Dr. Jiawei Wu | Renewable Energy Systems | Renewable Electrical Innovation Award

Dr. Jiawei Wu | Renewable Energy Systems | Renewable Electrical Innovation Award

Global Energy Interconnection Group | China

Wu Jiawei is a Researcher at the Technology and Information Research Institute of Global Energy Interconnection Group Co., Ltd., with expertise in new energy and power technologies. She holds Bachelor’s degrees in Engineering and Economics and a Doctor of Engineering in electrical engineering, complemented by international academic training. Her professional experience includes progressive research roles, leadership in large-scale renewable energy assessment platforms, and contributions to national and global clean energy planning initiatives. Her research focuses on clean energy resource assessment, power meteorology, renewable energy system optimization, and electric-hydrogen-carbon coupling, with a strong record of high-impact journal publications and authoritative reports. Her scholarly output includes 81 documents, receiving 1,750 citations from 1,261 documents with an h-index of 22. She has earned multiple best paper and innovation awards, recognition as a highly cited scholar, selection to a national young scientific leadership program, and active engagement in international academic and professional communities.

Citation Metrics (Scopus)

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Featured Publications

Assoc. Prof. Dr. Ehsan Akbari | Flexible AC Transmission Systems | Best Researcher Award

Assoc. Prof. Dr. Ehsan Akbari | Flexible AC Transmission Systems | Best Researcher Award

Associate Professor | Department of Electrical Engineering, Mazandaran University of Science and Technology | Iran

Dr. Ehsan Akbari is an Associate Professor in the Department of Electrical Engineering at the Mazandaran University of Science and Technology, Babol, Iran, specializing in electrical power engineering. He earned his B.Sc. in Electrical Power Engineering from Mazandaran University, followed by an M.Sc. and Ph.D. in the same field from the Mazandaran University of Science and Technology and Isfahan University of Technology, respectively. With extensive academic and research experience, Dr. Akbari has authored 25 books, published over 395 journal and conference papers, and holds six patents that reflect his innovative work. His research focuses on power quality, flexible AC transmission systems (FACTS), multilevel power electronics converters, smart grids, microgrids, grid-connected converter control, and renewable energy integration. A recognized leader in his field, he has organized and served on program committees for numerous international conferences. Dr. Akbari’s outstanding achievements have earned him multiple provincial awards for scientific and technological advancement. In addition to his research contributions, he actively engages in professional societies, editorial responsibilities, and academic collaborations, contributing significantly to the advancement of modern power and energy systems. His research impact is reflected in 1,145 citations, 57 documents, and an h-index of 20.

Profile: Scopus

Featured Publications

Ehsan Akbari*, Stationary-frame power regulation for controlling grid-connected three-phase modular multilevel converter with low harmonic under unbalanced voltage. Scientific Reports, 2025.

Ehsan Akbari*, Flexibility regulation-based economic energy scheduling in multi-microgrids with renewable/non-renewable resource and stationary storage systems considering sustainable computing by hybrid metaheuristic algorithm. Sustainable Computing: Informatics and Systems, 2025.

Ehsan Akbari*, Capabilities of battery and compressed air storage in the economic energy scheduling and flexibility regulation of multi-microgrids including non-renewable/renewable units. Scientific Reports, 2025.

Ehsan Akbari*, An optimized ANFIS framework for online voltage stability margin estimation in power systems using the novel Solifugae-inspired optimization algorithm and partial least squares-based dimensionality reduction. Measurement: Journal of the International Measurement Confederation, 2025.

Ehsan Akbari*, High voltage direct current system-based generation and transmission expansion planning considering reactive power management of AC and DC stations. Scientific Reports, 2025.