Syllabus
Unit 1
Electric vehicles (EVs) – advantages and impacts – EV market and promotion – Infrastructure – International Regulation and standards Power quality ratings Homologation- AIS-038, AIS-039, AIS-040, AIS-049 – Energy efficiency – High Voltage standards for 400V systems – Assessing economy of EVs xEVs- Fuel economy – Fuel consumption – Greenhouse gas emissions.
Unit 2
ICE and xEV powertrain architectures and subsystems Motors- Sizing and design considerations-Power converters- motor control HIL Testing-Case studies: Development of MATLAB/Simulink models for EV
Unit 3
Energy storage systems – Batteries and battery parameters – Types and characteristics of EV batteries – Battery sizing -Battery testing – Battery monitoring SoC and SoH- Integration of EV subsystems- EV Chargers – Onboard and off-board chargers – Introduction to charging standards and protocols.
Text Books / References
- James Larminie, John Lowry, Electric Vehicle Technology Explained, 2nd Edition, John Wiley and Sons, 2012.
- John G. Hayes, G. Abas Goodarzi, Electric Powertrain Energy Systems, Power Electronics and Drives for Hybrid, Electric and Fuel Cell Vehicles, John Wiley and Sons, 2018.
- Sheldon S. Williamson, Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles, Springer-Verlag New York, 2013.
- Tom Denton, Electric and Hybrid Vehicles, Routledge, 2016.
- Adit Joshi, Automotive Applications of Hardware-in-the-Loop (HIL) Simulation, SAE International, 2019
Objectives and Outcomes
Course Objectives:
- To introduce standards, impacts and economy of electric vehicles
- To impart knowledge of electric and hybrid electric vehicle architectures
- To provide an understanding of subsystems in electric and hybrid electric vehicles
- To introduce battery testing, maintenance and monitoring techniques
Course Outcomes :
- CO01: Ability to understand standards, impact and economy of Electric Vehicles
- CO02: Ability to apply knowledge of vehicle subsystems for electric and hybrid electric configurations
- CO03: Ability to analyze the architectures of Electric and Hybrid Electric Vehicles
- CO04: Ability to design and simulate electric vehicle subsystems
CO-PO Mapping
| CO/PO |
PO1 |
PO2 |
PO3 |
PO4 |
PO5 |
PO6 |
| CO01 |
2 |
|
3 |
|
3 |
|
| CO02 |
2 |
|
3 |
|
|
2 |
| CO03 |
2 |
|
3 |
|
2 |
3 |
| CO04 |
2 |
|
3 |
2 |
2 |
3 |
Skills Acquired: Simulation and analysis of EV, HEV subsystems.