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Professional Certification Program in Electric Vehicle Design and Simulation Engineering

By DIYguru · 11/11/2024 · 27 min read

This program offers a thorough understanding of electric vehicle (EV) engineering, emphasizing design, simulation, and analysis techniques. Covering essential EV technology concepts, powertrain simulation, finite element analysis, and meshing, this program equips students with practical and theoretical skills necessary to excel in the EV industry.

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Program Highlights

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<p>This program offers a thorough understanding of electric vehicle (EV) engineering, emphasizing design, simulation, and analysis techniques. Covering essential EV technology concepts, powertrain simulation, finite element analysis, and meshing, this program equips students with practical and theoretical skills necessary to excel in the EV industry.</p>

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Leverage the prestige of IIT Guwahati

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<strong>Program certificate</strong> and <em>'Executive Alumni Status'</em> from the E&ICT Academy, IIT Guwahati

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<li>

Opportunity to attend a <strong>campus immersion program</strong> hosted by <em>IIT Guwahati</em>

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<svg aria-hidden="true" viewBox="0 0 512 512" xmlns="http://www.w3.org/2000/svg"><path d="M256 56c110.532 0 200 89.451 200 200 0 110.532-89.451 200-200 200-110.532 0-200-89.451-200-200 0-110.532 89.451-200 200-200m0-48C119.033 8 8 119.033 8 256s111.033 248 248 248 248-111.033 248-248S392.967 8 256 8zm0 168c-44.183 0-80 35.817-80 80s35.817 80 80 80 80-35.817 80-80-35.817-80-80-80z"></path></svg>

50+ Live Sessions Over 3 Months

<p>

<li>Engage in interactive sessions led by IIT faculty and industry veterans.</li>

<li>Deep dive into advanced EV design, control systems, and embedded systems.</li>

<li>Flexible scheduling to accommodate working professionals and freshers.</li>

</p>

<svg aria-hidden="true" viewBox="0 0 512 512" xmlns="http://www.w3.org/2000/svg"><path d="M496 64H128V16c0-8.8-7.2-16-16-16H80c-8.8 0-16 7.2-16 16v48H16C7.2 64 0 71.2 0 80v32c0 8.8 7.2 16 16 16h48v368c0 8.8 7.2 16 16 16h32c8.8 0 16-7.2 16-16V128h368c8.8 0 16-7.2 16-16V80c0-8.8-7.2-16-16-16zM160 384h320V160H160v224z"></path></svg>

Exclusive, Industry-Aligned Projects

<p>

<li>Work on powertrain optimization and battery management systems.</li>

<li>Apply skills through EV simulations using MATLAB and SIMULINK.</li>

<li>Hands-on projects aligned with real-world industry needs.</li>

</p>

<a href="http://Business%20Strategy%20Development" tabindex="-1">

<svg aria-hidden="true" viewBox="0 0 640 512" xmlns="http://www.w3.org/2000/svg"><path d="M192 256c61.9 0 112-50.1 112-112S253.9 32 192 32 80 82.1 80 144s50.1 112 112 112zm76.8 32h-8.3c-20.8 10-43.9 16-68.5 16s-47.6-6-68.5-16h-8.3C51.6 288 0 339.6 0 403.2V432c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48v-28.8c0-63.6-51.6-115.2-115.2-115.2zM480 256c53 0 96-43 96-96s-43-96-96-96-96 43-96 96 43 96 96 96zm48 32h-3.8c-13.9 4.8-28.6 8-44.2 8s-30.3-3.2-44.2-8H432c-20.4 0-39.2 5.9-55.7 15.4 24.4 26.3 39.7 61.2 39.7 99.8v38.4c0 2.2-.5 4.3-.6 6.4H592c26.5 0 48-21.5 48-48 0-61.9-50.1-112-112-112z"></path></svg> </a>

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One-on-One Mentorship </a>

<p>

<li>Receive personalized guidance on technical challenges.</li>

<li>Get career advice from seasoned mentors and industry experts.</li>

<li>In-depth support tailored to individual learning needs.</li>

</p>

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24/7 Learning Support by DIYguru </a>

<p>

<li>Access round-the-clock assistance for a smooth learning experience.</li>

<li>Immediate response to academic and technical queries.</li>

<li>Dedicated support team available for continuous guidance.</li>

</p>

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Learn from IIT Faculty & Industry Experts </a>

