Federico Morabito
Papers
4
Total Citations
141
H-Index
3
About
Federico Morabito’s research centers on nonlinear control theory, with a particular focus on anti-windup design for Euler–Lagrange systems—a class that includes robotic manipulators and other mechanical systems. His most influential work, “Nonlinear Antiwindup Applied to Euler–Lagrange Systems” (2004, 124 citations), introduces a dynamic augmentation scheme that guarantees stability and local performance recovery under input saturation, a critical challenge in real-world control. This contribution addresses the “windup” phenomenon, where actuator limits degrade controller performance, and provides a rigorous nonlinear analysis framework. Morabito’s approach builds on foundational anti-windup methods, extending them to ensure global asymptotic stability in fully actuated robot manipulators, as demonstrated in his 2003 and 2004 papers. His work is notable for its practical impact: by offering intuitive parameter tuning and simulation-validated results (e.g., on SCARA robots), it bridges theory and application, enabling high-performance control in saturated environments. With his most-cited paper accumulating over a hundred citations, Morabito’s contributions are essential reading for researchers in robotics and nonlinear control, offering both analytical depth and actionable design tools for mitigating saturation effects.
Research Focus
Key Achievements
Top Papers
- 1Nonlinear Antiwindup Applied to Euler–Lagrange Systems124 citations · 2004
- 2Results on anti-windup design for Euler-Lagrange systems9 citations · 2003
- 3
- 4High performance anti-windup for robot manipulators3 citations · 2003