Online Live + Hands On

Professional Certification Program in EV Automotive Design and Simulation

4.8/5
4.8
This program offers a comprehensive journey into electric vehicle (EV) engineering and automotive design, covering essential EV technology, modeling, finite element analysis, and automotive concept design. Students will gain hands-on experience in industry-standard software such as SOLIDWORKS, ANSYS, and Autodesk Alias, learning to model, analyze, and visualize EV components and systems. The curriculum provides the technical skills and creative insights necessary for roles in EV design, component modeling, and engineering analysis.

Want to know more? Enter your information to learn more about this program from IIT Guwahati and Download Program Brochure

 

February 15, 2025

Admission Closes On

3 Months

Program Duration

Online Live + Hands On

Learning Format

22,000 INR

Fees

World's Top Ranked Indian Institute of Technology

NIRF 2024 7th

QS World University Rankings
344

The World University 2024
601-800

In association with

What we do

Driving Green & Sustainable Energy Transformation, Powering Mobility Industry, workforce and upskilling Since 2012

Recognized by the best

DIYguru is recognized and endorsed by  major educational and governmental organizations including the Ministry of Education, NITI Aayog, and NEAT AICTE for its commitment to upskilling in automotive and EV technologies. The institute also collaborates with industry leaders like L&T EduTech and the Ola Mobility Institute to ensure the relevance and practicality of its training programs.

Learn by doing - the DIY way
We support continuous learning, development, and apprenticeship to help our people achieve their full potential.
Training and Benefits
From stipend and benefits to developmental programs and training, we aim to support your growth.
Teams Drive Stronger Results
We convene people with diverse perspectives and background to deliver the sharpest solutions for e-mobility industries.
Activities and Events
We provide opportunities to learn, socialize, and develop our relationships as people and colleagues.
Career Development
Access and opportunities are competitive advantages – and we’re committed to affording our people both.
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Our Network helps alumni connect to enhance business development, support recruiting, and more.

Learn why more than 183+ organisations trust DIYguru

This program offers a comprehensive journey into electric vehicle (EV) engineering and automotive design, covering essential EV technology, modeling, finite element analysis, and automotive concept design. Students will gain hands-on experience in industry-standard software such as SOLIDWORKS, ANSYS, and Autodesk Alias, learning to model, analyze, and visualize EV components and systems. The curriculum provides the technical skills and creative insights necessary for roles in EV design, component modeling, and engineering analysis.
Leverage the prestige of IIT Guwahati

  • Program certificate and 'Executive Alumni Status' from the E&ICT Academy, IIT Guwahati
  • Opportunity to attend a campus immersion program hosted by IIT Guwahati
  • Engage in interactive sessions led by IIT faculty and industry veterans.
  • Deep dive into advanced EV design, control systems, and embedded systems.
  • Flexible scheduling to accommodate working professionals and freshers.
  • Work on powertrain optimization and battery management systems.
  • Apply skills through EV simulations using MATLAB and SIMULINK.
  • Hands-on projects aligned with real-world industry needs.
  • Receive personalized guidance on technical challenges.
  • Get career advice from seasoned mentors and industry experts.
  • In-depth support tailored to individual learning needs.
  • Access round-the-clock assistance for a smooth learning experience.
  • Immediate response to academic and technical queries.
  • Dedicated support team available for continuous guidance.
  • Gain insights directly from IIT Guwahati faculty.
  • Learn from industry professionals with practical experience in EVs.
  • Bridge the gap between theoretical concepts and real-world applications.
  • Flexible learning pathways to suit diverse needs.
  • Accommodates the schedules of working professionals.
  • Offers a comprehensive introduction for freshers entering the EV sector.
  • Access quality education with interest-free payment plans.
  • Ease the financial burden of pursuing advanced studies.
  • Multiple payment options available for added convenience.
  • Boost your credentials with a globally recognized certification.
  • Enhance your career prospects in the EV industry.
  • Certification recognized by leading industry players and employers.
  • Resume building and LinkedIn profile optimization.
  • 1:1 mock interviews to prepare for job opportunities.
  • Dedicated career support to enhance employability.
  • 24 hours of additional training focused on EV embedded applications.
  • Hands-on training for EV retrofitment and practical applications.
  • Gain expertise from industry-leading professionals.
  • Experience state-of-the-art labs and facilities.
  • Network with peers and industry leaders during the program.
  • Engage in on-campus activities for a deeper learning experience.
  • Receive a kit developed by DIYguru in collaboration with IIT Delhi, Tadpole Projects, and EVI Technologies.
  • Enhance your learning with practical, hands-on experience.
  • Tools included for building and testing EV components.
  • Accredited by NEAT AICTE and ASDC for high educational standards.
  • Ensures industry relevance and compliance with technical standards.
  • Recognized by employers across the EV industry.
  • Leverage DIYguru's extensive network of industry partnerships.
  • Access opportunities for job placements and industry exposure.
  • Collaborations with leading automotive and EV manufacturers.
  • Leverage DIYguru's extensive network of industry partnerships.
  • Access opportunities for job placements and industry exposure.
  • Collaborations with leading automotive and EV manufacturers.
  • Days
    Hours
    Minutes
    Seconds