<p>

<li>Gain insights directly from IIT Guwahati faculty.</li>

<li>Learn from industry professionals with practical experience in EVs.</li>

<li>Bridge the gap between theoretical concepts and real-world applications.</li>

</p>

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<svg aria-hidden="true" viewBox="0 0 512 512" xmlns="http://www.w3.org/2000/svg"><path d="M367.9 329.76c-4.62 5.3-9.78 10.1-15.9 13.65v22.94c66.52 9.34 112 28.05 112 49.65 0 30.93-93.12 56-208 56S48 446.93 48 416c0-21.6 45.48-40.3 112-49.65v-22.94c-6.12-3.55-11.28-8.35-15.9-13.65C58.87 345.34 0 378.05 0 416c0 53.02 114.62 96 256 96s256-42.98 256-96c0-37.95-58.87-70.66-144.1-86.24zM256 128c35.35 0 64-28.65 64-64S291.35 0 256 0s-64 28.65-64 64 28.65 64 64 64zm-64 192v96c0 17.67 14.33 32 32 32h64c17.67 0 32-14.33 32-32v-96c17.67 0 32-14.33 32-32v-96c0-26.51-21.49-48-48-48h-11.8c-11.07 5.03-23.26 8-36.2 8s-25.13-2.97-36.2-8H208c-26.51 0-48 21.49-48 48v96c0 17.67 14.33 32 32 32z"></path></svg> </a>

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Tailored for Working Professionals and Freshers </a>

<p>

<li>Flexible learning pathways to suit diverse needs.</li>

<li>Accommodates the schedules of working professionals.</li>

<li>Offers a comprehensive introduction for freshers entering the EV sector.</li>

</p>

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<li>24 hours of additional training focused on EV embedded applications.</li>

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Hardware Kit delivered at door-step Worth ₹10,000/ (Book Additionally) </a>

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NEAT AICTE & ASDC Accreditation </a>

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<li>Accredited by NEAT AICTE and ASDC for high educational standards.</li>

<li>Ensures industry relevance and compliance with technical standards.</li>

<li>Recognized by employers across the EV industry.</li>

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Vast Industry Tie-Ups </a>

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Access to emobility.careers Portal </a>

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<li>Leverage DIYguru's extensive network of industry partnerships.</li>

<li>Access opportunities for job placements and industry exposure.</li>

<li>Collaborations with leading automotive and EV manufacturers.</li>

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Admission Closes on 1st Nov

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<p>Want to know more? Enter your information to learn more about this program from <strong>EICT - IIT Guwahati</strong>.</p>

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Key Job Areas

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Companies Hiring

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<ul><li><strong>EV System Design:</strong> Developing and refining EV components, including powertrains and energy storage.</li><li><strong>Battery and Power Management:</strong> Optimizing battery performance and implementing power management solutions.</li><li><strong>Vehicle Simulation and Modeling:</strong> Conducting simulations to assess and improve EV design.</li><li><strong>Finite Element Analysis:</strong> Analyzing structural integrity of EV Components.</li><li><strong>Automotive Design:</strong> Working on conceptual and 3D designs for automotive applications.</li><li><strong>Structural Analysis:</strong> Utilizing meshing and structural analysis tools for precise EV component modeling.</li><li><strong>Safety and Compliance:</strong> Ensuring designs meet industry standards and safety regulations.</li></ul>

<ul><li><strong>EV Systems Engineer:</strong> Designs, develops, and tests core EV systems.</li><li><strong>Battery Engineer:</strong> Focuses on battery optimization and power management in EV applications.</li><li><strong>Simulation Engineer:</strong> Conducts performance simulations using MATLAB and Simulink.</li><li><strong>FEA Analyst:</strong> Performs finite element analysis to ensure durability and structural stability.</li><li><strong>Power Electronics Engineer:</strong> Specializes in inverters, converters, and power management systems.</li><li><strong>Compliance Engineer:</strong> Ensures that EV components adhere to regulatory standards and safety protocols.</li></ul>

<ul><li><strong>Battery and BMS Knowledge:</strong> Expertise in battery chemistries and management systems.</li><li><strong>Simulation and Modeling:</strong> Proficiency in MATLAB, Simulink, and ANSYS.</li><li><strong>Power Electronics Design:</strong> Knowledge of converters, inverters, and power management.</li><li><strong>3D Modeling:</strong> Skills in creating precise models with ANSYS for 3D Simulation.</li><li><strong>Advanced Vehicle Design:</strong> Advanced skills in vehicle sub system and system level design and simulations using MATLAB with toolboxes SIMULINK &amp; SIMSCAPE.</li><li><strong>Finite Element Analysis (FEA):</strong> Proficiency in FEA techniques for testing component integrity.</li><li><strong>Regulatory Compliance:</strong> Familiarity with automotive safety and compliance standards.</li></ul>

