Hossein Kiani | Future of Fossil Fuels and Energy Transition | Best Researcher Award

Mr. Hossein Kiani | Future of Fossil Fuels and Energy Transition | Best Researcher Award

Master’s degree graduate at Amirkabir University of Technology, Iran

Hossein Kiani is a motivated and technically adept researcher specializing in power systems engineering with a primary focus on renewable energy integration, power quality, and energy systems optimization. Throughout his academic and professional journey, he has demonstrated a strong commitment to developing efficient, sustainable, and economically viable energy solutions. His technical capabilities and leadership in both research and academic settings have positioned him as a promising contributor to the global energy transition.

Profile

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Education

Kiani pursued his Master of Science in Electrical Engineering with a concentration in Power Systems at Amirkabir University of Technology (Tehran Polytechnic), Iran, from 2021 to 2024. Prior to that, he earned his Bachelor of Science degree in Electrical Engineering from Zanjan University between 2014 and 2016. His graduate studies were characterized by a deep dive into hybrid energy systems, distributed energy resource planning, and power system market analysis, further enhanced by hands-on experience in laboratory environments and participation in energy-focused conferences.

Experience

Hossein has garnered diverse academic and practical experiences in the power and energy domain. He has served as a teaching assistant for core courses such as Power Quality, Electric Power Markets, Electric Machines I, and Electrical Energy Systems I at Amirkabir University. Additionally, he manages the Power Quality Lab at the same institution, where he works under the supervision of a full professor in electrical engineering. His professional contributions extend to multiple academic conferences, where he has played a key role as a reviewer and executive committee member. These engagements have honed his critical analysis, organizational, and peer collaboration skills, reinforcing his profile as both a researcher and educator in the power systems field.

Research Interest

His primary research interests lie in the modeling, design, and optimization of hybrid renewable energy systems; stochastic scheduling in distributed energy networks; frequency control in smart grids; and market-based analysis of renewable energy participation. Kiani focuses on integrating uncertainty analysis and demand-side management strategies to enhance the reliability and efficiency of electrical and thermal energy systems. His work often involves leveraging software tools such as MATLAB, HOMER Pro, GAMS, and DIgSILENT PowerFactory to simulate and optimize complex energy scenarios, bridging theoretical research with real-world application.

Award

Kiani’s contributions to the field have already been recognized with accolades, including the Best Paper Award at the 13th International Conference on Smart Grids (SGC) in 2023. This award reflects both the originality and the technical rigor of his research in the area of smart grids and hybrid energy solutions. His continuous involvement in high-level academic forums and multiple peer-review roles underscores the growing recognition of his work by the energy systems research community.

Publications

Among his notable scholarly contributions are seven key publications.

These include “Techno-economical Optimal Design of Hybrid Renewable Energy Resources Across Diverse Sites Based on Sensitivity Analysis,” published in AUT Journal of Electrical Engineering; “Optimal Sizing and Siting of Renewable Energy Sources in a ADN Using Meta-Heuristic Algorithms Considering Participation in Energy Market and Resources Uncertainty,” published in 2025 (IEEE), cited for its innovative approach to distributed energy planning; “Designing an Optimal Integrated Energy System Including Sustainable Resources for Real-Time Electrical and Thermal Loads Supplying, Considering Grid Interaction,” 2024 (IEEE); and “Evaluating the Non-participation Penalty in Renewable Energy Utilization to Supply a Portion of Electricity for Large Industries in Iran,” 2024 (IEEE).

Other significant works include “Comparison of Long-term Energy Demand Forecasting in Developing and Developed Countries Using Machine Learning-based Algorithms,” 2024 (IEEE); “A Novel Approach for Frequency Control in Smart Grids Utilizing Thermal Equipment for Emergency Situations,” 2023 (IEEE); and “Optimal Design and Economic Comparison of a Hybrid Energy System in Iran and Switzerland with Sensitivity Analysis,” 2023 (IEEE).

These publications have collectively garnered increasing citations and have contributed valuable insights to fields like energy system planning and uncertainty modeling.

Conclusion

In conclusion, Hossein Kiani’s academic rigor, technical proficiency, and dedication to sustainable energy solutions distinguish him as a valuable contributor to the electrical engineering community. His combination of hands-on laboratory work, active teaching roles, peer-reviewed publications, and recognition through awards exemplifies a well-rounded profile committed to excellence in power systems research. With his ongoing work on advanced topics such as virtual power plants, peer-to-peer energy trading, and demand response strategies, Kiani continues to push the boundaries of innovation in modern energy systems.