    Want to know more? Enter your information to learn more about this program from EICT – IIT Guwahati.

    • EV System Design: Developing core EV components such as batteries, powertrains, and electrification systems.
    • 2W Vehicle Modeling: Specializing in modeling two-wheeler EVs, focusing on component arrangement and assembly.
    • Finite Element Analysis: Conducting stress and thermal analysis to assess structural durability and heat management.
    • Automotive Design: Conceptualizing and visualizing automotive models with focus on design aesthetics and functionality.
    • Thermal Management: Implementing cooling solutions and analyzing heat dissipation in EV systems.
    • Component Simulation: Simulating dynamic and real-world conditions to optimize component performance.
    • Rendering and Visualization: Creating photorealistic visuals for automotive design validation and presentations.
    • EV Design Engineer: Designs and develops EV components and systems for enhanced performance.
    • Vehicle Modeling Specialist: Uses SOLIDWORKS to model and assemble two-wheeled EVs, focusing on structural integrity and component layout.
    • FEA Analyst: Performs finite element analysis on EV components to ensure structural and thermal stability.
    • Automotive Concept Designer: Works with Autodesk Alias to create and visualize automotive designs, enhancing the concept development process.
    • Thermal Analyst: Specializes in analyzing and managing heat dissipation for EV components.
    • Simulation Engineer: Simulates real-world performance of EV systems to ensure reliability and durability.
    • Visualization Specialist: Creates photorealistic renderings for design presentations and marketing collateral in the automotive field.
    • EV System Knowledge: Understanding of core EV components, electrification, and charging infrastructure.
    • 2W Vehicle Modeling: Skills in using SOLIDWORKS for component and assembly modeling.
    • Finite Element Analysis: Expertise in ANSYS for stress and thermal analysis.
    • Surface Modeling: Proficiency with Autodesk Alias for creating and refining 3D surface models.
    • Thermal Analysis: Knowledge of CFD techniques and thermal management for EV systems.
    • Design Aesthetics: Skills in creating visually compelling automotive designs.
    • Rendering Techniques: Experience in rendering high-quality images for design presentation and concept validation.
    • Tata Motors
    • Mahindra Electric
    • Ather Energy
    • Ola Electric
    • TVS Motor Company
    • Hyundai Motor India
    • Ashok Leyland
    • MG Motor India
    • Hero Electric
    • Kinetic Green Energy & Power Solutions

     

     

     