<ul><li>Tata Motors</li><li>Mahindra Electric</li><li>Ather Energy</li><li>Ola Electric</li><li>TVS Motor Company</li><li>Hyundai Motor India</li><li>Ashok Leyland</li><li>MG Motor India</li><li>Hero Electric</li><li>Kinetic Green Energy &amp; Power Solutions</li></ul><p> </p>

<ul><li><strong>EV System Design:</strong> Developing and refining EV components, including powertrains and energy storage.</li><li><strong>Battery and Power Management:</strong> Optimizing battery performance and implementing power management solutions.</li><li><strong>Vehicle Simulation and Modeling:</strong> Conducting simulations to assess and improve EV design.</li><li><strong>Finite Element Analysis:</strong> Analyzing structural integrity of EV Components.</li><li><strong>Automotive Design:</strong> Working on conceptual and 3D designs for automotive applications.</li><li><strong>Structural Analysis:</strong> Utilizing meshing and structural analysis tools for precise EV component modeling.</li><li><strong>Safety and Compliance:</strong> Ensuring designs meet industry standards and safety regulations.</li></ul><ul><li><strong>EV Systems Engineer:</strong> Designs, develops, and tests core EV systems.</li><li><strong>Battery Engineer:</strong> Focuses on battery optimization and power management in EV applications.</li><li><strong>Simulation Engineer:</strong> Conducts performance simulations using MATLAB and Simulink.</li><li><strong>FEA Analyst:</strong> Performs finite element analysis to ensure durability and structural stability.</li><li><strong>Power Electronics Engineer:</strong> Specializes in inverters, converters, and power management systems.</li><li><strong>Compliance Engineer:</strong> Ensures that EV components adhere to regulatory standards and safety protocols.</li></ul><ul><li><strong>Battery and BMS Knowledge:</strong> Expertise in battery chemistries and management systems.</li><li><strong>Simulation and Modeling:</strong> Proficiency in MATLAB, Simulink, and ANSYS.</li><li><strong>Power Electronics Design:</strong> Knowledge of converters, inverters, and power management.</li><li><strong>3D Modeling:</strong> Skills in creating precise models with ANSYS for 3D Simulation.</li><li><strong>Advanced Vehicle Design:</strong> Advanced skills in vehicle sub system and system level design and simulations using MATLAB with toolboxes SIMULINK &amp; SIMSCAPE.</li><li><strong>Finite Element Analysis (FEA):</strong> Proficiency in FEA techniques for testing component integrity.</li><li><strong>Regulatory Compliance:</strong> Familiarity with automotive safety and compliance standards.</li></ul><ul><li>Tata Motors</li><li>Mahindra Electric</li><li>Ather Energy</li><li>Ola Electric</li><li>TVS Motor Company</li><li>Hyundai Motor India</li><li>Ashok Leyland</li><li>MG Motor India</li><li>Hero Electric</li><li>Kinetic Green Energy &amp; Power Solutions</li></ul><p> </p>

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Program Outcomes

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EICT - IITG Certification

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DIYguru + NEAT AICTE + ASDC

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Tadpole Projects + EVI Technology

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<img width="1024" height="768" src="https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/Screenshot-2024-10-09-at-2.44.38%E2%80%AFPM-1-1024x768.png" alt="" srcset="https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/Screenshot-2024-10-09-at-2.44.38-PM-1-1-1024x768.png 1024w, https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/Screenshot-2024-10-09-at-2.44.38-PM-1-1-300x225.png 300w, https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/Screenshot-2024-10-09-at-2.44.38-PM-1-1-768x576.png 768w, https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/Screenshot-2024-10-09-at-2.44.38-PM-1-1-1536x1152.png 1536w, https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/Screenshot-2024-10-09-at-2.44.38-PM-1-1.png 1590w" sizes="(max-width: 1024px) 100vw, 1024px" />

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Program Curriculum

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<summary data-accordion-index="1" tabindex="0" aria-expanded="true" aria-controls="e-n-accordion-item-6720" >

Module 1: EV Engineering Essentials Part I and II

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h384c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H272V64c0-17.67-14.33-32-32-32h-32c-17.67 0-32 14.33-32 32v144H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h144v144c0 17.67 14.33 32 32 32h32c17.67 0 32-14.33 32-32V304h144c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

