Engineering Department

Electrical & Electronics Engineering

Developing technical competence in electrical systems, electronics, power engineering, automation and emerging energy technologies.

About the Department

Powering progress through engineering

Electrical and Electronics Engineering is a core engineering discipline concerned with the generation, transmission, distribution, control and utilisation of electrical energy. It also covers electronic systems, automation, power electronics, electrical machines, renewable energy and emerging technologies. The department works to develop strong engineering fundamentals, practical abilities and professional competence among students.

Vision of the Department

Technical excellence with social responsibility

To develop the Department of Electrical and Electronics Engineering as a centre of quality technical education that prepares competent, innovative and ethical professionals capable of contributing to industry, research and the sustainable development of society.

Department Direction

Our Mission

M1: Quality Technical Education

To provide quality education in Electrical and Electronics Engineering through effective teaching-learning practices, modern laboratories and strong engineering fundamentals.

M2: Innovation and Industry Interaction

To encourage innovation, practical learning and research through interaction with industries, professional organisations and academic institutions.

M3: Ethics and Professional Development

To develop technically competent and socially responsible professionals with ethical values, leadership abilities and a commitment to lifelong learning.

Programme Outcomes

Engineering knowledge and professional capabilities

The Programme Outcomes describe the knowledge, analytical abilities, technical skills and professional responsibilities students are expected to develop through the programme.

PO1

Engineering Knowledge

Apply knowledge of mathematics, natural sciences, engineering fundamentals and Electrical and Electronics Engineering specialisation to solve complex engineering problems.

PO2

Problem Analysis

Identify, formulate, review research literature and analyse complex engineering problems to reach substantiated conclusions using the principles of mathematics, natural sciences and engineering sciences.

PO3

Design and Development of Solutions

Design solutions for complex engineering problems and develop systems, components or processes that meet specified needs with appropriate consideration for public health, safety, society, culture and the environment.

PO4

Investigation of Complex Problems

Use research-based knowledge and methods, including experimental design, data analysis, interpretation and synthesis of information, to provide valid conclusions.

PO5

Modern Tool Usage

Create, select and apply appropriate techniques, resources, and modern engineering and IT tools to complex engineering activities while understanding their limitations.

PO6

The Engineer and Society

Apply contextual knowledge to assess societal, health, safety, legal and cultural issues and understand the responsibilities associated with professional engineering practice.

PO7

Environment and Sustainability

Understand the impact of engineering solutions in societal and environmental contexts and demonstrate knowledge of the need for sustainable development.

PO8

Ethics

Apply ethical principles and commit to professional ethics, responsibilities and the established norms of engineering practice.

PO9

Individual and Teamwork

Function effectively as an individual and as a member or leader of diverse and multidisciplinary teams.

PO10

Communication

Communicate effectively with the engineering community and society through reports, documentation, presentations and clear professional instructions.

PO11

Project Management and Finance

Apply engineering and management principles to individual and team-based work and manage projects effectively in multidisciplinary environments.

PO12

Lifelong Learning

Recognise the need for independent and lifelong learning and develop the ability to respond to technological changes throughout a professional career.

Programme Educational Objectives

Professional objectives of EEE graduates

The Programme Educational Objectives focus on professional competence, technological development, continuous learning and responsible engineering.

PEO1

Professional Competence

Graduates will apply mathematics, science and Electrical and Electronics Engineering fundamentals to analyse and solve engineering problems in their professional careers.

PEO2

Technology and Innovation

Graduates will use modern engineering tools and emerging technologies to design, develop and improve electrical and electronic systems.

PEO3

Higher Education and Lifelong Learning

Graduates will pursue higher education, research, entrepreneurship and continuous professional development in response to changing technological requirements.

PEO4

Ethics and Social Responsibility

Graduates will demonstrate professional ethics, communication skills, teamwork and leadership while contributing responsibly to industry and society.

Programme-Specific Outcomes

EEE-specific technical capabilities

The Programme-Specific Outcomes focus on electrical system analysis, system design and the application of modern engineering tools.

PSO1

Electrical System Analysis and Design

Apply the principles of electrical circuits, electrical machines, power systems, power electronics, control systems and renewable energy to analyse and design electrical systems.

PSO2

Modern Engineering Applications

Use modern hardware, software, simulation and programming tools to develop practical solutions for electrical, electronic, automation and energy-related applications.