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Engineering

Master of Science in Electrical Engineering

The Master of Science in Electrical Engineering is a postgraduate programme that prepares professionals for advanced practice in electrical power systems, control engineering, and power electronics. The programme combines electrical engineering theory with practical system design, laboratory work, and research application.

Core areas include power systems engineering, control engineering, power electronics, electrical machines, power system protection, renewable energy integration, smart grids, research methods, and thesis. Students engage with both electrical engineering theory and practical laboratory and project work through coursework and research.

The programme is offered by JKUAT through the Department of Electrical and Electronic Engineering in the School of Mathematics, Manufacturing, Mechanical and Energy Engineering, and Moi University through the School of Engineering. Both are public universities offering programmes over two academic years through full-time and part-time modes of study.

Students develop competencies in power systems, control engineering, power electronics, electrical machines, and renewable energy integration. The programme includes coursework, examinations, laboratory work, design projects, and a supervised research thesis with specialisation options in Control Engineering, Power Systems, and Power Electronics.

JKUAT charges approximately KES 181,000/year (KES 362,000 total) for MSc in Electrical Engineering. Moi University charges similar fees for engineering masters programmes. Entry requires a Bachelor's degree with Second Class Honours Upper Division in Electrical Engineering or related fields from a recognised university.

Graduates pursue careers as electrical engineers, power systems engineers, control engineers, power electronics engineers, renewable energy engineers, and lecturers in electrical engineering across energy companies, manufacturing firms, consulting firms, government agencies, and universities.

Skills Required

  • Power Systems Engineering and Analysis
  • Control Engineering and Automation
  • Power Electronics and Drives
  • Electrical Machines and Modelling
  • Power System Protection and Stability
  • Renewable Energy Integration
  • Smart Grids and Microgrids
  • Power Quality and Efficiency
  • Research Methods in Electrical Engineering
  • Academic Writing and Thesis Research

Key Subjects

  • Power Systems Engineering and Analysis
  • Control Engineering and Automation
  • Power Electronics and Drives
  • Electrical Machines and Modelling
  • Power System Protection and Stability
  • Renewable Energy Integration
  • Smart Grids and Microgrids
  • Power Quality and Efficiency
  • Research Methods in Electrical Engineering
  • Thesis Research

Certifications

  • EBK Professional Engineer Registration
  • IEEE Professional Certification

Specializations

Power Systems Engineering

Focuses on power systems, covering generation, transmission, distribution, stability, protection, and managing power systems.

Control Engineering

Examines control engineering, covering classical control, modern control, digital control, automation, and managing control systems.

Power Electronics

Covers power electronics, covering converters, inverters, drives, PWM, and managing power electronic systems.

Renewable Energy Systems

Focuses on renewable energy systems, covering solar, wind, microgrids, grid integration, and managing renewable energy.

Smart Grids

Examines smart grids, covering automation, IoT, communication, demand response, and managing smart grid systems.

Electrical Machines and Drives

Covers electrical machines, covering transformers, motors, generators, drives, and managing electrical machines.

Duration
2 years
Public, up to
Ksh 187,200
Job market
High

The programme

What you study, how long it takes, and how it is delivered.

Practicalities

Study mode
Full-time, Part-time
Attachment
0 months
Average class
20 students
Award
Masters

What you study

10 subjects
  • Power Systems Engineering and Analysis
  • Control Engineering and Automation
  • Power Electronics and Drives
  • Electrical Machines and Modelling
  • Power System Protection and Stability
  • Renewable Energy Integration
  • Smart Grids and Microgrids
  • Power Quality and Efficiency
  • Research Methods in Electrical Engineering
  • Thesis Research

Modules

12 in the programme
  • Advanced Power Systems Engineering

    Year 1Semester 13 creditsCore

    Examines generation, transmission, distribution, stability, protection, and managing power systems.

  • Control Engineering and Automation

    Year 1Semester 13 creditsCore

    Covers classical control, modern control, digital control, automation, and managing control systems.

  • Power Electronics and Drives

    Year 1Semester 13 creditsCore

    Examines converters, inverters, drives, PWM, motor control, and managing power electronic systems.

  • Research Methods in Electrical Engineering

    Year 1Semester 13 creditsCore

    Covers research design, data collection, analysis, engineering research methods, and conducting electrical engineering research, preparing students for their thesis.

  • Electrical Machines and Modelling

    Year 1Semester 23 creditsCore

    Covers transformers, motors, generators, drives, modelling, and managing electrical machines.

  • Power System Protection and Stability

    Year 1Semester 23 creditsCore

    Examines relays, circuit breakers, fault analysis, stability, and managing protection systems.

  • Renewable Energy Integration

    Year 1Semester 23 creditsCore

    Covers solar, wind, grid integration, microgrids, energy storage, and managing renewable energy systems.

  • Smart Grids and Microgrids

    Year 1Semester 23 creditsCore

    Examines smart grids, microgrids, IoT, communication, demand response, and managing smart grid systems.

