Track-1: Grid Integrated Renewable Energy System
- Renewable energy conversion systems (PV, wind)
- Grid-tied and standalone systems
- Distributed power generation
- Hydrogen technology
- Energy storage technologies
- Energy Management Systems
- Battery Management Systems
Track-2: Smart Grid, Microgrid and Power Quality
- Multiple Energy Sources Coordinated Smart Grids and Microgrids
- Analysis of transmission and distribution networks with renewable and EV penetration
- Converters and control for improving power quality
- Active filtering
- VAr support
- FACTS devices
- Cyber Security in Smart Grid
Track-3: Power Electronics Converter
- Power conversion topologies
- Modulation strategies
- Converter analysis
- Modeling and control
- Efficient power conversion
- Soft switching
Track-4: Power Electronics Devices, Wide Band-Gap Devices, EMI-EMC, and Packaging
- Power electronic devices
- Gate drivers for WBG devices
- Packaging of Devices
- WBG enabled Power Converters
- Thermal management of converters
- Magnetics design and analysis
- Electromagnetic interference and Electromagnetic compatibility
Track-5: Electricals Machines and Drives
- Modeling and Design of Electric Machines
- Operation and Control of Motor drives
- Multilevel drives
- Four quadrant operations
- PMSM, IM and SRM drives
- Traction drives
Track-6: Transportation Electrification
- Electric vehicles (EV)
- Charging infrastructure
- Wireless charging (static/dynamic)
- Railway traction
- Surface transport viz., ship energy conversion systems, propulsion systems and electric aircrafts
- EV drives system
Track-7: Application of AI/ML to Power Electronics and Power Systems
- Design, control and maintenance of power electronics using AI/ML
- Intelligent control
- Fault monitoring and system health monitoring using AI/ML
Track-8: Power system energy policy and power Engineering education
- Teaching concepts in Power Engineering
- Policies for Distributed Generation
- Smart Grids and operation with increased renewable
- Electric vehicle penetration.