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MATLAB/Simulink - Simulink Course For Electrical Engineering (Part 2)

Learn MATLAB Simulink to simulate electrical components and power systems. Master modeling and analysis in MATLAB Simulink for engineers. Read more.

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Course Skill Level
Beginner
Time Estimate
8h 21m

I am Ahmed Mahdy an electrical power engineer, researcher, and the founder of Khadija Academy. I am also an electrical bestselling instructor teaching electrical power engineering. I have helped over 80,000 students from 198 countries achieve career success with simple and easy courses in the last 8 years.​ In addition, I have a YouTube educational engineering channel called" Khadija Academy", where I regularly post videos related to electrical engineering. I have received the award for the be

About This Course

Who this course is for:

  • Engineers and researchers in renewable energy and power systems
  • Control system engineers and automation specialists
  • Advanced students seeking expertise in MATLAB Simulink

What you’ll learn: 

  • Renewable Energy System Modeling
    • Solar PV system simulation using MATLAB Simulink
    • Wind energy system modeling and power curve analysis
  • Advanced Control and Optimization Techniques
    • PID controller design and tuning in Simulink
    • Particle Swarm Optimization (PSO) for parameter selection
  • Power System Protection and Fault Analysis
    • Overvoltage and undervoltage detection with reclosure features
    • Fault analysis in grid-connected PV systems (symmetrical and unsymmetrical)
    • Masking and model callbacks for advanced simulation techniques
  • Software Integration and Data Processing
    • PSCAD-to-MATLAB integration for system-level analysis
    • Matrix applications in MATLAB for electrical engineering

MATLAB/Simulink – Simulink Course for Electrical Engineering (Part 2)

This advanced MATLAB Simulink course expands your expertise beyond basic circuit modeling. You’ll explore renewable energy system simulations, PID control, fault detection, and optimization techniques, equipping you with practical skills for modern energy and control systems. If you’re looking for a comprehensive MATLAB course, this program provides hands-on experience with real-world applications.

Before diving into this advanced course, make sure you’ve built a strong foundation! Enroll inMATLAB/Simulink – Simulink Course for Electrical Engineering (Part 1) first to master the basics of circuit modeling and simulation. Start now to prepare for success!

Our Promise to You

By the end of this course, you’ll be able to design, simulate, and optimize renewable energy and control systems, making you proficient in advanced MATLAB Simulink applications.

10 Day Money Back Guarantee. If you are unsatisfied for any reason, simply contact us and we’ll give you a full refund. No questions asked.

Get started today!

Course Curriculum

Section 1 - Applications On Matrices In MATLAB
Solving One Non Linear Equation In MATLAB Using Fzero Function 00:00:00
Example 1 On Solving Multiple Non Linear Equations in MATLAB Using Fsolve Function 00:00:00
Example 2 On Solving Multiple Non Linear Equations In Matlab Using Fsolve 00:00:00
Application Multi Level Inverter Part 1 00:00:00
Application Multi Level Inverter Part 2 00:00:00
Section 2 - Solar Energy Simulation Using Simulink In MATLAB
Simulation Of PV Cell In MATLAB And Obtaining V-I Characteristics 00:00:00
How To Solve The Single Output Problem In The To WorkSpace Function 00:00:00
Get A Complete Grid Connected PV Solar Energy System In MATLAB Simulink 00:00:00
Section 3 - MATLAB Simulation For A Wind Energy System
Introduction To MATLAB Simulation Of Wind Turbine 00:00:00
Introduction To CP Model And Lookup Table In MATLAB Simulink 00:00:00
CP Plotting In MATLAB Simulink 00:00:00
CP Lookup Table In MATLAB Simulink 00:00:00
Modeling And Simulation Of Wind Turbine Part 1 00:00:00
Modeling And Simulation Of Wind Turbine Part 2 00:00:00
Introduction To MPPT In MATLAB Simulink 00:00:00
MPPT Simulation In MATLAB Simulink 00:00:00
Section 4 - PSCAD To MATLAB
Importing Data From Pscad Program For Fault Location Detection To MATLAB Program 00:00:00
Section 5 - PID Controller In MATLAB
How To Implement PID Controller In Simulink Of MATLAB 00:00:00
Tuning A PID Controller In MATLAB Simulink 00:00:00
Section 6 - Application Of Particle Swarm Optimization (PSO) Algorithm
PID Tuning Using Particle Swarm Optimization Algorithm 00:00:00
Identifying The Execution Time Of A Script 00:00:00
Section 7 - Overvoltage And Undervoltage Fault Detection Scheme Design
Design Of An Overvoltage And Undervoltage Fault Detection Scheme 00:00:00
Adding Reclosure Feature To The Circuit Breaker 00:00:00
Section 8 - Masking In MATLAB Simulink
Creating A Subsystem 00:00:00
Masking Of A Subsystem And Promote Of A Parameter 00:00:00
Edit Parameters In Mask 00:00:00
Model Callbacks 00:00:00
Section 9 - Fault Analysis Of A Grid-Connected PV System In Simulink
Understanding And Preparing The Model 00:00:00
Adding Transmission Lines And Circuit Breakers 00:00:00
Applying Symmetrical And Unsymmetrical Faults To The System 00:00:00
How To Get Any Electrical Power Engineering Model In MATLAB Easily 00:00:00
Section 10 - Course Slides And Files
MATLAB Files 00:00:00
MATLAB Simulations Course Slides 00:00:00

