Papers
8
Total Citations
129
H-Index
5
About
Jianwei Sun is a leading researcher in rehabilitation and assistive robotics, with a primary focus on exoskeleton systems for human mobility and physical human-robot interaction (pHRI). His work spans the design, control, and safety of both lower-limb and upper-limb exoskeletons, addressing critical challenges in restoring motor function for individuals with neuromuscular or musculoskeletal disorders. Sun’s most cited paper (48 citations) proposes an anthropomorphic, electrically driven lower-limb exoskeleton rehabilitation robot, demonstrating a user-centered design approach to enhance standing and walking capabilities. He has made significant contributions to sensor reduction and estimation strategies for multi-DOF exoskeletons (31 citations), improving system efficiency and reliability. His comparative analysis of admittance control schemes for the dual-arm EXO-UL8 exoskeleton (19 citations) provides foundational insights for passive and active rehabilitation modes. Sun has also advanced safety in pHRI with a hardware-independent, safety-focused admittance control approach (2024) and tackled delay-induced oscillations using rate-limiting techniques. Beyond rehabilitation, his work includes path planning for industrial robotics and the novel “Rubbot” for climbing on flexible surfaces. With a growing citation record and a focus on translating robotic systems from lab to clinical and industrial settings, Jianwei Sun is shaping the future of safe, effective, and intelligent human-robot collaboration.
Research Focus
Key Achievements
Top Papers
- 1
- 2Sensor Reduction, Estimation, and Control of an Upper-Limb Exoskeleton31 citations · 2021
- 3
- 4
- 5Rubbot: Rubbing on flexible loose surfaces9 citations · 2013
- 6
- 7
- 8