معرفی
Dr. Augustine Egwebe is a Senior Lecturer in the School of Electronic and Electrical Engineering at Swansea University's Faculty of Science and Engineering. He specializes in electrical power systems, renewable energy integration with microgrids, energy management, modern control systems, and robotics. His work contributes significantly to Swansea University's research in sustainable energy systems and power electronics.
Dr. Egwebe received his PhD and BEng degrees in Electrical and Electronic Engineering (EEE) from Swansea University. His academic career at Swansea progressed from Academic Teaching/Research Assistant (2016-2019), to Lecturer (2019-2021), and currently Senior Lecturer (2021-Present). He is a Fellow of the UK's Advance Higher Education Academy (FHEA) and a member of the Institute of Electrical Technology (IET).
His research focuses on developing novel and cost-effective dynamic control and power electronics solutions for integrating renewable energy systems with microgrids. Key areas include:
- Electrical power systems and microgrid integration
- Renewable energy resource management
- Modern control systems and robotics applications
- Energy forecasting and real-time scheduling
- Electrical machines modeling and control
- Power electronics interface design
His recent publications demonstrate a strong focus on power systems stability, microgrid control strategies, and renewable energy integration. The research shows increasing sophistication in control algorithms for power electronics interfaces and growing interest in machine learning applications for energy prediction, particularly in photovoltaic systems and small spacecraft power management.
Professional recognition includes:
- Fellow of the UK's Advance Higher Education Academy (FHEA)
- Active membership in the Institute of Electrical Technology (IET)
- Regular reviewer for academic transactions in his field
As an educator, Dr. Egwebe supervises multiple PhD and MSc students, with recent completions in solar energy forecasting, microgrid energy management, and power electronic control techniques. He teaches core engineering modules including EG-243 Control Systems, EG-241 Electrical Machines, and developed the EGA222 Electrical Machines Laboratory module using Arduino-based hardware-in-the-loop experiments. He champions technology-enhanced learning to inspire lifelong learning among students.




