Certification Course in Advanced Powertrain Development for Electric Vehicles
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Welcome to the Course!
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Module 1: Introduction to Electric Vehicle PowertrainTopic 1: Introduction to Electric Vehicles17m 52sTopic 2: EV Policies and Government Initiatives in India6m 47sTopic 3: EV System Configuration and Transition from Conventional Powertrain9m 23sTopic 4: EV Configurations & Propulsion Systems10m 29sTopic 5: EV Powertrain Components & DC Motor Fundamentals11m 26sTopic 6: Understanding BLDC, PMSM & Induction Motors for EVs11m 19sTopic 7: EV Motor Control & Circuitry: Understanding How Motors Are Managed16m 52sTopic 8: Battery Fundamentals for Electric Vehicles16m 57sTopic 9: EV Battery Pack Design & Components12m 49sTopic 10: Power Converters in Electric Vehicles11m 11sTopic 11: Understanding EV Charging: Ports, Onboard & DC Switching7m 23s
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Module 2: PEV & Hybrid Powertrain Architectures
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Module 3: Powertrain Standards and Industry Case Studies
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Module 4: Power Electronics for Electric PowertrainTopic 1: Powertrain Nomenclature and Typical Power Ratings17m 44sTopic 2: Powertrain Thermal Management and Heat Dissipation15m 15sTopic 3: Powertrain Filtering and Power Conditioning Techniques13m 50sTopic 4: Noise Characterization & Considerations in Powertrain Systems4m 34sTopic 6: Voltage Conversion in Electric Powertrains3m 33sTopic 7: Voltage Regulator Topologies: Linear and Switching Regulators2m 39s
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Module 5: Emission Norms, Engine Sensors & Diagnostic SystemsTopic 5.1 Module Overview and Learning Objectives2m 2sTopic 5.2 Necessity of Emission Norms2m 48sTopic 5.3 Regulatory Bodies and Formulation of Emission Standards7m 54sTopic 5.4 Evolution and Implementation of BS6 Norms in India1m 16sTopic 5.5 History of Global and Indian Emission Standards9m 31sTopic 5.6 Gasoline Fuel Chemistry and Comparison of BS4, BS6, and Global Standards12m 38sTopic 5.7 Diesel Fuel Chemistry and Global Comparative Emission Standards9m 51sTopic 5.8 Major Automotive Pollutants and Their Permissible Limits20m 3sTopic 5.9 Technological Advancements in Emission Control Systems1m 35sTopic 5.10 Catalytic Converter Technologies9m 50sTopic 5.11 Overview of Engine Sensors and Actuators in Emission Systems3m 23sTopic 5.12 Air Intake and Boost Pressure Sensors – MAF, MAP, CAC, and Temperature Sensors9m 43sTopic 5.13 Exhaust Temperature and Pressure Sensing Mechanisms4m 40sTopic 5.14 EGR Position Sensors and Actuation Systems8m 12sTopic 5.15 Oxygen Sensors – Working, Construction, and Mixture Control8m 9sTopic 5.16 NOx Sensor Architecture and Functional Analysis8m 14sTopic 5.17 BS4 Engine Sensor Architecture and Integration10m 26sTopic 5.18 ECUECM and EMS2 System4m 53sTopic 5.19 Vehicle Electrical Harness Layout – Case Study Hyundai i103m 1sTopic 5.20 On-Board Diagnostics (OBD) and Fault Detection Protocols (SAE, ISO, etc.)16m 43sTopic 5.21 Consumer Perspective on BS6 Transition7m 37s
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Module 6: Powertrain Modeling and Simulation Using MATLAB-SimulinkTopic 6.1: EV Modeling Part I – Vehicle Body, Axles, and Tire Parameterization in MATLAB–Simulink15m 37sTopic 6.2: EV Modeling Part II – Drivetrain, Motor Controller (H-Bridge) Configuration and Parameter Setup16m 18sTopic 6.3: EV Modeling Part III – Driver Model, Power Converter & SOC Subsystem14m 52sTopic 6.4: Powertrain Modeling Part I – System-Level Integration and Model Architecture1h 15m 51sTopic 6.5: Powertrain Modeling Part II – Battery Modeling and SOC Estimation Techniques16m 42sTopic 6.6: Powertrain Modeling Part III – Complete Powertrain Simulation and Performance Analysis12m 36s