</summary>

<ul><li><strong>Module Description:</strong><ul><li>This foundational module introduces students to the essentials of electric vehicle (EV) technology, focusing on core engineering principles and the major components of EV systems. It begins with an overview of EV technology, including key components and advancements. Students will explore the transition from Internal Combustion Engine (ICE) vehicles to electric systems, understanding the benefits and challenges associated with electrification. This module covers EV design principles, battery technology, power electronics, and motor systems, offering insights into types of motors, control strategies, and efficiency optimization. Additional topics include vehicle electrification systems, such as wiring, voltage distribution, and essential high and low voltage components. The module concludes with an in-depth look at EV charging technologies, including infrastructure, standards like CCS and CHAdeMO, and fast-charging solutions.</li></ul></li><li><strong>Module Details:</strong><ul><li><strong>Starting with EV Technology:</strong> Overview of Electric Vehicles, Components, Key Technologies</li><li><strong>Understanding ICE to EV Transition:</strong> Key Differences, Benefits, Challenges</li><li><strong>Electric Vehicle Engineering:</strong> EV Design Principles, Key Subsystems, Safety Considerations</li><li><strong>Battery Technology for EV Systems:</strong> Battery Chemistries, Energy Density, Charging Cycles</li><li><strong>Power Electronics for EV Systems:</strong> Inverters, Converters, Power Management</li><li><strong>Motor Systems for Electric Vehicles:</strong> Types of Motors, Control Strategies, Efficiency Optimization</li><li><strong>Vehicle Electrification Systems:</strong> Vehicle Wiring, Voltage Distribution, High and Low Voltage Components</li><li><strong>Electric Vehicle Charging Technology:</strong> Charging Infrastructure, Standards (CCS, CHAdeMO), Fast Charging Solutions</li></ul></li></ul>

</details>

<details id="e-n-accordion-item-6721" >

<summary data-accordion-index="2" tabindex="-1" aria-expanded="false" aria-controls="e-n-accordion-item-6721" >

Module 2: MATLAB, SIMULINK Certification Course For Electric Vehicle Design &amp; Simulation

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h384c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H272V64c0-17.67-14.33-32-32-32h-32c-17.67 0-32 14.33-32 32v144H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h144v144c0 17.67 14.33 32 32 32h32c17.67 0 32-14.33 32-32V304h144c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

</summary>

<ul><li><strong>Module Description:</strong><ul><li>This module focuses on advanced design and simulation techniques specific to EV systems, providing hands-on experience with MATLAB, Simulink, and the Quasi-Static Simulation (QSS) toolbox. Students will engage in EV architecture modeling, learning to simulate powertrain layout, energy flow, and system performance.</li></ul></li><li><strong>Module Details:</strong><ul><li><strong>MATLAB Simulink:</strong> Block Diagrams, System Modeling <br /></li><li><strong>Understanding Advisor Toolbox:</strong> Vehicle Powertrain Design, Simulations for EVs <br /></li><li><strong>Understanding QSS Toolbox:</strong> Quasi-Static Simulation, Performance Analysis for EVs<br /></li><li><strong>EV Architecture Modelling &amp; Simulations:</strong> Vehicle Layout, Powertrain Architecture, Energy Flow Modeling</li></ul></li></ul>

</details>

<details id="e-n-accordion-item-6722" >

<summary data-accordion-index="3" tabindex="-1" aria-expanded="false" aria-controls="e-n-accordion-item-6722" >

Module 3: Advanced Certification in EV Design &amp; Simulation using MATLAB-Simulink, SIMSCAPE

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h384c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H272V64c0-17.67-14.33-32-32-32h-32c-17.67 0-32 14.33-32 32v144H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h144v144c0 17.67 14.33 32 32 32h32c17.67 0 32-14.33 32-32V304h144c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

</summary>

<ul><li><strong>Module Description:</strong><ul><li><p>This module focuses on the comprehensive understanding and simulation of road load forces acting on electric vehicles, including aerodynamic drag, rolling resistance, and gradient forces. Learners will explore inverter design and thermal management, along with detailed Simscape-based modeling of electrical, mechanical, and thermal subsystems. The module also covers advanced BMS modeling techniques to analyze battery performance and energy flow, equipping learners with hands-on skills in EV system simulation and optimization.</p></li></ul></li><li><strong>Module Details:</strong></li></ul><ul><li style="list-style-type: none;"><ul><li>Road Load Understanding: Forces acting on vehicles, load distribution</li><li>Road Load Analysis: Modeling aerodynamic drag, rolling resistance, gradient forces</li><li>Inverter Design and Modeling: Sizing, efficiency, thermal management</li><li>Advanced Simscape Modeling: Electrical, mechanical, thermal modeling for EV systems</li><li>BMS Modeling and Energy Analysis: Battery performance modeling, energy flow simulations</li></ul></li></ul>

