Indian Institute of Technology Delhi

Advanced Programme in Electric Vehicle Technology (APEVT Batch 10)

Indian Institute of Technology Delhi

eVIDYA

About Programme

Electric vehicles play a pivotal role in reducing dependence on crude oil, protecting the environment, and advancing sustainable mobility. With major manufacturers investing heavily in EV technologies, the sector is generating significant employment and growth opportunities for professionals equipped with the right expertise.

The E-Mobility ecosystem spans multiple key technologies, including electrochemical energy storage and conversion, electric drivetrains, and power electronics. EVs primarily rely on batteries, fuel cells, and supercapacitors, each requiring sophisticated power-electronic interfaces to integrate with vehicle drivetrains and charging infrastructure.

This programme offers a strong foundational understanding of storage technologies, from single cells to full battery packs, duty-cycle-based sizing, and essential power electronics used for interfacing energy devices with drivetrains. It also covers critical aspects of charging, from device-level mechanisms to grid-level interactions—along with introductions to smart grids, net metering, and system integration.

Designed to deliver a comprehensive view of Electric Vehicle (EV) Technology, the programme equips participants and working professionals with the knowledge, skills, and capabilities needed to thrive in the fast-evolving e-mobility domain and meet the training demands of Industry 4.0.

Programme Content

1. Overview of Electric Vehicle

This module will provide the background and overview of the programme learning. It will introduce the need for electric vehicles, classification of electric vehicles, understanding of electric drivetrain, etc.

Basic scheme of EV drivetrain

Vehicle dynamics and concept of drive cycles

2. Batteries, Fuel Cell & Supercapacitor for Electric Vehicle

This module is designed to provide a relevant and holistic view of the various terminologies and fundamentals of any electrochemical device.

Electrochemical cell and battery

Influence of battery on EV range and cost

Type of batteries used in EV

Other electrochemical storage relevant to EV: fuel cell, supercap, flow battery

3. Battery Characteristics

This module will cover the battery types relevant to EVs, their key performance indicators and present the state-of-the-art as well as future directions.

Battery state and rate of discharge: SoC, SoH, C-rate

Key characteristics of battery: Voltage, current-voltage characteristics

Li-ion battery: present state of the art and future directions

Li-ion battery fault diagnosis, safety and testing

4. Cell to Battery Module and Pack

The understanding gained from module 3 will be used for designing and building of module and packs from the cells for real application.

Li-ion cell manufacturing process

Electrical design and sizing of the battery pack

Cell balancing

Mechanical and thermal design of battery pack

5. Power Electronics Interface

The charge discharge of the battery pack requires matching of its characteristics with the charger and drivetrain characteristics. This matching is through power electronics devices and this learning module will provide relevant background to power electronics required to understand the design and working of power electronics interface.

Voltage and current levels in EV

Power electronics interface – components and devices

Convertors and invertors

EMI and EMC

Traction motors and their characteristics

6. BMS & Electric Vehicle Chargers

The success of the electric vehicle will depend on the suitable charging infrastructure. The module will cover the relevant details related to chargers as well as smart and mini-grids, etc.

Battery management system (BMS)

Power-train architecture

EV charging levels

Charger types and standards

EV charging techniques

7. Overview of Policies

This module will discuss various government policies relevant to electric vehicles.

EV Indian scenario and future projections

Total cost of ownership

Indian EV policies

Note: This is an indicative list of course topics and is subject to change as per IIT Delhi's discretion.

Programme Audience

Eligibility Criteria

For Indian Participants - Graduates or Diploma Holders from a recognised University/Institutes(UGC/AICTE/DEC/AIU/State Government) in any discipline.

For International Participants - Graduation or equivalent degree from any recognised University or Institution in their respective country.

Programme Benefits

E-Certificate Of Completion From CEP, IIT Delhi

Gain Industry-oriented Insights From IIT Delhi Faculty

Live Interactive Sessions By IIT Delhi Faculty

Group Project

Cutting-edge Curriculum Designed By IIT Delhi Faculty

Peer-to-peer Learning

Testimonials

"My motivation to join the Advanced Programme in Electric Vehicle Technology at CEP, IIT Delhi was to enhance my practical exposure and refine my conceptual understanding of modern EV systems. The programme helped me bridge theory and application in batteries, power electronics and charging infrastructure. Interactions with the faculty and peers, combined with project work, provided valuable insights that I could immediately relate to my role. I would strongly recommend this programme to beginners and mid-level professionals keen to grow in the EV field."

Anonymous

"This programme has been truly enriching for anyone aspiring to build a career in the EV industry. The learning experience has been comprehensive and well-structured. I also appreciate the excellent coordination from the Jaro team in providing study materials, recorded sessions, and timely support throughout the programme."

Anonymous

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Prashansa Uttam

Programme Advisor

+91 9403890085[email protected]Mon – Fri, 9am – 5pm IST

Indian Institute of Technology Delhi

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Advanced Programme in Electric Vehicle Technology | IIT Delhi