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Module 7: Modeling of Powertrain Components in SOLIDWORKS and Analysis using ANSYSTopic 1: 3D Modeling of Motor Shaft in SOLIDWORKS10m 35sTopic 2: Structural Analysis of Motor Shaft10m 35sTopic 3: 3D Modeling of Left Motor Mount12m 53sTopic 4: 3D Modeling of Right Motor Mount9m 55sTopic 5: Structural Analysis of Motor Mount Assemblies15m 57sTopic 6: 3D Modeling of Bearing Adaptor – I9m 14sTopic 7: 3D Modeling of Bearing Adaptor – Part II9m 14sTopic 8: Structural Analysis of Bearing Adaptor – Part III10m 1sTopic 9: Design Optimization of Driven Sprocket25m 57sTopic 10: Structural Analysis of Driving Sprocket9m 20sTopic 11: Structural Analysis of Driven Sprocket10m 20sTopic 12: 3D Modeling of Left Eccentric Mount12m 22sTopic 13: Structural Analysis of Left Eccentric Mount7m 40sTopic 14: 3D Modeling of Right Eccentric Mount10m 35sTopic 15: Structural Analysis of Right Eccentric Mount8m 28sTopic 16: 3D Modeling of Tripod Housing13m 46sTopic 17: Structural Analysis of Tripod Housing28m 23sTopic 18: 3D Modeling of Axle Shaft11m 32sTopic 19: Structural Analysis of Axle Shaft14m 57sTopic 20: 3D Modeling of Differential Mount24m 6sTopic 21: Structural Analysis of Differential Mount8m 38sTopic 22: 3D Modeling and Assembly of Differential System17m 50s
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Module 7: Battery Management System (BMS)Topic 1: Introduction to Battery Management System (BMS)10m 51sTopic 2: Block Diagram of BMS – Components and Functional10m 21sTopic 3: BMS Data Acquisition – Voltage, Temperature, and Current Measurement4m 23sTopic 4: Battery Monitoring Unit (BMU) – Architecture and Key Components6m 34sTopic 8.5: Battery Control Unit (BCU) – Functions, Inputs, and Protection Mechanisms9m 31sTopic 6: Cell Modeling and Simulation using MATLAB Simulink49m 54sTopic 7: BMS Modeling, Simulation, and Analysis using MATLAB Simulink38m 27sTopic 8: Powertrain Modeling and Simulation – BMS Integration Perspective1h 15m 51sTopic 9: Complete Electric Vehicle Modeling and Simulation with BMS Integration45m 40s
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Module 8: Battery Thermal Management System (BTMS)Topic 1: Introduction to Thermal ManagementTopic 2: Components of Cooling SystemTopic 3: Cooling System Maintenance and RepairTopic 3: Understand Heat LoadTopic 4: Motor Heat Load Simulation16m 11sTopic 5: Controller Heat Load Simulation6m 21sTopic 6: Radiator SpecificationTopic 7: Radiator CalculationsTopic 8: Design FlowTopic 9: Errors and Failures in Cooling SystemsTopic 10: Twin RadiatorsTopic 9: TestingTopic 10: Case StudyTopic 11: Importance of Cooling SystemTopic 12: Busbars Modelling7m 49sTopic 13: Busbars Simulation11m 35sTopic 14: Celltabs Modelling20m 8sTopic 15: Celltabs Simulation6m 31sTopic 16: Battery Pack Modelling34m 27sTopic 17: Battery Pack SimulationBattery Pack Simulation12m 24s
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DIY Projects:
The Advanced Powertrain for Electric Vehicles course is a comprehensive industry-oriented program designed to equip learners with in-depth knowledge of EV powertrain architecture, energy flow, modeling, and simulation.
This course bridges the gap between mechanical, electrical, and electronic systems, giving you the multidisciplinary skills required to design, analyze, and optimize modern electric vehicle powertrains.
Learners will gain a strong understanding of:
- Electric and hybrid powertrain architectures
- Motor control systems and power electronics
- MATLAB–Simulink-based powertrain simulation
- SolidWorks and ANSYS for component design and analysis
- BMS and BTMS integration for real-world EV performance optimization
By the end of this program, you’ll be capable of designing and simulating a complete EV powertrain system—from battery to motor shaft—using industry-standard tools.
What's included
- 8 Modules
- 97 Topics
- 21 Hours of Video Content
- 1 Project Assignment
- Certificate of Completion