Xingang Zhang
Papers
1
Total Citations
57
H-Index
1
About
Xingang Zhang is a leading researcher in the field of soft and continuum robotics, with a particular focus on the mechanics and control of cable-driven continuum robots (CDCRs). His work bridges a critical gap in understanding the complex relationship between cable actuation, robot morphology, and tension perception. In his highly cited 2022 paper, "Morphology and Tension Perception of Cable-Driven Continuum Robots" (57 citations), Zhang introduced a novel framework that directly links driving cable length to both the robot's shape and the internal tension, solving a long-standing problem in the field. This contribution is foundational for improving the precision and safety of CDCRs in applications like minimally invasive surgery and industrial inspection. By providing a clearer model of how these robots deform under load, Zhang’s research enables more accurate control and better haptic feedback, making him a key figure in advancing the practical deployment of continuum robots. His work is essential reading for anyone interested in the intersection of mechanics, perception, and control in soft robotics.
Research Focus
Key Achievements
Top Papers
- 1Morphology and Tension Perception of Cable-Driven Continuum Robots57 citations · 2022