MATLAB Simulink for Electrical Power Engineering

Course

Online

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£ 10 £ 425 VAT inc.

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Description

  • Type

    Course

  • Level

    Intermediate

  • Methodology

    Online

  • Class hours

    13h

  • Duration

    Flexible

  • Start date

    Different dates available

The MATLAB Simulink for Electrical Power Engineering course is designed to equip learners with practical skills in using MATLAB and Simulink for modelling, simulating, and analysing electrical power systems. This course provides a comprehensive introduction to the tools and techniques used in power system design, control, and optimisation.

Learners will explore how to model electrical circuits, power components, and energy systems, simulate dynamic behaviour, and analyse results to support decision-making in engineering projects. The course covers key concepts such as load flow analysis, fault analysis, power electronics modelling, and renewable energy system simulations.

Ideal for electrical engineers, students, researchers, and professionals working in power systems, the MATLAB Simulink for Electrical Power Engineering course enhances both theoretical understanding and practical application. By completing this course, learners will gain confidence in using MATLAB and Simulink to design, simulate, and optimise electrical power systems, improving problem-solving capabilities and supporting career development in electrical engineering, energy management, and research.

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Facilities

Location

Start date

Online

Start date

Different dates availableEnrolment now open

About this course

Understand the fundamentals of MATLAB and Simulink for power systems.
Model electrical circuits, machines, and power components.
Simulate dynamic behaviour of electrical power systems.
Analyse power system performance and fault conditions.
Apply power electronics and renewable energy modelling techniques.
Enhance problem-solving and system optimisation skills.

The MATLAB Simulink for Electrical Power Engineering course is suitable for electrical engineering students, researchers, and professionals working in power systems, energy management, or renewable energy sectors.

It is ideal for beginners with basic electrical engineering knowledge as well as experienced engineers looking to enhance their simulation and modelling skills. The course is particularly valuable for those involved in power system analysis, control design, and electrical energy research. Learners completing this course will acquire practical skills to model, simulate, and analyse electrical systems using MATLAB and Simulink, enabling them to solve complex engineering problems and optimise system performance effectively.

There are no formal entry requirements for this course. It is suitable for learners aged 16 and above with an interest in electrical engineering, power systems, or MATLAB simulation. Basic knowledge of electrical circuits, mathematics, and computer skills is recommended but not mandatory. Learners should have good English skills. The course is structured to support beginners while delivering professional-level expertise in MATLAB Simulink for practical power engineering applications.

Upon successful completion of the MATLAB Simulink for Electrical Power Engineering, you will qualify for a UK and internationally recognised professional certification. You may also choose to formalise your achievement by obtaining your PDF Certificate for £9 or a Hardcopy Certificate for £15.

This course offers flexible, self-paced online learning, allowing learners to study at a time and pace that suits their schedule. Expert-designed modules focus on practical, career-focused skills in electrical power system modelling and simulation using MATLAB Simulink.

Learners gain transferable skills that enhance a CV and professional profile. Completing this course equips learners to model complex power systems, simulate electrical behaviour, analyse system performance, and optimise energy solutions. The practical, results-oriented approach ensures learners can immediately apply knowledge to real-world engineering projects, supporting both professional development and academic research in electrical power engineering.

Yes. The course introduces MATLAB and Simulink concepts progressively, making it accessible to learners with basic electrical engineering knowledge.

Learners gain practical skills in modelling, simulating, and analysing power systems, enhancing employability in electrical engineering, energy management, and research roles.

The course is fully online and self-paced. Learners can access all materials anytime from any device, allowing flexible study alongside work or personal commitments.

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This centre's achievements

2019

All courses are up to date

The average rating is higher than 3.7

More than 50 reviews in the last 12 months

This centre has featured on Emagister for 7 years

Subjects

  • Design
  • Electrical
  • Power Engineering
  • Engineering Skills
  • Engineering

Teachers and trainers (1)

One Education

One Education

Course Provider

Course programme

This course provides a hands-on guide to **MATLAB and Simulink applications in engineering and power systems**. It begins with **matrix applications in MATLAB** and progresses to **power electronics simulations, solar energy modeling, and DC motor simulations using Simulink**. Learners also explore **induction motor simulations, synchronous generator modeling**, and conclude with **comprehensive power system simulations**, equipping them with practical skills to design, analyze, and simulate complex engineering systems effectively.

Course Curriculum

  • Unit 1- Applications on Matrices in MATLAB
  • Unit 2-Power Electronics Simulations Using Simulink in MATLAB
  • Unit 3- Solar Energy Simulation Using Simulink in MATLAB
  • Unit 4- DC Motor Simulation Using Simulink in MATLAB
  • Unit 5- Induction Motor Simulation Using Simulink in MATLAB
  • Unit 6- Synchronous Generator Simulation in Simulink of MATLAB
  • Unit 7- Power System Simulations

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MATLAB Simulink for Electrical Power Engineering

Special Emagister price

£ 10 £ 425 VAT inc.