Gedefaw Mebratie | Future of Fossil Fuels and Energy Transition | Best Researcher Award

Mr. Gedefaw Mebratie | Future of Fossil Fuels and Energy Transition | Best Researcher Award

Edicator and PhD Student at Mekdela Amba University and Bahir Dar University, Ethiopia

Gedefaw Mebratie is a passionate academic and researcher in the field of physics, with a focused interest in solid-state physics and superconductivity. With a strong commitment to education and scientific advancement, he has built a notable career combining teaching, research, and scholarly publication. Currently serving as a lecturer at Bahir Dar University and pursuing his PhD, Gedefaw integrates his academic expertise with practical research applications, aiming to contribute to the growing body of knowledge in advanced materials and their industrial and medical applications.

Profile

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Education

Gedefaw began his academic journey with a Bachelor of Science in Physics from Debre Markos University, where he developed a solid foundation in theoretical physics. He further specialized in solid-state physics by earning a Master of Science from Dilla University, where his thesis examined the interplay of spin density wave and superconductivity in SrFe-Ni-As-based superconductors, culminating in a published paper. Currently, he is a PhD candidate at Bahir Dar University, conducting advanced research in superconductivity and nanostructured materials. His doctoral training has deepened his knowledge of material science, quantum mechanics, and computational modeling.

Experience

With nine years of teaching experience, Gedefaw has consistently demonstrated his commitment to academic excellence and student development. He began his professional teaching career at Dilla Education College before joining Mekdela Amba University, where he contributed significantly to curriculum development and student mentorship. Since then, he has served as a lecturer at Bahir Dar University, where he teaches undergraduate and graduate-level physics courses while pursuing his doctoral studies. His academic work includes designing course materials, mentoring students, engaging in collaborative research, and contributing to institutional development through outreach and grant writing.

Research Interest

Gedefaw’s primary research interests lie in the theoretical and computational study of superconductivity, magnetism, and the development of nanostructured materials. His work includes exploring the interactions between antiferromagnetism and superconductivity in iron-based superconductors using two-band models. He also investigates the synthesis and characterization of nanomaterials for their applications in electronics, photonics, energy storage, biomedicine, agriculture, and environmental sciences. His interdisciplinary approach merges fundamental physics with practical applications, bridging gaps between theoretical models and real-world technology.

Awards

Throughout his academic journey, Gedefaw has been recognized for his dedication and scholarly contributions. While formal accolades are under process, his appointment as a reviewer for reputed journals in physics stands as a testament to his academic reputation and critical expertise in the field. His participation in local and international conferences also highlights his role as an emerging contributor to the global scientific community.

Publications

Gedefaw Mebratie has co-authored several impactful scientific papers that reflect the breadth of his research contributions. Among his key publications:

Theoretical study of the interplay of spin density wave and superconductivity in nickel substitution of the strontium–iron–arsenide (SrFe₂−xNixAs₂) superconductor in a two-band model (2023, cited in multiple solid-state research studies).

Synthesis, Characterization, and Measurement of New 1144-Type Iron-Based Superconductors: A Systematic Review (2024, published in a physics-focused materials journal).

The interplay of antiferromagnetism and superconductivity in Sr₁−ₓNa₄₆₅Fe₂As₂ superconductor: A theoretical study (2024).

Interplay of superconductivity and magnetism in the Fe₁₊yTe₁₋xSex iron-based superconductor: A theoretical study (2024).

Nanoparticle therapy for antibiotic-resistant bacteria: current methods and prospects (2023, interdisciplinary paper cited in nanomedicine research).

Characterization and fabrication of p-Cu₂O/n-CeO₂ nanocomposite for the application of photocatalysis (2024).

Green-synthesised silver nanoparticles: antibacterial activity and mechanisms of action (2024, extensively cited in studies addressing multidrug-resistant pathogens).

Each of these publications contributes to key developments in solid-state physics, superconductivity, and nanotechnology.

Conclusion

Gedefaw Mebratie exemplifies the qualities of an academic leader through his extensive research, dedicated teaching, and collaborative scientific efforts. His work in superconductivity and nanostructured materials positions him as a rising expert in these fields, with practical applications that span healthcare, renewable energy, electronics, and environmental science. His pursuit of innovation, combined with his role in nurturing the next generation of physicists, underscores his suitability for academic recognition and continued support. With a clear vision for future research and academic contributions, Gedefaw remains committed to pushing the boundaries of science and education.