Shuchen Ding
Papers
1
Total Citations
4
H-Index
1
About
Shuchen Ding is a researcher specializing in robotics, particularly the design and control of under-actuated robotic hands. Their key research areas include cable-driven mechanisms, under-actuated systems, and motion control for dexterous manipulation. Ding’s most notable contribution is the development of a novel 3-DOF under-actuated cable-truss robotic hand, which integrates a cable-pulley transmission system with a parallelogram mechanism to achieve coupled finger motion. This work addresses significant challenges in nonlinear dynamics and motion coupling by employing the principle of virtual work to model quasi-static behavior and Lagrangian dynamics for general motion control. The research, published in 2020, has garnered 4 citations and demonstrates practical impact through simulation analysis and prototype validation. Ding’s innovative approach to pre-deformation motion control and joint spring configuration optimization enhances the understanding of under-actuated systems, offering potential applications in prosthetics and industrial manipulation. Their work stands out for its rigorous theoretical framework and experimental verification, making it a valuable reference for students and researchers exploring advanced robotic hand design and control strategies.
Research Focus
Key Achievements
Top Papers
- 1Motion Control of 3-DOF Under-actuated Cable-truss Robotic Hand4 citations · 2020