MS Electrical Engineering

Program Overview

Credit Hours

Duration

Semesters

Attendance

The MS Electrical Engineering program at Superior University is a 2-year postgraduate degree ensuring progressive deepening of disciplinary mastery across electrical engineering domains including power systems, control systems, renewable energy, and smart systems. Year 1 builds foundation in advanced mathematics, system modelling, and core electrical engineering. Year 2 emphasizes specialization and research in areas such as renewable energy, intelligent control, and smart systems, preparing graduates for senior engineering roles and doctoral studies.

QUICK LINKS

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PROGRAM ACCREDITATIONS

Why Choose MS Electrical Engineering at Superior University?
Industry-Oriented Curriculum

Industry-Oriented Curriculum

Advanced specialization aligned with modern technological trends and industry needs.

Modern Simulation Tools

Modern Simulation Tools

Hands-on training with state-of-the-art tools (MATLAB, PSCAD, ETAP, HOMER Pro, Proteus).

Applied Research Focus

Applied Research Focus

Strong emphasis on applied research and solving real-world electrical engineering challenges.

Strong Interdisciplinary Learning

Strong Interdisciplinary Learning

Integration of mathematics, physics, automation, and AI/ML in electrical engineering.

Industry-Linked Projects

Industry-Linked Projects

Collaborative projects with industry partners and opportunities for practical solutions.

Simulation & Modeling

MATLAB System Modeling

MATLAB System Modeling

Training in MATLAB numerical computing and system modeling.

PSCAD Power System Analysis

PSCAD Power System Analysis

Professional training in PSCAD for power system transient analysis.

ETAP Software Training

ETAP Software Training

Certification in ETAP for power system design and protection coordination.

HOMER Pro Energy Design

HOMER Pro Energy Design

Training in HOMER Pro for renewable energy system optimization.

Key Skills You Will Learn
Power Systems & Control Design

Power Systems & Control Design

Renewable Energy Systems Engineering

Renewable Energy Systems Engineering

AI & Machine Learning in EE

AI & Machine Learning in EE

Industrial Automation & Control

Industrial Automation & Control

System Modelling & Simulation

System Modelling & Simulation

Smart Grid & Smart Systems

Smart Grid & Smart Systems

Power Electronics & Design

Power Electronics & Design

Research Methodology & Thesis

Research Methodology & Thesis

Career Outcomes

Tools and technologies you will master

Electrical Systems Simulation


  • MATLAB Numerical Computing
    MATLAB Numerical Computing
  • Python Data & AI
    Python Data & AI
  • C++ Embedded Systems
    C++ Embedded Systems
  • AI & Machine Learning
    AI & Machine Learning
  • MATLAB/Simulink Control Design
    MATLAB/Simulink Control Design
  • PSCAD Transient Analysis
    PSCAD Transient Analysis
  • ETAP Design & Protection
    ETAP Design & Protection
  • HOMER Pro Optimization
    HOMER Pro Optimization

Admissions & Eligibility

Domestic Applicants

International Applicants

⚠️ Important

Always refer to the Admissions Office for the current criteria, deadlines and documentation.

NEXT STEPS

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Program Roadmap

Explore courses roadmap in MS Electrical Engineering

Electrical Engineering Research Track

Power Systems Optimization & Control
Power Systems Optimization & Control
Renewable Energy Systems
Renewable Energy Systems
AI Integration for Smart Power Control
AI Integration for Smart Power Control
EV Design and Operations
EV Design and Operations

TRANSFORMATIONAL JOURNEY

Discover your 3C Advantage

Character


Engineering for Pakistan's Energy Future — Electrical engineers design systems affecting national energy infrastructure. This program instills awareness that innovations in power distribution, renewable integration, and grid modernization have direct impact on national energy security and economic stability.

Courage


The Courage to Solve Complex Systems — Modern power systems are increasingly complex with renewable integration, demand variability, and digital transformation. Students develop the technical courage and problem-solving resilience to design solutions for these unprecedented challenges.

Competence


Advanced Electrical Engineering Competence — Students develop expert competence in their chosen specialization — power systems, renewable energy, smart grids, or control systems — alongside professional simulation tools and applied research methodology.

FAQs

Frequently Asked Questions

2 years (4 semesters) with thesis or coursework track options available.

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