Advanced Certification Course in EV Design & Simulation using MATLAB
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Welcome to the Course!
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Module 1A: Road Load UnderstandingTopic 1: Introduction to Road Load Analysis9m 42sTopic 2: Road Load Calculations14m 8sTopic 3: Road Load Calculations in Excel8m 53sTopic 4: Introduction to Drive Cycle4m 14sTopic 5: Introduction to MATLAB Road Loads Calculations12m 36sTopic 6: Introduction to Simulink Road Loads Calculations10m 2sModule 1A Quiz – Please tick only One Option as the Correct Answer.Module 1A Quiz Solutions
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Module 1B: Road Load AnalysisTopic 1: Preparation of Drive Cycle Road Loads Calculations10m 38sTopic 2: Aerodynamic Drag Force Road Loads Calculations10m 21sTopic 3: All Road Loads Force and Power Requirements15m 1sTopic 4: Torque Requirement and Conclusion23m 45sModule 1B Quiz: Please tick only One Option as the Correct Answer.Module 1B Quiz Solutions
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Module 2A: Inverter Design and ModelingTopic 1: Introduction to Inverters16m 4sTopic 2: Single Phase Inverter – Half Bridge & Full Bridge DC AC Inverter28m 4sTopic 3: Three Phase Inverter27m 47sTopic 4: Inverter Simulation and Modeling27m 4sModule 2A Quiz: Please tick only One Option as the Correct Answer.Module 2A Quiz Solutions
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Module 2B: Modeling Power Converters & Vehicle Configuration Using MATLAB-SIMULINKTopic 1: Modeling Multi Level Inverter using MATLAB-SIMULINK22m 42sTopic 2: Modeling Buck Converter using MATLAB-SIMULINK11m 56sTopic 3: Modeling Boost Converter using MATLAB-SIMULINK9m 32sTopic 4: Modeling Buck Boost Converter using MATLAB-SIMULINK9m 49sTopic 5: Modeling Vehicle Configuration using MATLAB-SIMULINK20m 7s
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Module 3: Advanced Simscape ModelingTopic 1: Introduction to Simscape9m 12sTopic 2: Modeling Vehicle Road Loads using Simscape Toolbox30m 30sTopic 3: Modeling Battery using Simscape Toolbox44m 20sTopic 4: Modeling Ultracapacitor using Simscape Toolbox12m 15sTopic 5: Modeling AC/DC Full Wave/Half Wave Rectifier using Simscape24m 11sTopic 6: Modeling DC Motor & Its Controller Unit Using Simscape29m 31sTopic 7: Modeling PWM Controlled DC Motor14m 46sTopic 8: Modeling Battery Pack with Fault Using Simscape24m 12sTopic 9: Modeling Lead Acid Battery Cell Using Simscape13m 8sTopic 10: Physical Modeling of ICE Vehicle Using Simscape6m 52sModule 3 Quiz: Please tick only One Option as Correct Answer.Module 3 Quiz Solution
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Module 4: QSS and ADVISOR Toolbox ApplicationsTopic 1: Introduction to QSS Toolbox & EV Modeling with QSS26m 37sTopic 2: Modeling Hybrid Electric Vehicle (HEV) with QSS Toolbox28m 27sTopic 3: Introduction to Advisor Toolbox and Vehicle Performance Analysis using ADVISOR Toolbox18m 19sTopic 4: Vehicle Performance Analysis using ADVISOR Toolbox Contd.39m 53sModule 4 Quiz-1: Please tick Only One Option as Correct Answer.Module 4 Quiz-1 SolutionsModule 4 Quiz-2: Please tick Only One Option as Correct AnswerModule 4 Quiz-2 Solutions
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Module 5: BMS Modeling and Energy AnalysisTopic 1: Batteries19m 30sTopic 2: Energy Consumption in Electric Vehicles22m 24sTopic 3: Demonstration of How to Make a Drive Cycle from Data18m 43sTopic 4: Battery Managment System in detail48m 53sTopic 5: Modeling Battery in Simulink for Thermal Anomaly Behavior Analysis35m 7sTopic 6: BMS for Battery Pack Electrical Management & Protection – Current and Voltage22m 5sTopic 7: BMS for Battery Pack Capacity Management – Cell Balancing34m 19sModule Quiz 5: Please tick Only One Option as Correct Answer.Module 5 Quiz Solutions
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DIY Projects:
“The Advanced Certification Course in EV Design & Simulations using MATLAB” is designed to provide an in-depth understanding of electric vehicle (EV) system architecture, focusing on the design and modeling of key components such as converters, inverters, motor controllers, and battery management systems (BMS). This course leverages advanced simulation tools like MATLAB, Simulink, Simscape, QSS, and ADVISOR Toolboxes to enable participants to model, analyze, and optimize EV systems. With hands-on projects and practical applications, participants will gain valuable skills for a career in EV design and development.
What's included
- 7 Modules.
- 40 Lectures.
- 13.591 hours of Video Content.
- 7 Quizzes with Solutions.
- 1 Project Assignment.
- Certification of Completion.