Chih-Tien Kuo
Papers
2
Total Citations
8
H-Index
2
About
Chih-Tien Kuo is a robotics researcher whose work bridges bio-inspired design and dynamic systems analysis, with a focus on replicating complex arboreal locomotion. His primary research areas include biomimetic robotics, dynamic modeling, and mechanical system optimization. Kuo’s major contribution lies in the development and analysis of a spider monkey robot, a novel platform designed to imitate the brachiating behavior of real spider monkeys—swinging from limb to limb with fluid, energy-efficient motion. In his 2017 paper “Dynamic modeling analysis of a spider monkey robot,” he derived equations of motion using Lagrangian methods and systematically varied model parameters to identify optimal operating conditions for stable brachiation. That work, together with “Design and implementation of a spider monkey robot,” has each garnered 4 citations, reflecting early interest from researchers in legged and climbing robotics. Kuo’s approach—starting from a deep understanding of the spider monkey’s natural locomotion mechanism before engineering a physical robot—demonstrates a rigorous, biology-first methodology. His achievements include successfully constructing a robot that can brachiate on and between tree-limb-mimicking tubes, a challenging feat in robotic mobility. For students and researchers, Kuo’s work offers a compelling case study in how biological principles can inspire novel robotic designs and dynamic control strategies.
Research Focus
Key Achievements
Top Papers
- 1Dynamic modeling analysis of a spider monkey robot4 citations · 2017
- 2Design and implementation of a spider monkey robot4 citations · 2017