- Power Electronics
- Control Systems
- Microgrids
- +۷ مورد دیگر
Antonio Camacho Santiago is a researcher at the Universitat Politècnica de Catalunya (UPC), affiliated with the Department of Systems, Automation, and Industrial Informatics. He is a key member of the SEPIC (Sistemes Electrònics de Potència i de Control) and AGROTECH-UPC research groups, contributing to advancements in power electronics, microgrid control, and industrial automation. His work spans multiple campuses including Vilanova i la Geltrú and Diagonal Sud, and he collaborates extensively within UPC's engineering schools. His research focuses on control strategies for distributed generation, voltage support in microgrids, power quality enhancement, and fault ride-through capabilities of inverters. He has made significant contributions to the design of control systems under unbalanced grid conditions and the integration of renewable energy sources into smart grids. His research also extends to agrivoltaics and intelligent traffic systems, reflecting interdisciplinary innovation. The analysis of his recent publications reveals a strong trend in the development of advanced control algorithms for power electronic systems, particularly in islanded and grid-connected microgrids. His work emphasizes robustness, efficiency, and compliance with grid standards, often employing sliding mode control, complex power sharing, and resonant control techniques. There is a clear trajectory toward intelligent, adaptive, and distributed control architectures for future energy systems. Antonio Camacho Santiago has supervised doctoral research, including the thesis of José Ignacio Iñiguez Amigot, and has participated in numerous competitive R&D projects funded by national and European programs such as HORIZON EUROPE and the Spanish State Research Plans. His collaborative network includes prominent researchers like Miguel Castilla, Jaume Miret, Manuel Velasco, and Josep Maria Guerrero, indicating active engagement in large-scale research initiatives. He is involved in laboratory development for real-time control systems and has contributed to educational innovation projects, such as enhancing interactive teaching in the ATENEA platform. His work bridges theoretical control design with practical implementation in networked and embedded systems, supporting both academic training and industrial applications.





