What you will learn?
Navigate the Simulink interface and understand basic operations.
Create and simulate system models using various Simulink blocks.
Analyze and interpret simulation results.
Solve nonlinear algebraic and differential equations using Simulink.
Design and implement PID controllers in Matlab & Simulink.
Perform load flow analysis of electric power systems.
Apply Simulink to various engineering and scientific applications.
About this course
This course is designed for anyone who wants to learn the basic principles and functionalities of Simulink, a powerful graphical programming environment used for modeling, simulating, and analyzing dynamic systems.
Through a series of lectures and tutorials, you'll gain hands-on experience with various Simulink features, including:
- Navigating the Simulink interface and understanding basic operations
- Creating and simulating system models using various Simulink blocks.
- Simulating the flow of data within your model
- Solving nonlinear algebraic equations using the Newton-Raphson method
- Working with data from the workspace and utilizing Goto & From components
- Managing data storage and creating signals using Bus Creator
- Solving differential equations and creating subsystems with masks
- Modeling transfer functions, state-space systems, and systems of ordinary differential equations (ODEs)
- Building a quarter car model using Simulink/Matlab
- Linearizing nonlinear ODEs for further analysis
- Designing and implementing Proportional-Integral-Derivative (PID) controllers in Matlab & Simulink
- Simulating the photovoltaic cell characteristic curve using Simulink and Matlab
- Designing advanced controllers like PID and Model Predictive Control (MPC) for position control systems
- Performing load flow analysis of electric power systems using Simulink and Matlab
By the end of this course, you'll be equipped with the essential skills to:
- Build and simulate complex dynamic systems.
- Analyze and interpret simulation results.
- Apply Simulink to various engineering and scientific applications.
This course is ideal for:
- Engineers, scientists, and students
- Professionals looking to expand their skillset in simulation and control.
- Anyone interested in learning the fundamentals of Simulink.
Enroll today and start your journey into the world of dynamic systems modeling and simulation with Simulink!
To learn more: CourseVox

Requirements
There is no prior experience required, even if you have never used MATLAB or Simulink before.
Matlab and Simulink software. Downloadable from MathWorks website.
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Basic Simulink Operations (lecture 1)
Basic Simulink Operations (lecture 2)
Basic Simulink Operations -simulation flow (lecture3)
Newton-Raphson Method for solving nonlinear algebraic equations using Simulink
From Workspace (Simulink tutorial)
Goto & From Components (Simulink tutorials)
Data Store Memory & Bus Creator (Simulink tutorial)
Solving Differential Equation in Simulink
Create Subsystem & mask in simulink
Transfer Function and State space (Mass spring damper example) (simulink
Solving system of ODEs in Simulink
Quarter Car Model Equations of Motion using Simulink/Matlab
Linearization of Nonlinear ODEs in Matlab/Simulink
Proportional–integral–derivative Controller (PID) (Matlab & Simulink)
PV characteristic curve of photovoltaic cell (Simscape & Matlab)
Design PID&MPC Controller for Position Servomechanism (Matlab & Simulink)
Electric Power System Load Flow Analysis (Matlab & Simulink)