Kittipat Chairungsarpsook
Papers
2
Total Citations
20
H-Index
2
About
Kittipat Chairungsarpsook is a robotics researcher whose work centers on the design and control of lower-limb exoskeletons, with a particular focus on gait generation and stability. His most significant contribution is the development of the Asian Institute of Technology's Leg Exoskeleton (ALEX), a 12-degree-of-freedom wearable robot designed to assist walking. Chairungsarpsook pioneered the application of the Zero Moment Point (ZMP) theorem to generate safe, stable gait patterns for both the exoskeleton and its human wearer, addressing critical static and dynamic balance considerations. His foundational 2010 paper on this topic, which has garnered 18 citations, established a key methodology for ensuring walking stability in assistive robotic systems. He further extended this work in a 2012 follow-up study, refining the gait generation algorithms for more complex walking scenarios. Chairungsarpsook's research sits at the intersection of biomechanics, control theory, and human-robot interaction, providing a practical framework for developing exoskeletons that can safely augment human mobility. His contributions are particularly valuable for rehabilitation engineering and assistive technology, offering a systematic approach to making powered orthoses both stable and functional for real-world use.
Research Focus
Key Achievements
Top Papers
- 1ZMP based gait generation of AIT's Leg Exoskeleton18 citations · 2010
- 2