Musasa Kabeya | Environmental Science | Research Excellence Award

Prof. Musasa Kabeya | Environmental Science | Research Excellence Award

Professor | Durban University of Technology | South Africa

Dr. Musasa Kabeya is an active researcher in power systems engineering, with recognized expertise in HVDC transmission, offshore wind farm DC collection grids, power converters, renewable energy integration, smart grids, and electric vehicle technologies. He has authored and co-authored 40+ peer-reviewed publications, accumulating 596 citations, with an h-index of 12 and an i10-index of 13. His highly cited works address DC collection systems for offshore wind farms, battery electric vehicle drive circuits, voltage regulation, and power loss minimization. Dr. Musasa has collaborated extensively with international researchers across Africa, Europe, and Asia, contributing to IEEE, IET, and high-impact journals. His research supports sustainable energy transition, grid reliability, and decarbonization, delivering measurable societal impact through improved renewable power integration and resilient electrical infrastructure.

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Anwer Al-Attwani | Environmental Science | Research Excellence Award

Dr. Anwer Al-Attwani | Environmental Science | Research Excellence Award

Mechanical Engineering | Marmara University | Iraq

Dr. Anwer Hamed is a researcher specializing in computational fluid dynamics, heat transfer, thermodynamics, and advanced internal combustion engines. His work focuses on performance optimization, emissions reduction, and hybrid energy systems, particularly within methane/diesel RCCI engines and solar-assisted steam turbine power plants. He has authored multiple peer-reviewed studies, accumulating citations across several international journals and conference proceedings, including Applied Sciences and leading thermal-science congresses. His collaborations with scholars in Türkiye and the broader region have contributed to advancements in sustainable engine technologies and solar-thermal integration. Through simulation-driven methodologies and parametric analyses, his research supports cleaner energy production and enhanced system efficiency, offering measurable societal benefits in the transition toward low-emission power and transport systems.

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