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    Module 1: EV Engineering Essentials Part I and II
    • Module Description:
      • This foundational module introduces the principles of EV technology, starting with an overview of EV systems and transitioning from ICE to electric power. Students explore key EV components, design principles, battery technology, power electronics, motor systems, vehicle wiring, and electrification. The module concludes with an in-depth examination of charging infrastructure, covering standards and fast-charging technologies.
    • Module Details:
      • Starting with EV Technology: Overview of Electric Vehicles, Components, Key Technologies
      • Understanding ICE to EV Transition: Key Differences, Benefits, Challenges
      • Electric Vehicle Engineering: EV Design Principles, Key Subsystems, Safety Considerations
      • Battery Technology for EV Systems: Battery Chemistries, Energy Density, Charging Cycles
      • Power Electronics for EV Systems: Inverters, Converters, Power Management
      • Motor Systems for Electric Vehicles: Types of Motors, Control Strategies, Efficiency Optimization
      • Vehicle Electrification Systems: Vehicle Wiring, Voltage Distribution, High and Low Voltage Components
      • Electric Vehicle Charging Technology: Charging Infrastructure, Standards (CCS, CHAdeMO), Fast Charging Solutions
    • Module Description:
      • This module provides hands-on training in using SOLIDWORKS to model and design two-wheeled electric vehicles (EVs). Students start with chassis design, learning to build a foundational structure that supports the vehicle’s components. They then proceed to swingarm and wheel design, focusing on critical components for stability and maneuverability. Tire modeling is introduced, where students work with design specifics relevant to EVs, including motor controller integration. Finally, handlebar design and other assembly components are completed, giving students experience in creating a fully modeled two-wheeler EV in SOLIDWORKS.
    • Module Details:
      • Chassis Design: Designing the vehicle chassis
      • Swingarm and Wheel Design: Critical component modeling
      • Tire Design: Tire modeling and motor controller
      • Handlebar Design: Finalizing assembly components
    • Module Description:
      • In this module, students will learn to use ANSYS for engineering analysis specific to electric vehicles, beginning with an introduction to CAD/CAE tools and the ANSYS environment. The module covers the fundamentals of Finite Element Analysis (FEA) and material properties, enabling students to select appropriate materials for EV applications and conduct stress tests. Students are guided through ANSYS project setup, geometry handling, meshing, and structural analysis. Boundary conditions, load applications, and meshing techniques are applied to evaluate the durability of EV components. Additional topics include heat transfer analysis for thermal management, CFD for cooling simulations, and advanced non-linear analysis techniques, allowing students to simulate real-world conditions for complex EV components.
    • Module Details:
      • Introduction to CAD/CAE and ANSYS: Overview of CAD Tools, ANSYS for Engineering Design
      • Fundamentals of FEA and Material Properties: Finite Element Analysis, Material Selection for EVs
      • ANSYS Project Setup and Geometry Handling: Building CAD Models, Importing into ANSYS
      • Meshing, Analysis Setup, and Structural Analysis: Mesh Generation, Boundary Conditions, Load Applications
      • Heat Transfer Analysis: Thermal Analysis, Heat Dissipation in EV Systems
      • CFD: Fluid flow analysis for cooling
      • Nonlinear Analysis: Advanced simulation techniques
    • Module Description:
      • This module introduces students to the artistic and technical elements of automotive design using Autodesk Alias. Starting with an overview of the Alias interface, students learn to create and edit curves for 3D modeling, transforming 2D sketches into refined 3D surfaces. Advanced object editing tools are explored to enhance object manipulation skills and refine models. The module includes a deep dive into product design techniques, taking students through an end-to-end workflow for creating an industrial product. Focusing on automotive design, students create detailed vehicle models and employ rendering and visualization techniques to produce photorealistic images, which are essential for design presentations and concept validation.
    • Module Details:
      • Introduction to Autodesk Alias: Overview of Alias interface, tools, and history.
      • Curve Creation and Editing: Techniques for creating and refining curves in 3D modeling.
      • Surface Modeling and Refinement : Transition from 2D sketches to 3D surface models.
      • Advanced Object Editing: Explore advanced tools for detailed object manipulation.
      • Product Design Techniques: End-to-end workflow for product design in industrial contexts.
      • Automotive Design: Step-by-step process for creating comprehensive vehicle models.
      • Rendering and Visualization: Techniques for photorealistic rendering and design presentation.
    EV System Knowledge
    2W Vehicle Modeling
    Finite Element Analysis
    Surface Modeling
    Thermal Analysis
    Design Aesthetics
    Rendering Techniques
    Comprehensive Design and 3D Modeling of an EV Bike System

    Design and develop a complete 3D model of an electric bike, covering all essential components from chassis to motor integration for a realistic prototype.

    Advanced Non-Linear Transient Analysis of Engineering Component System

    Perform transient analysis on EV components under dynamic conditions, focusing on non-linear behavior to enhance reliability and safety.

    Concept Automotive Design using Autodesk

    Use Autodesk software to create concept designs for automotive applications, from initial sketches to refined 3D models for aesthetic and functional evaluation.

