-Mobility Charging in a Renewable World
11. Demand Side Management and Managing Electric Vehicles and their Optimal Charging Locations and Scheduling in Smart Grid
12. Reinforcement Learning-Based Dynamic Pricing Models for Electric Vehicles Charging
13. Socio-Techno-Economic-Environmental Analysis of Vehicle to Grid Integrated E-Mobility in Achieving Sustainable Development Goals: A Case Study
14. Policies for the Future: Promoting Electric Vehicle Deployment