Electric Vehicle (EV) Design and Analysis Training

Drive your success with myTectra’s Electric Vehicle (EV) Design and Analysis Training. Learn advanced EV concepts and industry practices. Enroll Today!

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Course Overview

Learn EV design and analysis with MATLAB/Simulink, ANSYS, and projects. Gain skills to design, optimize, and test complete EV systems.

This course offers a step-by-step learning journey into the design, modeling, and performance analysis of Electric Vehicles (EVs). Starting from fundamental concepts in vehicle dynamics and battery systems, it progresses to advanced topics such as drivetrain design, power electronics integration, control strategies, and simulation-based performance analysis. Learners will gain hands-on exposure to MATLAB/Simulink, ANSYS, and other industry-standard tools, enabling them to design and evaluate EV systems for real-world applications.

The training is structured into three progressive levels:

  • Basic – Core concepts, EV types, power sources, and introduction to modeling.
  • Intermediate – Detailed design of subsystems, integration, and performance optimization.
  • Advanced – Complete EV design workflow, simulation, testing, and case study projects.
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Learning Objectives

 

Prerequisites

 

Curriculum

Module 1 – Basic Level: Foundations of Electric Vehicles
Introduction to Electric Vehicles
  • History and evolution of EVs
  • EV vs Hybrid vs Internal Combustion Engine (ICE) vehicles
  • Applications in personal, commercial, and industrial sectors
EV Architectures & Configurations
  • Battery Electric Vehicle (BEV)
  • Hybrid Electric Vehicle (HEV)
  • Plug-in Hybrid Electric Vehicle (PHEV)
  • Fuel Cell Electric Vehicle (FCEV)
Basics of Vehicle Dynamics
  • Forces on a moving vehicle (tractive force, rolling resistance, aerodynamic drag)
  • Acceleration, braking, and gradeability
Introduction to EV Powertrain Components
  • Electric motor types (BLDC, PMSM, induction)
  • Battery pack basics
  • Power electronics overview (inverters, converters, chargers)
Introduction to Energy Storage Systems
  • Battery chemistry overview (Li-ion, LFP, NiMH)
  • Cell configurations and pack assembly
  • SOC, SOH, and energy density basics
Introduction to Simulation Tools
  • Overview of MATLAB/Simulink and ANSYS for EV analysis
Intermediate Level: EV Subsystem Design & Integration
Electric Motor Selection & Design
  • Torque-speed characteristics
  • Motor sizing for EV applications
  • Efficiency maps
Battery Pack Design
  • Cell selection and configuration
  • Thermal management system basics
  • Passive vs active cooling strategies
Power Electronics for EVs
  • DC-DC converters, inverters, and onboard chargers
  • Regenerative braking circuitry
Vehicle Dynamics in Detail
  • Longitudinal and lateral dynamics
  • Weight distribution and center of gravity considerations
Control Systems in EVs
  • Motor control strategies (FOC, DTC)
  • Energy management strategies
Performance Analysis & Optimization
  • Range estimation and driving cycle analysis (NEDC, WLTP)
  • Efficiency improvement methods
Communication & Diagnostics
  • CAN protocol basics in EVs
  • Fault detection and diagnostic systems
Module 3 – Advanced Level: EV Design, Simulation & Testing
Advanced Battery Modeling
  • SOC/SOH/SOE estimation techniques
  • Kalman filter and adaptive algorithms for battery state estimation
Advanced Powertrain Simulation
  • Multi-domain simulation in MATLAB/Simulink
  • Coupling with ANSYS for thermal & structural analysis
Full Vehicle Modeling
  • Component integration into full vehicle model
  • Range, acceleration, and top speed prediction
Thermal Management in EVs
  • Cooling systems for motors, batteries, and power electronics
  • CFD-based thermal analysis
Charging Infrastructure & Grid Integration
  • AC/DC charging levels and standards
  • V2G (Vehicle-to-Grid) technologies
Testing & Validation
  • Hardware-in-the-loop (HIL) testing
  • Real-world performance testing and data analysis
Case Studies & Capstone Project
  • Design of a complete EV for a target performance specification
  • Simulation and optimization of the design
  • Presentation and review of project outcomes
Hands-On Lab Activities
  • Basic EV performance calculation using MATLAB
  • Battery pack sizing and configuration
  • Motor torque-speed curve plotting and selection
  • Simulating a WLTP driving cycle
  • Designing an inverter for an EV motor
  • Integrating subsystems into a full EV model
  • Simulating regenerative braking efficiency
  • Conducting HIL tests for EV control logic

Get Started with a Demo

 

Key Features of our Training.


 

Testimonials

Success Stories in Their Own Words

"In-depth coverage of cell electrochemistry and thermal runaway prevention was impressive. The hands-on sessions with ANSYS for battery pack simulation were directly applicable to my current research and development projects."
Rimi Banerjee
Battery Systems Analyst
"The best part was the constant support from the Iteanz team throughout the course. They ensured we never got stuck. The learning materials and video lectures are comprehensive and very well-made. Definitely boosted my confidence!"
Bhavanesh K
Fresh Graduate
“Gained profound knowledge on EV-specific chassis design principles and tolerance analysis. The faculty's methodical approach to integrating CAD with real-world manufacturing constraints significantly elevated my design precision.”
Aarvika Gupta
AutoCAD Designer
“Excellent focus on CFD analysis for battery cooling systems. Learning advanced techniques for optimizing thermal efficiency and fluid dynamics has been directly beneficial for my work in thermal management. Highly recommend to anyone curious about EVs!”
Madan Kumar
Thermal Management Engineer
 

FAQ's

What is the purpose of Electric Vehicle (EV) Design and Analysis Training course?

This course equips learners with skills to design, model, and analyze complete EV systems. It focuses on improving efficiency, safety, and performance using advanced tools, simulations, and real-world applications.

Will I receive a certificate after completing the training?

Yes, participants receive a certificate of completion from myTectra upon finishing the course.

Is this course available online or only in-person?

myTectra offers both online and in-person training options to accommodate different learning preferences.

What are the payment options?

Payments can be made using any of the following options and a receipt of the same will be issued to you automatically via email for both classroom training and Online training.

  • Visa Debit/Credit Card
  • American Express and Diners Club Card
  • Master Card
  • PayPal
  • Net Banking/Wire Transfer
  • UPI Payment such as Google Pay, PhonePe, Paytm
  • Cash/Cheque/DD ( Not for Online Training )
What if I have more queries?

Just give us a CALL at +918047112411 OR email at support@mytectra.com

 

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