    • Comprehensive introduction to EV design and modeling concepts.
    • Practical experience with SOLIDWORKS, ANSYS, and Autodesk Alias.
    • Increased employability in the automotive and electric vehicle industries.
    • Real-world skills in 2D and 3D modeling, FEA, and simulation.
    • Exposure to automotive concept design and visualization techniques.
    • Develop advanced skills in EV component modeling and automotive design.
    • Hands-on experience with industry-standard design, simulation, and analysis tools.
    • Opportunity to move into high-demand roles in EV engineering and design.
    • Strong foundation in simulation and finite element analysis for durability testing.
    • Competitive advantage in the automotive and green technology sectors.
    • Model and Design 2W EV Components: Use SOLIDWORKS to design, model, and assemble two-wheeled EV components, including chassis and handlebar systems.
    • Conduct Advanced FEA and Thermal Analysis: Apply ANSYS for finite element and thermal analysis to evaluate component durability and heat dissipation.
    • Create Photorealistic Automotive Models: Use Autodesk Alias to design, refine, and visualize automotive models, enhancing their presentation quality.
    • Simulate Real-World Performance: Use CFD and non-linear analysis techniques to simulate real-world conditions and improve component reliability.
    • Understand EV Power and Charging Systems: Gain knowledge of EV power management, including battery technology, power electronics, and charging standards.
    • Optimize Motor Systems for Efficiency: Apply control strategies and efficiency optimization methods to motor systems within EVs.
    • Prepare Designs for Manufacturing: Produce detailed component models and simulations suitable for prototyping and manufacturing.

    Complete on-site
    classroom program

    Location: Mumbai

    LIVE + Recorded + Onsite + Hardware + Workshop

    LIVE + Weekend on-site sessions

    Location: Pune, Delhi

    LIVE + Recorded + Hardware + Workshop

    Location: Global

    Hardware Labs Access

    Two-Wheeler Simulator & Test Bench

    The 2 Wheeler Simulator & Testbench focuses on evaluating EV battery performance, including voltage, current, discharge profiles, and capacity testing under various load conditions. It also covers Battery Management System (BMS) testing and dynamic load analysis to optimize electric bike performance and safety.
    LAB 1

    Charging Station Simulator and Test Bench

    The Charging Station Simulator and Test Bench covers experiments focusing on the efficiency, behavior, and safety features of EV charging systems. It includes the measurement of voltage, current, and power consumption during charging, and tests security features like RFID and OTP-based authentication. Key areas include energy efficiency analysis, protection unit testing, and charging behavior under different conditions
    LAB 2
    Hardware Lab Attendees

    Our Alumni: Shaping the Future of Innovation

    Ankit Khatri

    EIR – DIYguru | R&D Testing & validation Engineer at CREATARA | Ex- ICAT

    Supratim Das

    EIR – DIYguru | Hardware Generalist @ Google || Ex – Exponent Energy || Ex- Taqanal Energy || Ex- HCL Technology || E- Mobility, Energy Mentor

    Industry Partners

    Unlock Top Industry Placements with DIYguru

    Alumni's

    Those who trust us

    FAQs

    How do I know if this program is right for me?

    After reviewing the details on the program’s landing page, we recommend filling out the short form provided to access the program brochure, which contains more detailed information. If you have any remaining questions about whether this program suits your goals, please reach out to us at learner.success@diyguru.org. A dedicated program advisor will get back to you promptly to help you decide.

    Are there any prerequisites for this program?

    Some programs, especially those that are more technical, may have prerequisites. This information will be clearly mentioned on the program landing page and in the program brochure. If you’re unsure about the prerequisites or your qualifications, feel free to email us at the above-mentioned address for clarification.

    Please note that all programs are conducted in English, and proficiency in English is necessary unless otherwise stated on the program page.

    What is the typical class profile?

    Participants come from various professional backgrounds and geographic locations. On average, more than half of the participants are from outside India, making for a diverse and enriching peer-learning and networking environment. Each cohort brings together professionals with varying experiences, industries, and perspectives, enhancing the learning experience.

    What are the upcoming dates for this program?

    Check the program page for updates on future start dates, or email us to inquire if new dates have been confirmed.

    Are there any hardware-enabled hands-on components in the program?

    Yes, select programs offer hardware-enabled hands-on training, where hardware kits are delivered to your home to support practical learning. The details of these hands-on components will be provided in the specific program outline. This unique offering allows participants to gain real-world experience in EV technology, embedded systems, and other technical domains while learning from the comfort of their homes.