  • Power Quality and Efficiency

    Year 2Semester 13 creditsCore

    Covers harmonics, power factor, voltage quality, efficiency, and managing power quality.

  • Advanced Control Systems

    Year 2Semester 13 creditsCore

    Examines optimal control, adaptive control, robust control, nonlinear control, and managing advanced control systems.

  • Power System Economics and Planning

    Year 2Semester 13 creditsCore

    Covers power system economics, planning, markets, tariffs, and managing power system economics.

  • Research Thesis

    Year 2Semester 29 creditsCore

    Original supervised research thesis on an electrical engineering topic, demonstrating mastery of research methods and engineering knowledge, assessed through written submission and oral defence.

Specialisations

  • Power Systems Engineering

    Focuses on power systems, covering generation, transmission, distribution, stability, protection, and managing power systems.

  • Control Engineering

    Examines control engineering, covering classical control, modern control, digital control, automation, and managing control systems.

  • Power Electronics

    Covers power electronics, covering converters, inverters, drives, PWM, and managing power electronic systems.

  • Renewable Energy Systems

    Focuses on renewable energy systems, covering solar, wind, microgrids, grid integration, and managing renewable energy.

  • Smart Grids

    Examines smart grids, covering automation, IoT, communication, demand response, and managing smart grid systems.

  • Electrical Machines and Drives

    Covers electrical machines, covering transformers, motors, generators, drives, and managing electrical machines.

A day as a student

A typical day during the MSc in Electrical Engineering programme combines lectures, laboratory sessions, design projects, practical workshops, seminars, and independent study. Sessions cover power systems, control engineering, power electronics, and electrical machines. Power systems sessions examine generation, transmission, distribution, stability, protection, and managing power systems. Control engineering sessions cover classical control, modern control, digital control, automation, and managing control systems. Power electronics sessions cover converters, inverters, drives, PWM, and managing power electronic systems. Electrical machines sessions cover transformers, motors, generators, drives, and managing electrical machines. Power system protection sessions cover relays, circuit breakers, fault analysis, and managing protection systems. Renewable energy integration sessions cover solar, wind, grid integration, microgrids, and managing renewable energy systems. Smart grid sessions cover automation, IoT, communication, demand response, and managing smart grid systems. Power quality sessions cover harmonics, power factor, voltage quality, and managing power quality. Research methods sessions prepare students for their thesis, covering research design, data collection, and analysis. Laboratory sessions provide hands-on experience with electrical machines, power electronics, control systems, and measurement instruments. Design projects provide hands-on experience with system design, simulation, prototyping, and testing. Practical workshops provide hands-on experience with MATLAB, Simulink, PSCAD, and engineering tools. Seminars and discussion groups provide opportunities for debating current issues in electrical engineering and presenting research findings. Guest lectures from experienced electrical engineers and industry professionals provide practical insights. The programme culminates in a supervised research thesis on an electrical engineering topic.

The trade offs

In its favour

  • High demand for electrical engineers with Kenya's power expansion, rural electrification, renewable energy, and industrial automation needs.
  • JKUAT offers competitive fees at approximately KES 181,000/year (KES 362,000 total) for MSc in Electrical Engineering.
  • Programme offers three specialisation options: Control Engineering, Power Systems, and Power Electronics.
  • Graduates are eligible for EBK professional registration and IEEE certification, enhancing career prospects.

Against it

  • Programme is primarily offered by JKUAT, with limited institutional choice.
  • Moi University and TU-K specific electrical engineering masters fees not independently verified.
  • No private university confirmed offering this programme.
  • Programme requires electrical engineering or related background, limiting access for non-related graduates.

What it costs

Tuition at both ends of the market, and how to pay for it.

What it costs, and where

Against 332 engineering courses
Public181k to 187k
181k at JKUAT187k at Moi University

Annual tuition in Kenyan shillings, rounded. The upright tick is the median for this field, so a bar sitting entirely to its right is an expensive programme by the standards of its own subject.

The fine print

JKUAT ~181K/yr (kenyaeducationguide). Moi ~187K/yr (worldscholarshipforum). Private: unverified.

HELB postgraduate loans are available for Kenyan students. JKUAT and Moi University may offer postgraduate bursaries. Some energy companies and engineering firms may sponsor staff for postgraduate study. IEEE may offer fellowships and grants for electrical engineering research.

Funding options

  • HELB Postgraduate Loan

  • JKUAT Postgraduate Bursary

  • Moi University Bursary

Scholarships

3 recorded
  • HELB Postgraduate Loan

    LoanKsh 200,000Kenyan

    Kenyan students pursuing postgraduate studies at recognised universities.

  • JKUAT Postgraduate Bursary

    ScholarshipKsh 100,000Kenyan

    JKUAT offers postgraduate bursaries for eligible students.

  • Moi University Bursary

    ScholarshipKsh 100,000Kenyan

    Moi University offers bursaries for eligible postgraduate students.

