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Matlab and Simulink Basics

Matlab and Simulink Basics

12 weeks long course | 100% Online

Learn from leading experts in the industry

Project based learning with 2 industry level projects that learners can showcase on LinkedIn.

Learn Key Tools & Technologies MATLAB, Simulink

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This course is full of best-in-class content by leading faculty and industry experts in the form of videos and projects

Course Overview

  • With emerging technologies in today’s world, it is becoming increasingly important to demonstrate the proof-of-concept of new technology quickly before a competitor gets ahead in the game.
  • This program is entirely designed to serve this objective.
  • This program is meant for students and engineers who would like to choose an engineering career in modelling, simulation, analysis, and tests being part of their day-to-day work life. 
  • Matlab and Simulink toolset supports all the above aspects of an engineering development process from system requirements to test and deployment. 

Course Syllabus

On a daily basis we talk to companies in the likes of Tata Elxsi and Mahindra to fine tune our curriculum.

Week 01 - MATLAB: Language Fundamentals and Programming

  • Workspace
  • Variables
  • Data Types
  • Loops and Conditional Statements
  • Inputs and Outputs
  • Loading and saving data 

Week 02 - MATLAB: Programming and Graphics

  • Scripts and Functions
  • Programming Utilities
  • Debugging
  • 2D and 3D plots
  • Formatting and Annotation
  • Printing and Saving

Week 03 - MATLAB: Mathematics

  • Elementary Math
  • Linear Algebra
  • Interpolation
  • Optimization
  • Numerical Integration

Week 04 - SIMULINK: Overview

  • Simulink Overview
  • Fundamentals in Model building
  • Introduction to Sources and Sinks 

Week 05 - SIMULINK: Basic Waveforms

  • Unit Step Function
  • Ramp Function
  • Pulse Function
  • Sum and Difference of Step Functions 

Week 06 - SIMULINK: Trigonometric Functions

  • Sine, Cosine and Tangent Functions
  • Cosecant Function
  • Secant Function
  • Cotangent Function
  • Applications of Trigonometric Functions 

Week 07 - SIMULINK: Differential Equations

  • Differential Equations
  • Solving differential equations
  • Spring mass damper system
    • Solving the system
    • Special cases
  • Laplace transforms 

Week 08 - SIMULINK: Spring-Mass-Damper Systems and Stability

  • Spring-Mass-Damper Systems and Stability
  • Transfer function estimation
    • Special cases
    • Solving for roots of the differential

Week 09 - SIMULINK: Simple Harmonic Oscillator and Control System Design

  • Simple Harmonic Oscillator
  • Control System Design
    • Transfer function
    • Feedback to the controller

Week 10 - SIMULINK: Linear Control System Design

  • Control System Objectives
  • PID (Proportional, Integral and Derivative) Control Design
  • Other time domain designs
  • Frequency domain designs

Week 11 - SIMULINK: PID Design for a Direct Current (DC) Machine

  • Modelling a Direct Current (DC) Machine
  • PID Design for a DC Motor
  • Speed control of a DC motor
  • Transfer function 

Week 12 - SIMULINK: Linearization and Nonlinear Control

  • Linearization
    • Nonlinear equation solving
  • Nonlinear Control
    • Transfer function
    • Feedback system

Our courses have been designed by industry experts to help students achieve their dream careers

Industry Projects

Our projects are designed by experts in the industry to reflect industry standards. By working through our projects, Learners will gain a practical understanding of what they will take on at a larger-scale in the industry. In total, there are 2 Projects that are available in this program.

Traveling salesman problem

Learners are required to set up a traveling salesman problem with 20 stations to visit in the city using their x and y coordinates generated using the “rand” function (range 0-100km). The sequence that leads to the smallest cost function will be the optimal solution. At the end of this project, learners are to deliver a Matlab script that solves and plots the solutions and individual plots (one for each solution in “.jpeg” format).

Speed Control of a Direct Current (DC) motor

Learners are required to develop a Simulink model for the DC motor according to the given schematic figure. They are to design, develop, and test a controller to maintain a desired speed for the motor using the proportional, integral, and derivative (PID) control design. At the end of this project, learners are to deliver a Matlab script that defines modeling and control design parameters, as well as a Simulink model that simulates and verifies the design.

Our courses have been designed by industry experts to help students achieve their dream careers

Ratings & Reviews by Learners

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Instructors profiles

Our courses are designed by leading academicians and experienced industry professionals.


1 industry expert

Our instructors are industry experts along with a passion to teach.


25 years in the experience range

Instructors with 25 years extensive industry experience.


Areas of expertise

  • Electrical
  • Mechanical
  • Aerospace

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