Chang‐Yeon Gu
Papers
1
Total Citations
28
H-Index
1
About
Chang‐Yeon Gu is a pioneering researcher in the field of flexible and wearable haptic technologies, with a focus on tactile sensing for on-skin and robotic applications. His major contributions center on developing mechanically decoupled taxel arrays that enable precise pressure sensing on dynamically moving and soft surfaces, overcoming critical challenges of noise and inter-taxel crosstalk. His most-cited work, "On-skin and tele-haptic application of mechanically decoupled taxel array on dynamically moving and soft surfaces" (2022), has garnered 28 citations, reflecting its impact on advancing soft robotics and human-machine interfaces. Gu’s innovations are particularly notable for their potential in tele-haptic systems, where accurate tactile feedback is essential for remote manipulation and prosthetics. By addressing the fundamental limitations of conventional pressure sensors under real-world conditions, his research bridges the gap between laboratory prototypes and practical, wearable devices. For students and researchers, Gu’s work exemplifies how thoughtful mechanical design can unlock new possibilities in haptics, offering a pathway toward more intuitive and responsive interaction with technology.
Research Focus
Key Achievements
Top Papers
- 1