معرفی
Mr. Luke McNabb is a Research Fellow in the Research & Innovation department at RMIT University, located at the City Campus in Australia. His work focuses on electrical and electronic engineering with particular emphasis on control systems, energy conversion, and renewable energy technologies.
Dr. McNabb's research interests span across several key areas of engineering:
- Electrical Engineering and Power Electronics
- Control Engineering and Mechatronics
- Robotics and Automation
- Maritime and Wave Energy Systems
- Mechanical Engineering applications
- Communications Engineering
His recent publications demonstrate a strong focus on current regulation techniques, anti-windup mechanisms in control systems, and innovative approaches to renewable energy conversion, particularly in wave energy applications. McNabb's work often involves the development of novel control algorithms for electrical machines and power electronic systems, with applications ranging from industrial motor drives to marine energy harvesting.
Dr. McNabb has contributed to significant advancements in model-predictive control for induction machines, permanent magnet drives for wave energy converters, and vibration energy harvesting systems. His research frequently appears in high-impact journals such as IEEE Transactions on Control Systems Technology, IEEE Transactions on Industrial Informatics, and Mechanical Systems and Signal Processing.
His scientific contributions include:
- Development of novel anti-windup mechanisms for current regulators
- Innovative designs for wave energy converters and associated power take-off systems
- New concepts for electromagnetic vibration energy harvesters
- Planar generators for multi-directional wave energy extraction
Dr. McNabb collaborates with researchers across multiple institutions, as evidenced by his co-authored publications. His work bridges theoretical control system design with practical implementation in renewable energy applications, particularly focusing on improving efficiency and reliability of electrical power conversion systems.