About This Course

Who this course is for:

  • Engineers and researchers in renewable energy and power systems
  • Control system engineers and automation specialists
  • Advanced students seeking expertise in MATLAB Simulink

What you’ll learn: 

  • Renewable Energy System Modeling
    • Solar PV system simulation using MATLAB Simulink
    • Wind energy system modeling and power curve analysis
  • Advanced Control and Optimization Techniques
    • PID controller design and tuning in Simulink
    • Particle Swarm Optimization (PSO) for parameter selection
  • Power System Protection and Fault Analysis
    • Overvoltage and undervoltage detection with reclosure features
    • Fault analysis in grid-connected PV systems (symmetrical and unsymmetrical)
    • Masking and model callbacks for advanced simulation techniques
  • Software Integration and Data Processing
    • PSCAD-to-MATLAB integration for system-level analysis
    • Matrix applications in MATLAB for electrical engineering

MATLAB/Simulink – Simulink Course for Electrical Engineering (Part 2)

This advanced MATLAB Simulink course expands your expertise beyond basic circuit modeling. You’ll explore renewable energy system simulations, PID control, fault detection, and optimization techniques, equipping you with practical skills for modern energy and control systems. If you’re looking for a comprehensive MATLAB course, this program provides hands-on experience with real-world applications.

Before diving into this advanced course, make sure you’ve built a strong foundation! Enroll inMATLAB/Simulink – Simulink Course for Electrical Engineering (Part 1) first to master the basics of circuit modeling and simulation. Start now to prepare for success!

Our Promise to You

By the end of this course, you’ll be able to design, simulate, and optimize renewable energy and control systems, making you proficient in advanced MATLAB Simulink applications.

10 Day Money Back Guarantee. If you are unsatisfied for any reason, simply contact us and we’ll give you a full refund. No questions asked.

Get started today!

Course Curriculum

Section 1 - Applications On Matrices In MATLAB
Solving One Non Linear Equation In MATLAB Using Fzero Function 00:00:00
Example 1 On Solving Multiple Non Linear Equations in MATLAB Using Fsolve Function 00:00:00
Example 2 On Solving Multiple Non Linear Equations In Matlab Using Fsolve 00:00:00
Application Multi Level Inverter Part 1 00:00:00
Application Multi Level Inverter Part 2 00:00:00
Section 2 - Solar Energy Simulation Using Simulink In MATLAB
Simulation Of PV Cell In MATLAB And Obtaining V-I Characteristics 00:00:00
How To Solve The Single Output Problem In The To WorkSpace Function 00:00:00
Get A Complete Grid Connected PV Solar Energy System In MATLAB Simulink 00:00:00
Section 3 - MATLAB Simulation For A Wind Energy System
Introduction To MATLAB Simulation Of Wind Turbine 00:00:00
Introduction To CP Model And Lookup Table In MATLAB Simulink 00:00:00
CP Plotting In MATLAB Simulink 00:00:00
CP Lookup Table In MATLAB Simulink 00:00:00
Modeling And Simulation Of Wind Turbine Part 1 00:00:00
Modeling And Simulation Of Wind Turbine Part 2 00:00:00
Introduction To MPPT In MATLAB Simulink 00:00:00
MPPT Simulation In MATLAB Simulink 00:00:00
Section 4 - PSCAD To MATLAB
Importing Data From Pscad Program For Fault Location Detection To MATLAB Program 00:00:00
Section 5 - PID Controller In MATLAB
How To Implement PID Controller In Simulink Of MATLAB 00:00:00
Tuning A PID Controller In MATLAB Simulink 00:00:00
Section 6 - Application Of Particle Swarm Optimization (PSO) Algorithm
PID Tuning Using Particle Swarm Optimization Algorithm 00:00:00
Identifying The Execution Time Of A Script 00:00:00
Section 7 - Overvoltage And Undervoltage Fault Detection Scheme Design
Design Of An Overvoltage And Undervoltage Fault Detection Scheme 00:00:00
Adding Reclosure Feature To The Circuit Breaker 00:00:00
Section 8 - Masking In MATLAB Simulink
Creating A Subsystem 00:00:00
Masking Of A Subsystem And Promote Of A Parameter 00:00:00
Edit Parameters In Mask 00:00:00
Model Callbacks 00:00:00
Section 9 - Fault Analysis Of A Grid-Connected PV System In Simulink
Understanding And Preparing The Model 00:00:00
Adding Transmission Lines And Circuit Breakers 00:00:00
Applying Symmetrical And Unsymmetrical Faults To The System 00:00:00
How To Get Any Electrical Power Engineering Model In MATLAB Easily 00:00:00
Section 10 - Course Slides And Files
MATLAB Files 00:00:00
MATLAB Simulations Course Slides 00:00:00

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