Theme
Innovation in Sustainable Engineering Technologies
Workshops & panel discussions. Post graduate and PhD workgroups.Â
Networking
Exhibitions
Poster presentations and Industry exhibitions
Invited Speeches
Research presentations
In-person and online presentation
by renowned academic & industry experts

RESET Features
The RESET workshop 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 workshop was designed as an international meeting place for researchers, students, industry professionals, and sustainability practitioners who are working to address urgent challenges in green energy, digital transformation, sustainable mobility, and engineering innovation.
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RESET 2025 was more than an academic workshop. It marked the beginning of a long-term collaboration platform that bridges theory and practice, connects institutions across continents, and creates opportunities for research, mobility, innovation, and industry-engaged learning.
Important dates
PUBLICATION DEADLINE
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Abstract Submission Deadline
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Notification of Acceptance
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Full Paper submission Deadline
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Camera-Ready Submission
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REGISTRATION DEADLINE
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Author registration Deadline
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Early Bird Registration Deadline
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EVENT DATE
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August 24, 2025
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September 24, 2025
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December 3, 2025
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December 15, 2025
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October 15, 2025
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September 30, 2025
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Nov. 05-06, 2025, Fredrikstad, Norway
Note: Full paper submission applies only to authors seeking proceedings/journal publication. Authors may choose to present at the conference without publishing in proceedings/journals. This flexibility encourages participation from industry practitioners and researchers sharing preliminary work, case studies, confidential data, or practical insights.
Topics of Interest
Track 1: Hydrogen Technologies
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Green hydrogen production (PEM, Alkaline, AEM, SOEC electrolysis)
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Photoelectrochemical and biological hydrogen production
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Hydrogen storage (compressed, liquid, metal hydride, chemical)
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Hydrogen distribution infrastructure and safety
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Fuel cell technologies (PEMFC, SOFC, AFC, DMFC)
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Fuel cell applications in transportation and stationary power
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H2-CNG engines
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Advanced electrocatalysts and electrode development
Track 2:Â Renewable Energy Systems
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Solar photovoltaic systems and technologies
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Wind energy systems and grid integration
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Hybrid renewable energy systems
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Energy storage technologies (Li-ion, flow batteries, VRFBs, supercapacitors)
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Thermal and compressed air energy storage
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Microgrid and distributed generation systems
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Renewable-energy integration challenges and opportunities
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Power forecasting and Cybersecurity in smart grid systems
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Smart grid architecture and communication protocols
Track 3: Energy Materials and Infrastructure
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Sustainable, recyclable, and low-carbon materials for energy infrastructure
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Materials for hydrogen storage, transport, and distribution
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Catalyst and membrane materials for electrolysers and fuel cells
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Battery materials and stationary energy-storage technologies
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Offshore renewable-energy systems and subsea power-cable technologies
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Life-cycle assessment and circular-economy approaches for energy materials
Track 5: Energy System Modeling and Project development
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Energy simulation tools development
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Power-system stability and control
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Optimal power flow and energy-market modeling
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Multi-objective optimization and uncertainty analysis
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Techno-economic analysis and decision support Frameworks
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Hydrogen infrastructure modeling and safety Frameworks
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Energy-project feasibility assessment and validation
Track 7: Industrial Applications and Case Studies
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Hydrogen in steel, cement, and chemical industries
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Power-to-X technologies (Power-to-Gas, Power-to-Liquid)
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Industrial decarbonization strategies
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Successful renewable energy deployment case studies
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Hydrogen valley and cluster initiatives
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Smart city energy transition projects
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International collaboration and technology transfer
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Industry-engaged research
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Engineering education for sustainability
Track 4:Â AI and Digital Technologies
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Machine learning for energy demand forecasting
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Deep learning for renewable energy prediction
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Digital twin frameworks for energy systems
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Process mining for energy optimization
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Edge AI for distributed energy resources
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IoT and sensor networks for energy monitoring
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​Industrial digitalisation
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Explainable AI in energy applications
Track 6:Â Policy, Economics, and Sustainability
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National hydrogen strategies and roadmaps
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Renewable energy policy design and implementation
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Techno-economic analysis and LCOH analysis
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Life cycle assessment of energy technologies
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Carbon pricing and emission trading systems
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Energy finance and investment mechanisms
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Standards, certification, and compliance
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Energy justice and equitable transition policies
Track 8: Emerging Technologies and Cross-cutting Themes
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Next-generation solar cells (perovskite, tandem)
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Innovative energy systems and solutions
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Solid-state batteries and advanced storage
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Floating offshore wind technologies
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Ocean energy (wave, tidal, OTEC)
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Human-centered design in energy applications
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Community engagement and social acceptance
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Energy system resilience and reliability
RESET 2025: Workshop VisionÂ
RESET 2025 was established as a premier venue for researchers, engineers, and visionaries dedicated to advancing emerging sustainable engineering technologies. The workshop's primary purpose was to bridge the critical gap between theoretical innovation and practical implementation, providing a specialized environment where high-impact ideas could be shared and refined to address global sustainability challenges.
Building beyond a standard workshop, RESET 2025 successfully launched a long-term collaborative platform designed to foster ongoing synchronization between international academic and industry partners. This initiative secures future RESET conference series and provides exclusive publication opportunities in prestigious journals and proceedings.
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To ensure the highest level of engagement and meaningful dialogue, participation was intentionally limited to a curated group of experts with special invites, enabling deep-dive technical discussions and authentic networking that would not be possible in a large-scale format.


