Theme
Intelligent Energy Systems and
AI-Driven Solutions
Workshops & panel discussions. Post graduate and PhD workgroups.Â
Networking
Exhibitions
Poster presentations and Industry exhibitions
Keynote Speeches
Research presentations
In-person and online presentation
by renowned academic & industry experts

Overview
Conference Features
The RESET conference covers a comprehensive range of topics, including renewable energy systems, hydrogen production and storage technologies, AI-enabled energy optimization, smart grid integration, energy storage solutions, power electronics, and sustainable energy transitions.
The conference attracts attendees from diverse backgrounds: electrical engineering, energy systems, computer science, environmental engineering, chemical engineering, mechanical engineering, automobile engineering, and related fields.
Topics of Interest
Track 1: Hydrogen Technologies
-
Green hydrogen production (PEM, Alkaline, AEM, SOEC electrolysis)
-
Photoelectrochemical and biological hydrogen production
-
Hydrogen storage (compressed, liquid, metal hydride, chemical)
-
Hydrogen distribution infrastructure and safety
-
Fuel cell technologies (PEMFC, SOFC, AFC, DMFC)
-
Fuel cell applications in transportation and stationary power
Track 3: Smart Grid and Power Electronics
-
Smart grid architecture and communication protocols
-
Advanced metering infrastructure (AMI)
-
Demand response and load management
-
Power converters for renewable energy systems
-
Wide bandgap semiconductors (SiC, GaN)
-
EV charging infrastructure and V2G integration
-
Cybersecurity in smart grid systems
Track 5: Energy System Modeling and Control
-
Energy system simulation tools and platforms
-
Power system stability and control
-
Optimal power flow and economic dispatch
-
Multi-objective optimization in energy systems
-
Computational fluid dynamics for energy systems
-
Techno-economic modeling frameworks
Track 7: Industrial Applications and Case Studies
-
Hydrogen in steel, cement, and chemical industries
-
Power-to-X technologies (Power-to-Gas, Power-to-Liquid)
-
Industrial decarbonization strategies
-
Successful renewable energy deployment case studies
-
Hydrogen valley and cluster initiatives
-
Smart city energy transition projects
-
International collaboration and technology transfer
Track 2:Â Renewable Energy Systems
-
Solar photovoltaic systems and technologies
-
Wind energy systems and grid integration
-
Hybrid renewable energy systems
-
Energy storage technologies (Li-ion, flow batteries, VRFBs, supercapacitors)
-
Thermal and compressed air energy storage
-
Microgrid and distributed generation systems
Track 4:Â AI and Digital Technologies
-
Machine learning for energy demand forecasting
-
Deep learning for renewable energy prediction
-
Digital twin frameworks for energy systems
-
Process mining for energy optimization
-
Edge AI for distributed energy resources
-
IoT and sensor networks for energy monitoring
-
Explainable AI in energy applications
Track 6:Â Policy, Economics, and Sustainability
-
National hydrogen strategies and roadmaps
-
Renewable energy policy design and implementation
-
Techno-economic analysis and LCOH analysis
-
Life cycle assessment of energy technologies
-
Carbon pricing and emission trading systems
-
Energy finance and investment mechanisms
-
Standards, certification, and compliance
-
Energy justice and equitable transition policies
Track 8: Emerging Technologies and Cross-cutting Themes
-
Next-generation solar cells (perovskite, tandem)
-
Solid-state batteries and advanced storage
-
Floating offshore wind technologies
-
Ocean energy (wave, tidal, OTEC)
-
Human-centered design in energy applications
-
Community engagement and social acceptance
-
Energy system resilience and reliability


