Dr. Pouya Ifaei | Energy | Best Researcher Award
Research Professor, Ewha Womans University, South Korea
Pouya Ifaei is a multidisciplinary researcher specializing in the integration of energy systems, process engineering, and artificial intelligence for sustainable urban development. He is a pioneer in developing combined techno-econo-socio-environmental models for sustainable development, with a focus on creating self-sufficient, climate-change-adapted multigeneration systems. Pouya has contributed extensively to modeling and analyzing integrated water and energy systems and is a leading expert in advanced exergoeconomic, exergoenvironmental, and exergorisk analyses. He has pioneered multi-scale smart management techniques for decision-making in optimal spaces. With years of experience in academia and industry, Pouya is dedicated to collaborating with cross-functional teams to design learning systems for future energy concepts and advanced networks 🌱🌍.
Publication Profile
Education
Pouya earned his Ph.D. in Environmental Science and Engineering from Kyung Hee University, South Korea, where he focused on the water-energy-carbon nexus and sustainable development strategies using big data (2015-2019). He also holds a Master’s degree in Environmental Engineering from the University of Tehran (2012-2014), where he studied the feasibility of combined heat and power generation. Additionally, he has a Bachelor’s degree in Civil Engineering from Tabriz University (2010-2012) and an Associate’s degree in Aerospace Engineering from AmirKabir University of Technology (2003-2008) 🎓🌍.
Experience
Pouya is currently a Research Professor at Ewha Womans University and has previously held research roles at Kyung Hee University. His career includes consulting on national projects like the “Sustainable Development of Water-Energy-Carbon Nexus for the 4th Industrial Revolution” and various research fellowships and positions, such as postdoctoral work in the Brain Korea 21+ program. He has also been involved in numerous industrial and environmental research projects, contributing to key sustainable development initiatives in energy and environmental sectors 🧑🏫🔬.
Awards and Honors
Pouya’s excellence in research has been recognized through numerous awards, including the Best PhD Dissertation Award from Kyung Hee University (2019) and the Outstanding Emerging Researcher Award at the 2nd Iranian Scientific Congress (2017). He has also received several grants, including the Korea Research Foundation Grant (2019-2023) and the Brain Korea 21+ Ph.D. scholarship. Additionally, his contributions to Elsevier publications earned him the Outstanding Contribution in Reviewing Award (2016) 🏆🎖️.
Research Focus
Pouya’s research focuses on the intersection of energy systems, sustainability, and artificial intelligence. His work spans optimizing integrated water and energy systems, the water-energy-carbon nexus, and the development of self-sufficient systems for climate change adaptation. He is particularly interested in the design and optimization of novel systems for industrial applications and sustainable urban planning. His research also includes cutting-edge applications in smart decision-making techniques and the use of AI in energy networks 🔋💡🌐.
Conclusion
With a strong academic and professional background, Pouya Ifaei continues to make significant contributions to sustainable development, energy systems, and artificial intelligence. His work is at the forefront of creating smart, self-sustaining communities and networks, fostering a better, greener future 🌱🌟.
Publications:
Optimal hybrid renewable microgrids via energy demand control using media platforms in South Korea – Sustainable Cities and Society, 2025.
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The AI circular hydrogen economist: Hydrogen supply chain design via hierarchical deep multi-agent reinforcement learning – Chemical Engineering Journal, 2024.
Cited by: 1
Leveraging media for demand control in an optimal network of renewable microgrids with hydrogen facilities in South Korea – IOP Conference Series: Earth and Environmental Science, 2024.
Cited by: 0
Optimal Design of a Renewable-Energy-Driven Integrated Cooling–Freshwater Cogeneration System – Processes, 2024.
Cited by: 2
Decoding intersectionality: A systematic review of gender and energy dynamics under the structural and situational effects of contexts – Energy Research & Social Science, 2024.
Cited by: 0
Flare-to-hydrogen in oil and gas industries: Techno-economic feasibility of a net-negative alternative – Energy Conversion and Management, 2024.
Cited by: 0
Towards mega-scale decarbonized industrial park (Mega-DIP): Generative AI-driven techno-economic and environmental assessment of renewable and sustainable energy utilization in petrochemical industry – Renewable and Sustainable Energy Reviews, 2024.
Cited by: 1
Hybrid Energy Systems for Buildings: A Techno-Economic-Enviro Systematic Review – Energies, 2023.
Cited by: 0
A Brief Insight into the Toxicity Conundrum: Modeling, Measuring, Monitoring and Evaluating Ecotoxicity for Water Quality towards Environmental Sustainability – Sustainability, 2023.
Cited by: 0