</details>

<details id="e-n-accordion-item-6723" >

<summary data-accordion-index="4" tabindex="-1" aria-expanded="false" aria-controls="e-n-accordion-item-6723" >

Module 4: Certification Course in ANSYS Engineering for Electric Vehicle : Fundamental to Structural Analysis

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h384c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

<svg aria-hidden="true" viewBox="0 0 448 512" xmlns="http://www.w3.org/2000/svg"><path d="M416 208H272V64c0-17.67-14.33-32-32-32h-32c-17.67 0-32 14.33-32 32v144H32c-17.67 0-32 14.33-32 32v32c0 17.67 14.33 32 32 32h144v144c0 17.67 14.33 32 32 32h32c17.67 0 32-14.33 32-32V304h144c17.67 0 32-14.33 32-32v-32c0-17.67-14.33-32-32-32z"></path></svg>

</summary>

<ul><li><strong>Module Description:</strong><ul><li>In this module, students learn to apply Computer-Aided Engineering (CAE) tools and finite element analysis (FEA) using ANSYS for electric vehicle engineering. Starting with an introduction to CAD and CAE, students will explore how ANSYS can be used for EV-specific engineering design. Fundamental FEA techniques are taught alongside material properties selection tailored to EV applications, allowing students to understand how different materials respond under stress. Through meshing, structural analysis, and boundary condition setup, students perform simulations to assess component durability and structural integrity.</li></ul></li><li><strong>Module Details:</strong><ul><li><p>Introduction to CAD/CAE and ANSYS: Overview of CAD tools, ANSYS for engineering design</p></li><li><p>Fundamentals of FEA and Material Properties: Finite Element Analysis, material selection for EVs</p></li><li><p>ANSYS Project Setup and Geometry Handling: Building CAD models, importing into ANSYS</p></li><li><p>Meshing, Analysis Setup, and Structural Analysis: Mesh generation, boundary conditions, load applications</p></li></ul></li></ul>

