Integrated M.Tech and Ph.D. in Electrical Engineering
A five-year integrated pathway listed by the School of Electrical Engineering, bringing advanced study and doctoral research together within KIIT’s electrical engineering research environment.
Advanced study and research in Electrical Engineering
The School of Electrical Engineering lists the Integrated Master of Technology and Doctor of Philosophy in Electrical Engineering as a five-year programme. It sits within a School that offers undergraduate, postgraduate and doctoral programmes in Electrical Engineering.
The School reports equal emphasis on original and applied research, supported by academic laboratories, research laboratories and modern classrooms. Research laboratories are established around faculty thrust areas to support multidisciplinary research and consultancy in health care, transport, energy, communication and automation.
State-of-the-art laboratory infrastructure is available across power systems, control systems, power electronics, electric drives, high-voltage engineering, renewable energy and material science.
A separate integrated programme curriculum or stage-wise academic structure is not published on the School page. This design therefore does not invent one; refer to the current official catalogue and University regulations for admission and academic details.
Explore electrical engineering in depth
Areas supported by the School’s state-of-the-art laboratory and research infrastructure.
Power Systems
Research and laboratory facilities in power-system engineering and simulation.
Control Systems
State-of-the-art facilities supporting control-system research activities.
Power Electronics & Drives
Research in converter topologies, control methodologies and electric drives.
Renewable Energy
Research laboratory work in sustainable energy systems, solar and wind energy.
High Voltage & Materials
Research infrastructure in high-voltage engineering and material science.
Automation & Smart Systems
Industrial automation, smart energy management, home automation and related areas.
From energy systems to automation
Selected laboratory scopes and facilities published by the School.
Sustainable energy systems
Devoted to development and innovation of sustainable energy systems, mainly solar and wind energy, including conversion, utilization and grid integration.
View laboratory details →Intelligent power-system modelling
Published resources include MATLAB, PSCAD, MiPower, ETAP, Powerworld, LabVIEW and MULTISIM for research spanning generation through utilization.
View laboratory details →Converters and control methodologies
Built for student and faculty research, with scope for hardware implementation of converter topologies, control methodologies and real-time research.
View laboratory details →Automation systems and applications
Facilities include Siemens S7-1200 and Allen Bradley Micrologix 1000 PLC, supporting industrial automation learning, project applications and consultancy.
View laboratory details →Infrastructure for inquiry and innovation
Published School facilities and collaborations that support research, teaching and development work.
- Laboratory infrastructureAcademic and research laboratories, modern classrooms, state-of-the-art hardware and licensed software.
- Research toolsPublished laboratory resources include MATLAB, PSCAD, MiPower, ETAP, Powerworld, LabVIEW, MULTISIM, dSPACE and test equipment.
- Industry collaborationThe School reports strategic partnerships with NI Instruments, Siemens and Schneider Electric, as well as centres of excellence for research and training.
- Research domainsMultidisciplinary research and consultancy in health care, transport, energy, communication and automation.
Explore the School’s research environment
Refer to the current official pages for programme, research-laboratory and facility information.