Getting in

The grades, the alternatives, and who accredits the award.

What you need

KCSE mean grade
N/A (Postgraduate)
Alternative entry
JKUAT requires Upper Second in relevant discipline from JKUAT or recognised institution, or Lower Second, or Postgraduate Diploma with two years experience or academic advancement through research and publication. Moi University requires similar qualifications. Contact respective universities for specific admission requirements.

How you are assessed

4 components
  • Coursework and Continuous Assessment

    Coursework30% of the mark

    Continuous assessment through coursework assignments, laboratory reports, design project reports, seminar presentations, and class participation.

  • Written Examinations

    Examination70% of the mark

    Written examinations covering power systems, control engineering, power electronics, and electrical machines.

  • Practical and Laboratory Assessment

    Practical30% of the mark

    Practical assessment through laboratory exercises, design projects, system simulation, and demonstrating electrical engineering skills.

  • Research Thesis

    Research100% of the mark

    Original supervised research thesis on an electrical engineering topic, demonstrating mastery of research methods and engineering knowledge, assessed through written submission and oral defence.

Accreditation

The programme is accredited by the Commission for University Education (CUE) and regulated by the Engineers Board of Kenya (EBK). JKUAT (public) offers MSc in Electrical Engineering through the Department of Electrical and Electronic Engineering with options in Control Engineering, Power Systems, and Power Electronics. Moi University (public) offers related engineering programmes. All programmes meet CUE standards for postgraduate training in electrical engineering. Graduates are eligible for EBK professional engineer registration and IEEE professional certification.

Accredited by

  • Commission for University Education (CUE)

    Academic accreditationRequired

    Programme accredited by CUE and regulated by the Engineers Board of Kenya (EBK). JKUAT (public) offers MSc in Electrical Engineering through the Department of Electrical and Electronic Engineering with options in Control Engineering, Power Systems, and Power Electronics. The programme meets CUE standards for postgraduate training in electrical engineering. Graduates are eligible for EBK professional engineer registration and IEEE professional certification.

Where it leads

The roles it opens, and what you leave with.

Where graduates go

6 roles
  • Electrical Engineer

    High demandKsh 130,000 to Ksh 600,000

    Designs and manages electrical systems, overseeing power, control, electronics, and managing electrical engineering.

  • Power Systems Engineer

    High demandKsh 140,000 to Ksh 650,000

    Manages power systems, overseeing generation, transmission, distribution, and managing power systems.

  • Control Engineer

    High demandKsh 130,000 to Ksh 600,000

    Designs control systems, overseeing automation, process control, and managing control engineering.

  • Power Electronics Engineer

    Moderate demandKsh 130,000 to Ksh 600,000

    Designs power electronic systems, overseeing converters, drives, and managing power electronics.

  • Renewable Energy Engineer

    High demandKsh 130,000 to Ksh 600,000

    Manages renewable energy systems, overseeing solar, wind, grid integration, and managing renewable energy.

  • Electrical Engineering Lecturer

    Moderate demandKsh 120,000 to Ksh 500,000

    Teaches electrical engineering at university or college level, overseeing instruction, research, and academic supervision.

Graduate outcomes

Graduates pursue careers as electrical engineers, power systems engineers, control engineers, power electronics engineers, renewable energy engineers, and lecturers in electrical engineering across energy companies, manufacturing firms, consulting firms, government agencies, and universities.

Where these fields lead

8 careers

Tools you will learn

  • MATLAB

    SoftwarePrimary

    MATLAB for engineering simulation, covering modelling, analysis, control, signal processing, and managing engineering simulation.

  • Simulink

    Software

    Simulink for system simulation, covering control, power electronics, signal processing, and managing system simulation.

  • PSCAD

    Software

    PSCAD for power system simulation, covering power systems, grid, transient, and managing power system simulation.

  • ETAP

    Software

    ETAP for power system analysis, covering load flow, short circuit, protection, and managing power system analysis.

Industry links

Common misconceptions

  • Electrical engineering is just about wiring and installations.

    Electrical engineering covers comprehensive power systems, control, electronics, machines, and renewable energy beyond just wiring and installations.

  • This programme is only for electrical engineering graduates.

    Electrical engineering skills are valuable for electronics, mechatronics, and computer engineering graduates beyond just electrical engineering graduates.

  • Power systems is just about building power lines.

    Power systems covers comprehensive generation, transmission, distribution, stability, protection, and grid integration.

  • Control engineering is just about PID controllers.

    Control engineering covers comprehensive classical, modern, digital, optimal, and adaptive control.

  • Power electronics is just about converters.

    Power electronics covers comprehensive converters, inverters, drives, PWM, and power management.

  • Smart grids is just about smart meters.

    Smart grids cover comprehensive automation, IoT, communication, demand response, and grid management.

Related courses

Further reading

Keep this

Fees and entry marks for Master of Science in Electrical Engineering are restated every intake. Save it and the app keeps this version, so you can see what changed when it does.