B.Tech in Electrical Engineering with Specialization in Electrical System for Smart Buildings
A four-year Electrical Engineering programme with a Smart Buildings specialisation, supported by flexible learning, practical laboratory work and industry-relevant electrical engineering foundations.
Electrical engineering for the built environment
The B.Tech programme in Electrical Engineering prepares students for careers in the Electrical, Electronics and IT industries. It follows an internationalized curriculum in compliance with statutory bodies and national and international accreditation, with emphasis on experiential and project-based learning and impact studies for higher studies and entrepreneurship.
The curriculum is flexible, with industry electives, minors and honours. Its research is framed around three United Nations goals: Affordable and Clean Energy; Industry, Innovation and Infrastructure; and Sustainable Cities and Communities.
Students learn in smart classrooms, state-of-the-art laboratories, centres of excellence with corporate collaborations and research laboratories spanning electric vehicles, battery technology, IoT, industrial automation, renewable energy, smart grid, AI, ML and FPGA.
The School lists “Design of Electrical Systems for Smart Buildings” among its co-branded programmes in association with L&T EduTech.
Foundations for electrical systems in smart buildings
Programme facilities and practical areas published by the School that provide the core Electrical Engineering learning environment.
Electrical Machines
Hands-on learning with electrical machines and their applications.
Measurement & Sensors
Practical measurement and sensor laboratory experience in electrical systems.
Power Systems
Study electrical power systems through dedicated laboratory practice.
Power Electronics
Explore power electronic circuits through research laboratory facilities.
Control Systems
Develop practical understanding through the Control System Laboratory.
Electrical Design
Build practical skills in the Electrical Design Laboratory.
Design of Electrical Systems for Smart Buildings
This Smart Buildings specialisation is listed under the School’s co-branded programmes in association with L&T EduTech, alongside the core B.Tech Electrical Engineering programme.
Knowledge with purpose
Published programme educational objectives, outcomes and electrical engineering specialization outcomes.
Programme Educational Objectives
- Graduates will be able to address complex problems and apply learned skills in wide range of career opportunities in industries and academics.
- Graduates will be able to fulfil the needs of society in solving technical problems using engineering principles, tools and practices, in an ethical and responsible manner.
- Graduates will develop leadership skills in the workplace and function professionally in a globally competitive world.
Programme Outcomes
- Engineering knowledge: Ability to apply knowledge of mathematics, science, engineering fundamentals and an engineering specialization to complex engineering problems.
- Problem analysis: Ability to identify, formulate, review research literature and analyse complex engineering problems to reach substantiated conclusions.
- Design/development of solutions: Ability to design solutions and system components or processes for specified needs, with appropriate public health, safety, cultural, societal and environmental consideration.
- Conduct investigations: Ability to use research-based knowledge and methods, including experiments, data analysis and information synthesis, to provide valid conclusions.
- Modern tool usage: Ability to create, select and apply appropriate techniques, resources and modern engineering and IT tools with an understanding of their limitations.
- The engineer and society: Ability to apply contextual knowledge to assess societal, health, safety, legal and cultural issues and consequent responsibilities.
- Environment and sustainability: Ability to understand the impact of engineering solutions and the need for sustainable development.
- Ethics: Ability to apply ethical principles and commit to professional ethics, responsibilities and engineering-practice norms.
- Individual and team: Ability to function effectively as an individual and as a member or leader in diverse and multidisciplinary teams.
- Communication: Ability to communicate effectively on complex engineering activities with the engineering community and society at large.
- Project management and finance: Ability to apply engineering and management principles to work in and lead teams and manage projects in multidisciplinary environments.
- Life-long learning: Ability to engage in independent and life-long learning in the broadest context of technological change.
Programme Specific Outcomes
- Demonstrate knowledge and hands-on competence in characteristics, operations, analysis and design of electrical machines and their applications.
- Demonstrate knowledge of analysis, design and implementation of electrical, electronic and power electronic circuits, measurements and control systems in different electrical systems.
- Enhance knowledge in generation, transmission, distribution, protection, installation, operation and maintenance of power systems, including renewable energy systems for clean energy and sustainable technologies.
Programme documents
Current B.Tech Electrical Engineering curriculum documents and semester academic calendars published by the School.
Learn by building, measuring and testing
Electrical Engineering academic laboratories published by the School, offering practical foundations for the programme.

Electrical Machines Laboratory

Electrical Measurement & Sensor Laboratory

Power System Laboratory

Analog & Digital Electronics Laboratory

Power Electronics Research Laboratory

Microprocessor Laboratory

Electrical Design Laboratory

Control System Laboratory


