M.Tech in Power and Energy System
A two-year postgraduate Electrical Engineering programme focused on renewable power generation, energy systems, power quality, energy management and smart-grid integration.
Energy systems for a sustainable power future
The School of Electrical Engineering lists Master of Technology in Power and Energy System as a two-year postgraduate programme. The published structure integrates renewable power generation technology, energy-system modelling and analysis, power conversion, power quality and energy management.
The programme’s specialization outcomes focus on exploring solar and wind energy for sustainable power generation, and on transmission corridors, energy-storage integration and data interoperability in smart grids.
Course names, laboratory titles and the semester progression on this page follow the School’s published M.Tech Electrical Engineering course structure for the Power and Energy System specialization.
Generation, modelling, quality and management
Selected named subjects and laboratories from the Power and Energy System course structure.
Power Conversion Techniques
First-semester course in the published specialization structure.
Renewable Power Generation Technology
First-semester course in the published specialization structure.
Modeling & Analysis of Energy System
First-semester course in the published specialization structure.
Power Quality Issues & Mitigation
Second-semester course in the published specialization structure.
Energy Management & Audit
Second-semester course in the published specialization structure.
Modelling, Analysis & Design
Sessional work in modelling, analysis and design of electrical systems.
From renewable-energy analysis to independent research
- Renewable Energy Laboratory
- Energy System Modeling and Control Laboratory
- Industrial Automation Laboratory
- Department electives
- Comprehensive viva-voce
- Thesis Part I and Thesis Part II
Research capability for complex energy challenges
Programme educational objectives, outcomes and specialization-specific outcomes published by the School.
Programme Educational Objectives
- Acquire in-depth knowledge in power systems, power electronics, renewable energy and electric drives for successful careers in academia and industry.
- Carry out research in electrical engineering and interdisciplinary areas and engage in lifelong learning for evolving technological and global challenges.
- Work with others and demonstrate social and ethical responsibility as an individual.
Programme Outcomes
- Independently carry out research, investigation and developmental work to solve practical problems.
- Write and present a substantial technical report or document.
- Demonstrate mastery in electrical engineering beyond the appropriate bachelor programme requirements.
- Apply advanced knowledge, techniques, skills and modern tools in electrical engineering.
Specialization Specific Outcomes
- Explore renewable energy such as solar and wind power for a sustainable future of power generation.
- Provide transmission corridors to support renewable energy resources, storage-device integration and data interoperability in smart grids.
Model, integrate and manage energy systems
Laboratories listed on the Power and Energy System programme page, with additional Energy System Lab context published by the School.
Energy System Modeling & Control Lab
Academic laboratory listed for the Power and Energy System specialization.
View programme page ↗Advanced Power System Lab
Academic laboratory listed for the Power and Energy System specialization.
View programme page ↗Renewable Energy Lab
Academic laboratory listed for the Power and Energy System specialization.
View programme page ↗Industrial Automation Lab
Academic laboratory listed for the specialization; the School’s research lab includes Siemens S7-1200 and Allen Bradley Micrologix 1000 PLC facilities.
View lab details ↗Power System Modeling & Control Lab
Academic laboratory listed for the Power and Energy System specialization.
View programme page ↗Energy System Lab
Published facilities include solar PV and thermal trainers, grid-tied inverter, PV emulator, micro-grid set-up and wind-energy trainer kit.
View lab details ↗View the complete course structure
Use the School’s PDF for full subject codes, credits, electives and detailed semester-wise information.