</details>

<ul><li><strong>Module Description:</strong><ul><li>This foundational module introduces students to the essentials of electric vehicle (EV) technology, focusing on core engineering principles and the major components of EV systems. It begins with an overview of EV technology, including key components and advancements. Students will explore the transition from Internal Combustion Engine (ICE) vehicles to electric systems, understanding the benefits and challenges associated with electrification. This module covers EV design principles, battery technology, power electronics, and motor systems, offering insights into types of motors, control strategies, and efficiency optimization. Additional topics include vehicle electrification systems, such as wiring, voltage distribution, and essential high and low voltage components. The module concludes with an in-depth look at EV charging technologies, including infrastructure, standards like CCS and CHAdeMO, and fast-charging solutions.</li></ul></li><li><strong>Module Details:</strong><ul><li><strong>Starting with EV Technology:</strong> Overview of Electric Vehicles, Components, Key Technologies</li><li><strong>Understanding ICE to EV Transition:</strong> Key Differences, Benefits, Challenges</li><li><strong>Electric Vehicle Engineering:</strong> EV Design Principles, Key Subsystems, Safety Considerations</li><li><strong>Battery Technology for EV Systems:</strong> Battery Chemistries, Energy Density, Charging Cycles</li><li><strong>Power Electronics for EV Systems:</strong> Inverters, Converters, Power Management</li><li><strong>Motor Systems for Electric Vehicles:</strong> Types of Motors, Control Strategies, Efficiency Optimization</li><li><strong>Vehicle Electrification Systems:</strong> Vehicle Wiring, Voltage Distribution, High and Low Voltage Components</li><li><strong>Electric Vehicle Charging Technology:</strong> Charging Infrastructure, Standards (CCS, CHAdeMO), Fast Charging Solutions</li></ul></li></ul><ul><li><strong>Module Description:</strong><ul><li>This module focuses on advanced design and simulation techniques specific to EV systems, providing hands-on experience with MATLAB, Simulink, and the Quasi-Static Simulation (QSS) toolbox. Students will engage in EV architecture modeling, learning to simulate powertrain layout, energy flow, and system performance.</li></ul></li><li><strong>Module Details:</strong><ul><li><strong>MATLAB Simulink:</strong> Block Diagrams, System Modeling <br /></li><li><strong>Understanding Advisor Toolbox:</strong> Vehicle Powertrain Design, Simulations for EVs <br /></li><li><strong>Understanding QSS Toolbox:</strong> Quasi-Static Simulation, Performance Analysis for EVs<br /></li><li><strong>EV Architecture Modelling &amp; Simulations:</strong> Vehicle Layout, Powertrain Architecture, Energy Flow Modeling</li></ul></li></ul><ul><li><strong>Module Description:</strong><ul><li><p>This module focuses on the comprehensive understanding and simulation of road load forces acting on electric vehicles, including aerodynamic drag, rolling resistance, and gradient forces. Learners will explore inverter design and thermal management, along with detailed Simscape-based modeling of electrical, mechanical, and thermal subsystems. The module also covers advanced BMS modeling techniques to analyze battery performance and energy flow, equipping learners with hands-on skills in EV system simulation and optimization.</p></li></ul></li><li><strong>Module Details:</strong></li></ul><ul><li style="list-style-type: none;"><ul><li>Road Load Understanding: Forces acting on vehicles, load distribution</li><li>Road Load Analysis: Modeling aerodynamic drag, rolling resistance, gradient forces</li><li>Inverter Design and Modeling: Sizing, efficiency, thermal management</li><li>Advanced Simscape Modeling: Electrical, mechanical, thermal modeling for EV systems</li><li>BMS Modeling and Energy Analysis: Battery performance modeling, energy flow simulations</li></ul></li></ul><ul><li><strong>Module Description:</strong><ul><li>In this module, students learn to apply Computer-Aided Engineering (CAE) tools and finite element analysis (FEA) using ANSYS for electric vehicle engineering. Starting with an introduction to CAD and CAE, students will explore how ANSYS can be used for EV-specific engineering design. Fundamental FEA techniques are taught alongside material properties selection tailored to EV applications, allowing students to understand how different materials respond under stress. Through meshing, structural analysis, and boundary condition setup, students perform simulations to assess component durability and structural integrity.</li></ul></li><li><strong>Module Details:</strong><ul><li><p>Introduction to CAD/CAE and ANSYS: Overview of CAD tools, ANSYS for engineering design</p></li><li><p>Fundamentals of FEA and Material Properties: Finite Element Analysis, material selection for EVs</p></li><li><p>ANSYS Project Setup and Geometry Handling: Building CAD models, importing into ANSYS</p></li><li><p>Meshing, Analysis Setup, and Structural Analysis: Mesh generation, boundary conditions, load applications</p></li></ul></li></ul>

<ul>

<li>

Skills Covered

</li>

</ul>

Battery and BMS Knowledge

Simulation and Modeling Skills with MATLAB

Power Electronics Design

3D Modeling with ANSYS

Finite Element Analysis (FEA)

Regulatory Compliance

<ul>

<li>

Projects

</li>

</ul>

Comprehensive Design and Modelling of an EV System using MATLAB Simulink

<p>Design and Model EV systems with MATLAB Simulink.</p>

Structural Analysis of Engineering Component System

<p>Perform structural analysis on EV components under dynamic conditions, focusing on 3D behaviour to enhance reliability and safety.</p>

EV component design and simulations using MATLAB Simscape and QSS systems

<p>Allowing students to work on advanced toolboxes with MATLAB systems for designing over 8 EV sub systems and components.</p>

<ul>

<li>

Benefits

</li>

</ul>

<button id="e-n-tab-title-1061234831" aria-selected="true" data-tab-index="1" role="tab" tabindex="0" aria-controls="e-n-tab-content-1061234831" style="--n-tabs-title-order: 1;">

For Freshers

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For Professionals

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After Successfully Completion

</button>

<ul><li>Foundation in EV technology and design principles.</li><li>Practical experience with essential engineering software.</li><li>Enhanced employability in the EV industry.</li><li>Skills in simulation and analysis for immediate application.</li><li>Competitive edge in sustainable and innovative engineering careers.</li></ul>

<ul><li>Gain advanced technical expertise in EV systems.</li><li>Hands-on experience with industry-leading tools.</li><li>Access to high-demand roles in the EV sector.</li><li>Valuable insights into simulation, analysis, and EV design.</li><li>Competitive advantage for transitioning to green mobility technology roles.</li></ul>