    How much time is required each week?

    Each program provides an estimated weekly time commitment, noted under the Duration section on the landing page and within the program brochure. You can access the brochure by submitting the form on the program page.

    How will my time be spent?

    This program is designed to fit seamlessly into your schedule. Your time will be divided among various activities, including:

    • Watching recorded video lectures delivered by the faculty
    • Attending live webinars and office hours (schedule-specific)
    • Engaging with examples and readings on core topics
    • Completing quizzes, knowledge checks, and required tasks
    • Participating in moderated discussions with peers
    • Working on the final project (if applicable)
    • Engaging with hands-on hardware (where applicable)

    The program is designed to be interactive, combining structured learning activities with self-reflection, enabling participants to grasp the key concepts effectively. Should you need further clarification, please email us for details.

    What is it like to learn online with DIYguru & EICT IIT Guwahati?

    More than 300,000 learners from across the globe have advanced their skills with programs like this. Our learners have reported a high rate of satisfaction, with 90% stating that the learning outcomes met or exceeded their expectations.

    At the start of the program, all course materials will be made available. To ensure an optimal experience, a cohort-based approach is managed by our support team, the cost of which is included in the program fee.

    Our dedicated support team is available 24/5 (Monday to Friday) to assist you with any technical queries or concerns regarding the learning platform.

    How do I interact with other participants?

    Peer-to-peer learning is a significant part of the program. You can interact with other participants through the program’s learning platform, engaging in discussions, group activities, and projects.

    What are the requirements to earn the certificate?

    Each program outlines the expected learner effort per week, helping you gauge the commitment before enrolling. This information is provided on the landing page under the Duration section, as well as in the program brochure. Participants must complete all required activities to pass and earn a certificate of completion. Some programs may include final project submissions or assignments. You can always email us for further clarification on specific program requirements.

    What type of certificate will I receive?

    Upon successfully completing the program, you will be awarded a digital certificate. This smart digital certificate can be shared on platforms like LinkedIn or included in your resume or cover letter. It will be issued approximately two weeks after the program ends, once grading is completed.

    Can I get a hard copy of the certificate?

    Only verified digital certificates are issued, which you can conveniently share across social media platforms such as LinkedIn, Facebook, and Twitter.

    Will I receive alumni status after completing this program?

    No, alumni status is not granted upon completing this program. However, in some cases, credits from this program can count towards higher-level certifications. This will be indicated in the program brochure.

    How long will I have access to the learning materials?

    You will have access to all program materials and videos for 12 months after the program begins. Access is limited to registered participants only.

    What support is available for placements?

    All enrolled students gain access to emobility.careers, our dedicated platform for placement support. This resource helps connect you with job opportunities in the electric vehicle and e-mobility sectors, providing a bridge between your learning and career advancement.

    What equipment or technical requirements are there for this program?

    You’ll need the latest version of your preferred browser to access the learning platform. Additionally, Microsoft Office and a PDF viewer are required for accessing documents, spreadsheets, presentations, and PDFs.

    Do I need to be online to access the program content?

    Yes, the program is hosted online, and video content is streamed via the internet. While you cannot download video lectures, you can download other materials like transcripts, templates, and readings. The program can be accessed on desktop, laptop, tablet, or mobile devices.

    Live webinars and office hours will also require an internet connection, though recordings will be available for later viewing.

    Can I register after the deadline?

    Yes, you can register up to seven days after the program starts without missing core content.

    What is the program fee, and what forms of payment are accepted?

    The program fee is listed on the landing page and in the brochure. Flexible payment options are available, and tuition assistance may be available to qualified participants. For more details, please email learner.success@diyguru.org.

    What payment methods are accepted?

    You can pay via credit card, debit card, or wire transfer in the program’s designated currency. Please contact us for more details.

    Can I still use a discount code after enrolling?

    Yes! If you face any issues with a discount code, email us with your program details, and we’ll assist you.

    How can I get an invoice for payment?

    Email us with your invoicing requirements, and we’ll send the necessary details.

    Are flexible payments available?

    Yes, participants can opt for flexible payment options, available at the payment stage before submitting your fee.

    Who will collect the payment for the program?

    DIYguru will manage all payment collection, learner support, and platform services.

    For details on our refund and deferral policy, please visit the designated section on our website.

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