About the Program
Explore the cutting-edge field of Electric Vehicles (EVs) with our specialized EV program designed for EEE / ECE / E&I / Mechatronics Engineering students. Starting with "Fundamentals of Electric and Hybrid Electric Vehicle Technology", this course covers essential topics such as the paradigm shift in automotive megatrends, types of EVs, hybrid Electric Vehicle architecture, and an overview of batteries, powertrains, and sustainability challenges. In the "Electric Drive Systems: Batteries, Powertrains and Transmissions" course, learners will delve into the nuances of battery technology, electrochemistry, cell characteristics, battery pack integration, BMS protocols, protection, safety standards, and power electronics and transmission systems. The program continues with "Electric Vehicle Design Through Simulation", providing hands-on experience with simulation tools for practical design aspects of EVs. In "EV Charging Infrastructure and Guidelines", students will explore the essential infrastructure required for supporting EV growth. Finally, "Embedded Systems for EV" and "E-Drive System, Design and Control Strategy for EV" cover the critical role of embedded systems in vehicle functionality and the complexities of drive systems, respectively. This comprehensive program equips learners with the knowledge and skills to excel in the dynamic field of Electric Vehicles.
Courses
    Credits Semester
  • Fundamentals of Electric and Hybrid Electric Vehicle Technology 3 III
  • Batteries, Powertrains and Transmissions for EVs 3 IV
  • EV Charging Infrastructure and Guidelines 3 V
  • Embedded System for EV 3 V
  • E-Drive System, Design, and Control Strategy for EV 3 VI
  • Systems Engineering Approach to EV Design 3 VII
    Credits Semester
  • Digital Enablement Basics for Engineers 3 I
  • Critical Thinking, Design Thinking, Leadership and Teamwork 3 II
  • Project Management for Professionals / Finance for Professionals 3 VIII
    Credits Semester
  • Critical Thinking, Design Thinking, Leadership and Teamwork 3 II
  • Career Readiness in Digital Era 3 VI
Mode of Delivery
  • Self-paced learning + Expert session (VILT) – 30 hours
  • Project work – 15 hours
  • Face-to-face instructor led sessions / VILT sessions – 45 hours (including project work)
Job Roles
  • EV - Engineer - Battery pack
  • EV-Engineer-EV ECU’s
  • EV-Engineer-Motor Design
  • EV-Engineer-Charging
  • Software Engineer- EV ECU’s
  • Software Engineer - Monitoring & Diagnostics
  • Software Tester - EV ECU’s
  • Software - HiL Tester - Battery
  • Software - HiL Tester -Invertor
  • Softwate - HiL tester - DC-DC
  • Simulation-Engineer-battery
  • Simulation-Engineer-E-Drive
  • Simulation-Engineer-DC-DC
  • Hardware Engineer - Battery
  • Hardware Engineer - DC-DC
  • Hardware Engineer - Inverter
  • Hardware Engineer - On Board Charger
  • EV-Engineer-Function Safety
Software Tools
  • MATLAB
Skills
  • Electric Vehicle design aspects
  • Advanced Simulation Techniques
  • Embedded Systems Expertise
  • Comprehensive System Control
  • Specialise in Charging Infrastructure