<ul><li><strong>Design and Model EV Powertrains and Components:</strong> Develop and refine electric vehicle powertrains and system components for enhanced performance.</li><li><strong>Conduct Advanced EV Simulations:</strong> Use MATLAB, Simulink, and ANSYS for simulations in energy flow, efficiency, and thermal analysis.</li><li><strong>Develop Battery Management Systems:</strong> Design BMS strategies for efficient monitoring, control, and performance of EV batteries.</li><li><strong>Apply Power Electronics Principles:</strong> Implement power management solutions in EVs, including inverter and converter technologies.</li><li><strong>Perform FEA and Dynamic Analysis:</strong> Conduct finite element analysis and dynamic simulations to ensure EV reliability and safety.</li><li><strong>Create CAD Models for EV Components:</strong> Develop 3D models for parts such as batteries, motors, and structural components.</li><li><strong>Ensure Compliance and Safety Standards:</strong> Integrate industry-standard safety protocols and regulatory compliance into EV design.</li></ul>

<ul><li>Foundation in EV technology and design principles.</li><li>Practical experience with essential engineering software.</li><li>Enhanced employability in the EV industry.</li><li>Skills in simulation and analysis for immediate application.</li><li>Competitive edge in sustainable and innovative engineering careers.</li></ul><ul><li>Gain advanced technical expertise in EV systems.</li><li>Hands-on experience with industry-leading tools.</li><li>Access to high-demand roles in the EV sector.</li><li>Valuable insights into simulation, analysis, and EV design.</li><li>Competitive advantage for transitioning to green mobility technology roles.</li></ul><ul><li><strong>Design and Model EV Powertrains and Components:</strong> Develop and refine electric vehicle powertrains and system components for enhanced performance.</li><li><strong>Conduct Advanced EV Simulations:</strong> Use MATLAB, Simulink, and ANSYS for simulations in energy flow, efficiency, and thermal analysis.</li><li><strong>Develop Battery Management Systems:</strong> Design BMS strategies for efficient monitoring, control, and performance of EV batteries.</li><li><strong>Apply Power Electronics Principles:</strong> Implement power management solutions in EVs, including inverter and converter technologies.</li><li><strong>Perform FEA and Dynamic Analysis:</strong> Conduct finite element analysis and dynamic simulations to ensure EV reliability and safety.</li><li><strong>Create CAD Models for EV Components:</strong> Develop 3D models for parts such as batteries, motors, and structural components.</li><li><strong>Ensure Compliance and Safety Standards:</strong> Integrate industry-standard safety protocols and regulatory compliance into EV design.</li></ul>

<ul>

<li>

Mode of Learning

</li>

</ul>

<svg aria-hidden="true" viewBox="0 0 576 512" xmlns="http://www.w3.org/2000/svg"><path d="M542.22 32.05c-54.8 3.11-163.72 14.43-230.96 55.59-4.64 2.84-7.27 7.89-7.27 13.17v363.87c0 11.55 12.63 18.85 23.28 13.49 69.18-34.82 169.23-44.32 218.7-46.92 16.89-.89 30.02-14.43 30.02-30.66V62.75c.01-17.71-15.35-31.74-33.77-30.7zM264.73 87.64C197.5 46.48 88.58 35.17 33.78 32.05 15.36 31.01 0 45.04 0 62.75V400.6c0 16.24 13.13 29.78 30.02 30.66 49.49 2.6 149.59 12.11 218.77 46.95 10.62 5.35 23.21-1.94 23.21-13.46V100.63c0-5.29-2.62-10.14-7.27-12.99z"></path></svg>

<h3>Complete on-site<br>

classroom program</h3>

<p>Location: Mumbai</p>

<svg aria-hidden="true" viewBox="0 0 576 512" xmlns="http://www.w3.org/2000/svg"><path d="M542.22 32.05c-54.8 3.11-163.72 14.43-230.96 55.59-4.64 2.84-7.27 7.89-7.27 13.17v363.87c0 11.55 12.63 18.85 23.28 13.49 69.18-34.82 169.23-44.32 218.7-46.92 16.89-.89 30.02-14.43 30.02-30.66V62.75c.01-17.71-15.35-31.74-33.77-30.7zM264.73 87.64C197.5 46.48 88.58 35.17 33.78 32.05 15.36 31.01 0 45.04 0 62.75V400.6c0 16.24 13.13 29.78 30.02 30.66 49.49 2.6 149.59 12.11 218.77 46.95 10.62 5.35 23.21-1.94 23.21-13.46V100.63c0-5.29-2.62-10.14-7.27-12.99z"></path></svg>

