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MATLAB Simulink for Electrical Power Engineering

Overview This comprehensive course delves into MATLAB Simulink applications tailored specifically for electrical power engineering. From mastering matrix operations to …

MATLAB Simulink for Electrical Power Engineering

MATLAB Simulink for Electrical Power Engineering

Original price was: $417.25.Current price is: $35.30.

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MATLAB Simulink for Electrical Power Engineering Overview

This comprehensive course delves into MATLAB Simulink applications tailored specifically for electrical power engineering. From mastering matrix operations to simulating power electronics, solar energy systems, and various motor types, participants will gain hands-on experience in diverse aspects of power engineering simulations. By the end, learners will proficiently model synchronous generators, navigate power system simulations, and develop a solid foundation in MATLAB for electrical power applications.

MATLAB Simulink for Electrical Power Engineering – Who Is This Course For

This course is ideal for electrical engineers, power system analysts, renewable energy enthusiasts, and engineering students seeking practical skills in MATLAB Simulink for power engineering applications.

Learning Outcomes

  • Master matrix operations for efficient data manipulation.
  • Simulate power electronics circuits using MATLAB Simulink.
  • Analyse and simulate solar energy systems for optimal performance.
  • Model DC motors accurately in MATLAB Simulink.
  • Understand and simulate induction motors in diverse scenarios.
  • Simulate synchronous generators for power generation applications.
  • Navigate power system simulations with confidence.
  • Develop problem-solving skills through practical applications.
  • Interpret simulation results for informed decision-making.
  • Cultivate proficiency in MATLAB for electrical power engineering tasks.

Eligibility Requirements

Participants should possess a basic understanding of electrical engineering concepts and familiarity with MATLAB software. A background in power systems or renewable energy is advantageous but not mandatory. Enthusiastic learners with a passion for mastering MATLAB Simulink applications in electrical power engineering are encouraged to enrol.

Entry Requirements

  • This course is available to all learners of all academic backgrounds.
  • Learners should be aged 16 or over to undertake the qualification.
  • Some basic understanding of the English language and numeracy.  

Why Choose Us

  • Affordable, engaging & high-quality e-learning study materials;
  • Tutorial videos/materials from the industry-leading experts;
  • Study in a user-friendly, advanced online learning platform;
  • Efficient exam systems for the assessment and instant result;
  • The UK & internationally recognised accredited
  • Access to course content on mobile, tablet or desktop from anywhere, anytime;
  • The benefit of career advancement opportunities;
  • 24/7 student support via email.

Career Path

Upon completion, participants can pursue roles as power system engineers, renewable energy consultants, simulation engineers, electrical design engineers, research associates, and MATLAB developers in the power industry.

Course Curriculum

Unit 1- Applications On Matrices In MATLAB
Module 1- Solving One Non Linear Equation in MATLAB Using Fzero Function 00:15:00
Module 2-Example 1 on Solving Multiple Non Linear Equations in MATLAB Using Fsolve Function 00:15:00
Module 3- Example 2 on Solving Multiple Non Linear Equations in Matlab Using Fsolve 00:13:00
Module 4-Application Multi Level Inverter Part 1 00:25:00
Module 5- Application Multi Level Inverter Part 2 00:05:00
Unit 2-Power Electronics Simulations Using Simulink In MATLAB
Module 1-Introduction to MATLAB Simulations Using Simulink 00:04:00
Module 2-Half Wave Uncontrolled Rectifier with R Load Principle of Operation 00:21:00
Module 3- Half Wave Controlled Rectifier R Load Principle of Operation 00:05:00
Module 4-Simulation of Half Wave Controlled Rectifier Using Simulink In Matlab 00:26:00
Module 5- Principle of Operation of Fully Controlled Bridge Rectifier Part 1 00:06:00
Module 6- Principle of Operation of Fully Controlled Bridge Rectifier Part 2 00:06:00
Module 7-Simulation of Bridge Controlled Rectifier 00:16:00
Module 8-AC Chopper with R Load Principle of Operation 00:14:00
Module 9- Simulation of AC Chopper with R and RL Loads in MATLAB 00:11:00
Module 10- Buck Regulator Principle of Operation Part 1 00:16:00
Module 11-Buck Regulator Principle of Operation Part 2 00:17:00
Module 12-Simulation of Buck Regulator in MATLAB 00:14:00
Module 13-Boost Regulator Principle of Operation 00:23:00
Module 14- Simulation of Boost Regulator in MATLAB 00:12:00
Module 15-Buck-Boost Regulator Principle of Operation 00:17:00
Module 16- Simulation of Buck-Boost Regulator 00:09:00
Module 17- Single Phase Half Bridge R-Load 00:15:00
Module 18- Single Phase Half Bridge RL-Load 00:08:00
Module 19-Simulation of Single Phase Half Bridge Inverter 00:17:00
Module 20-Single Phase Bridge Inverter R-Load 00:06:00
Module 21-Single Phase Bridge Inverter RL-Load 00:07:00
Module 22-Simulation of Single Phase Bridge Inverter 00:10:00
Module 23-Three Phase Inverters and Obtaining The Line Voltages 00:15:00
Module 24-Three Phase Inverters and Obtaining The Phase Voltages 00:17:00
Module 25-Simulation of Three Phase Inverter 00:17:00
Module 26-Simulation of Charging and Discharging Capacitor Using Matlab 00:10:00
Unit 3- Solar Energy Simulation Using Simulink In MATLAB
Module 1-Separately Excited DC Machine 00:21:00
Module 2-DC Motor Modelling without Load Using Simulink in MATLAB 00:25:00
Module 3-DC Motor Modelling with Load Using Simulink in MALTAB 00:24:00
Module 4-DC Motor Block Simulation Using Power Library in MATLAB 00:16:00
Unit 4- DC Motor Simulation Using Simulink In MATLAB
Module 1-Construction and Principle of Operation of Synchronous Generator 00:29:00
Module 2-Equivalent Circuit and Phasor Diagram of Non Salient Synchronous Machine 00:29:00
Module 3-Equivalent Circuit and Phasor Diagram of Salient Synchronous Machine 00:39:00
Module 4-Simulation of Synchronous Machine Connected to Small Power System 00:38:00
Unit 5- Induction Motor Simulation Using Simulink In MATLAB
Module 1-Construction and Theory of Operation of Induction Machines 00:27:00
Module 2-Equivalent Circuit and Power Flow in Induction Motor 00:23:00
Module 3-Torque-Speed Characteristics of Induction Motor 00:20:00
Module 4- Simulation of Induction Motor or Asynchronous Motor Using Simulink 00:33:00
Unit 6- Synchronous Generator Simulation In Simulink Of MATLAB
Module 1- Importing Data from PSCAD Program for Fault Location Detection to MATLAB Program 00:37:00
Unit 7- Power System Simulations
Module 1-How to Implement PID Controller in Simulink of MATLAB 00:14:00
Module 2-Tuning a PID Controller In MATLAB Simulink 00:17:00

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