Papers
5
Total Citations
67
H-Index
5
About
Pablo J. Prieto is a leading researcher in advanced control systems, specializing in sliding mode control, robotics, and pneumatic actuation. His work focuses on developing robust control strategies for complex mechanical systems, particularly autonomous underwater vehicles (AUVs) and parallel robots. Prieto’s major contributions include the implementation of proxy-based sliding mode control (PSMC) on a 3-degree-of-freedom (3-DOF) electropneumatic platform, demonstrating how this hybrid approach combines the precision of sliding mode control with the smoothness of PID controllers. His 2013 paper on this topic has garnered 23 citations, establishing a foundation for further research. He also designed a yaw controller in sliding mode for AUVs (21 citations), addressing critical challenges in underwater vehicle autonomy. Prieto’s work extends to decoupled control schemes for pneumatic motion simulators and fuzzy sliding mode controllers for parallel robots, with stability proofs in the Lyapunov sense. Notably, his 2020 analysis of chattering in PSMC under parasitic dynamics (6 citations) provides essential insights for real-world applications. With over 67 total citations across his top papers, Prieto’s research bridges theory and practice, offering innovative solutions for motion simulation and autonomous systems.
Research Focus
Key Achievements
Top Papers
- 1Proxy-based sliding mode control on platform of 3 degree of freedom (3-DOF)23 citations · 2013
- 2Yaw Controller in Sliding Mode for Underwater Autonomous Vehicle21 citations · 2016
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