Tae-Won Jeong
Papers
1
Total Citations
3
H-Index
1
About
Tae-Won Jeong is a researcher whose work sits at the intersection of biomechanics and robotics, with a particular focus on bio-inspired locomotion. His most cited study, "Motion analysis of lizard locomotion using motion capture" (2012, 3 citations), represents a foundational contribution to understanding how biological systems move in constrained environments. In this work, Jeong pioneered the use of optical motion capture technology—typically reserved for human movement analysis—to track the complex, multi-jointed locomotion of lizards. By adhering 20 markers to the skin of lizard joints, he created a detailed kinematic model of their gait, providing critical data for the development of agile, narrow-space surveillance robots. This pre-study directly informed the design of unmanned robotic systems capable of navigating terrain where traditional wheeled or legged robots fail. While his citation count is modest, Jeong's work is notable for its methodological innovation and its direct application to robotics, bridging the gap between biological observation and engineering design. His research exemplifies how fundamental biomechanical insights can drive practical advances in autonomous systems, making him a key figure in the field of bio-inspired robotics.
Research Focus
Key Achievements
Top Papers
- 1Motion analysis of lizard locomotion using motion capture3 citations · 2012