<h3>LIVE + Recorded + Onsite +

Hardware + Workshop</h3>

<p>LIVE + Weekend on-site sessions</p>

<p>Location: Pune, Delhi</p>

<svg aria-hidden="true" viewBox="0 0 576 512" xmlns="http://www.w3.org/2000/svg"><path d="M542.22 32.05c-54.8 3.11-163.72 14.43-230.96 55.59-4.64 2.84-7.27 7.89-7.27 13.17v363.87c0 11.55 12.63 18.85 23.28 13.49 69.18-34.82 169.23-44.32 218.7-46.92 16.89-.89 30.02-14.43 30.02-30.66V62.75c.01-17.71-15.35-31.74-33.77-30.7zM264.73 87.64C197.5 46.48 88.58 35.17 33.78 32.05 15.36 31.01 0 45.04 0 62.75V400.6c0 16.24 13.13 29.78 30.02 30.66 49.49 2.6 149.59 12.11 218.77 46.95 10.62 5.35 23.21-1.94 23.21-13.46V100.63c0-5.29-2.62-10.14-7.27-12.99z"></path></svg>

<h3>LIVE + Recorded +

Hardware + Workshop</h3>

<p>Location: Global</p>

<ul>

<li>

Tools Covered

</li>

</ul>

<figure><img src="https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/1.png" alt="1" /></figure><figure><img src="https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/2.png" alt="2" /></figure><figure><img src="https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/7.png" alt="7" /></figure><figure><img src="https://diyguru.b-cdn.net/wp-media-folder-diyguru-emobility-academy/wp-content/uploads/2024/10/8.png" alt="8" /></figure>

<h2>Hardware Labs Access</h2>

<h2>

Two-Wheeler Simulator & Test Bench </h2>

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

<a href="/lab/2-wheeler-hardware-simulator-test-bench-kit/">

Learn more

</a>

<h2>

Charging Station Simulator and Test Bench </h2>

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

<a href="/lab/charging-station-simulator-and-test-bench/">

Learn more

</a>

<a href="/lab/ev-retrofitment-solution-kit/">

<h2>

EV Retrofitment Solution </h2>

The EV Retrofitment Solution manual provides guidelines for converting internal combustion engine vehicles (ICE) to electric vehicles (EV). It includes tests for system functionality, battery management, performance optimization, and safety feature integration. The manual focuses on ensuring proper installation, verifying throttle, pedal assist, and battery management systems, and conducting performance tests under real-world conditions

LAB 3

</a>

<a href="/lab/ev-retrofitment-solution-kit/">

Learn more

</a>

<a href="/lab/electronics-embedded-systems-development-kit/">

<h2>

Electronics & Embedded System Development KIT </h2>

The Electronics & Embedded Systems Development Kit is designed for hands-on learning with embedded systems and microcontrollers like Arduino and STM32. It covers key experiments like controlling LEDs, setting up Pulse Width Modulation (PWM) for dimming lights, serial communication, and sensor integration. Advanced projects include battery monitoring, motor control, and safety alert systems for electric vehicles​

LAB 4

</a>

<a href="/lab/electronics-embedded-systems-development-kit/">

Learn more

</a>

<h2>

EV In-house manufacturing & Development KIT </h2>

The EV In-house Manufacturing & Development KIT provides all the essential tools and components for building and prototyping electric vehicles, supporting the entire development process from concept to production. It includes equipment for battery monitoring, motor control, system integration, and real-time data analysis, ensuring seamless development for EV projects​

LAB 5

<a href="/lab/ev-in-house-manufacturing-development-kit/">

Learn more

</a>

<a href="/lab/advanced-battery-system-kit/">

<h2>

Advanced Battery System KIT </h2>

The Advanced Battery System Kit is designed for developing, testing, and optimizing high-performance battery systems. It includes tools for monitoring battery health, managing thermal conditions, and ensuring efficient energy storage through load balancing circuits, thermal shutdown mechanisms, and Battery Management System (BMS) integration. This kit helps to extend battery lifespan and optimize charging cycles

LAB 6

</a>

<a href="/lab/advanced-battery-system-kit/">

Learn more

</a>

<a href="/lab/">

View All Hardware Labs

</a>

<h5>Hardware Lab Attendees</h5>

<h2>Our Alumni: Shaping the Future of Innovation</h2>