
معرفی
Dr. Abdelhakim SAIM serves as a Senior Lecturer in the Department of Electrical Engineering at Polytech Nantes, University of Nantes, where he teaches Power electronics, analog electronics, electrical system control, and introduction to Smart Grids. His academic home is the Department of Electrical Engineering within Polytech Nantes at the Gavy Campus in Saint-Nazaire.
Dr. Saim's research focuses on the control of electrical microgrids, power electronic converters, power quality and stability of microgrids, and maritime microgrids. His work bridges theoretical control strategies with practical implementation, addressing critical challenges in renewable energy integration and grid stability. He has developed advanced control methodologies including adaptive fuzzy control, fractional controllers, and virtual impedance techniques to enhance microgrid performance.
Analysis of his publication trends from 2016-2026 reveals a consistent research trajectory with increasing emphasis on AI applications for microgrid design, maritime electrical systems, and optimal energy management in multi-energy systems. His work spans theoretical control algorithms to practical implementation in renewable energy systems, with particular attention to stability challenges in islanded operations.
Dr. Saim maintains an active research program with numerous collaborations, particularly with Josep M. Guerrero, Azeddine Houari, and Mohamed Machmoum. His supervision likely focuses on graduate students working on microgrid control systems, power electronics, and renewable energy integration. While specific grant information isn't detailed, his continuous publication record suggests ongoing research funding.
His research group appears to focus on practical implementation of advanced control strategies for electrical systems, with growing interest in maritime applications and AI-enhanced microgrid management. Students in his group would gain expertise in both theoretical control methods and hands-on implementation of power electronic systems for modern energy applications.


