Baolin Du
Papers
4
Total Citations
66
H-Index
4
About
Baolin Du is a robotics and control systems researcher whose work centers on the advanced motion control of robotic manipulators, with a particular focus on trajectory tracking, force control, and fault-tolerant systems. His most influential contribution, "Constant Force PID Control for Robotic Manipulator Based on Fuzzy Neural Network Algorithm" (2020, 32 citations), demonstrates his ability to merge intelligent computing techniques with classical control frameworks to address real-world industrial manufacturing challenges. Complementing this, his adaptive backstepping sliding mode approach to trajectory tracking (2020, 18 citations) tackles the persistent difficulties of nonlinear system dynamics, parameter uncertainty, and environmental disturbances. Du's more recent work pushes further into precision control, introducing cross-coupling contour adaptive nonsingular terminal sliding mode control to handle actuator faults and external disturbances simultaneously (2023, 10 citations), and developing dual-mode synchronization predictive control to minimize contour error across multi-degree-of-freedom systems (2022, 6 citations). Collectively, his research addresses some of the most demanding requirements in modern robotic automation — precision, robustness, and adaptability — making his work highly relevant to researchers and engineers advancing the next generation of intelligent manufacturing systems.
Research Focus
Key Achievements
Top Papers
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- 4Dual-Mode Synchronization Predictive Control of Robotic Manipulator6 citations · 2022