Post Graduate Program in Electric Vehicle Design and Development

BY
Skill Lync

Mode

Online

Duration

48 Weeks

Fees

₹ 275000

Quick Facts

particular details
Medium of instructions English
Mode of learning Self study
Mode of Delivery Video and Text Based

Course and certificate fees

Fees information
₹ 275,000
certificate availability

Yes

certificate providing authority

Skill Lync

The syllabus

Phase 1- Refresher Course Syllabus

Simulink for Mechanical & Electrical Engineers
  • Introduction to Modelling of Complex Systems
  • Simulation Configurations and Simscape
  • Simulink with Script and Workspace
  • Stateflow for Control Logic
Introduction to Model-Based Development using MATLAB & Simulink
  • Fundamentals and basics of Matlab scripting
  • SIMULINK
  • MATLAB Model-Based Development
  • Model Validation
  • ADAS
Embedded C Essentials
  • Bitwise operators, storage classes, preprocessor directives, and conditional compilation
  • Functions
  • Pointers
  • Structure union
  • File handling
  • Dynamic memory allocation
  • Command line arguments
  • Modular programming and make utility
  • Concepts of debugging
  • Introduction to MISRA C guidelines

Phase II - Embedded Software Track Course Syllabus

Fundamentals of Embedded Systems
  • Role of embedded systems in mechatronic systems
  • ARM (MCU) architecture
  • Sensors, actuators, and instrumentation cluster
  • Embedded systems design methodology
  • Introduction to safety standards
  • Embedded C programming on simulators (Hands-on)
Device Drivers & Serial Communication Protocols
  • Theoretical Introduction to ARM on-chip peripherals
  • Bare metal programming with board bring up
  • Driver development for GPIO, UART, SPI, I2C interfaces
  • Hands-on Peripheral Interfacing using SPI/I2C Interfaces
  • Theoretical Introduction on CAN, Ethernet, ARINC
  • CAN Driver Development (Hands-on)
  • CAN data analysis and visualization (Hands-on)
Software Verication and Validation & System Testing for Hand Code
  • Introduction to verication and validation, and the dierent stages of testing
  • Test case development from requirements
  • Static analysis and MISRA-C guidelines
  • Unit testing and integration testing
  • Introduction to test automation and CI/CD
Software Verification and Validation and System Testing for Model-Based Development
  • MBD,V-Cycle and ASPICE Process overview
  • Requirements managements and Modelling Guidelines
  • Fixed Point conversion
  • Model Verification and Model-in-Loop Validation
  • Static Analysis, Test Automation and Back to Back Testing
Embedded Linux in ARM
  • Linux architecture
  • Embedded development environment and platform functional block overview
  • Linux booting process
  • Linux customization and porting

Phase III - EV Design Track Course Syllabus

Introduction to Hybrid Electric Vehicle using MATLAB Simulink
  • Traction power equations, driving cycle, and importance of modelling
  • Hybrid electric vehicle architectures
  • Electric motors and power converters for propulsion
  • Braking of electrical motors and motor eciency plots
Introduction to Control of Electric Vehicle
  • Introduction to control systems
  • Stability analysis
  • Control Theory Applied to power converters and motors
  • Controller design for DC motor
  • Introduction to digital control
  • Using microcontroller for motor control
  • Vehicle dynamics control
Introduction to Battery Technology for Electric Vehicle
  • Energy and electrochemistry
  • Important terms and characteristics
  • Mathematical modelling
  • Battery pack construction
  • New energy storage technologies
  • Introduction to Battery management system
  • Design of Battery management system
  • Battery charging
  • Thermal management
  • Recent trends and economy
Simulation and Design of Power Converters for EV using MATLAB/Simulink
  • Introduction to switched mode power converters, performance and analysis of buck DC/DC converter
  • Simulation of boost DC/DC converter
  • Boost DC/DC converter, gate driver design
  • Up/Down DC/DC Converters
  • Discontinuous conduction mode
  • Modeling of DC-DC Converters
  • Feedback control of DC-DC converters
  • Isolated DC-DC Converters
  • AC-DC Rectiers performance and simulations
  • DC-AC rectiers design, DC-AC inverters design
  • Modern applications of power electronic converters
Fuel Cell and Ultra Capacitor for EV using MATLAB and Simulink
  • PEM Fuel Cell Fundamentals
  • Fuel Cell Operation
  • Batteries and Ultracapacitor
  • Introduction to Programming in MATLAB
  • Control Strategies for Energy Management
  • Creating Basic Vehicle Model
  • Creating Fuel Cell Model, UC Model and Battery Model
  • Creating the Energy Management Strategy
  • Well to Wheel Analysis of Fuel Cell Vehicle
PCB Design for Beginners using Altium Designer
  • Basic electronics
  • Circuit analysis on how a circuit works
  • Symbol creation and parameters update
  • Drafting circuit with all specications with ERC
  • PCB design engineering
  • Importing netlist to PCB and creating PCB outline
  • Footprint creation and its standards
  • Component placement
  • Stackup creation
  • Constraints and via selection
  • Routing and its strategies
  • Design rule check
  • Cleanup and artwork creation
  • CAM checking
  • EMI, EMC, current measuring rules
  • Communication used in automotive products
  • PCB manufacturing techniques and process
Electric Motor Design using MATLAB and ANSYS Maxwell
  • Electromagnetics
  • DC Motors
  • AC Motors I - Introduction
  • AC Motors II - Modelling
  • Torque Speed Characteristics
  • Industrial Application of Motors
  • Permanent Magnet Motors
  • Reluctance Motors
  • PM Assisted Synchronous reluctance motors
  • Finite element analysis using ANSYS
  • Electromagnetic analysis
  • Interior PM Motor Design using ANSYS

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