ICRA 20253 citations

Tunable Leg Stiffness in a Monopedal Hopper for Energy-Efficient Vertical Hopping Across Varying Ground Profiles

Rongqian Chen, Jun Kwon, Kefan Wu, Wei-Hsi Chen

Abstract

We present the design and implementation of HASTA (Hopper with Adjustable Stiffness for Terrain Adaption), a vertical hopping robot with real-time tunable leg stiffness, aimed at optimizing energy efficiency across various ground profiles (a pair of ground stiffness and damping conditions). By adjusting leg stiffness, we aim to maximize apex hopping height, a key metric for energy-efficient vertical hopping. We hypothesize that softer legs perform better on soft, damped ground by minimizing penetration and energy loss, while stiffer legs excel on hard, less damped ground by reducing limb deformation and energy dissipation. Through experimental tests and simulations, we find the best leg stiffness within our selection for each combination of ground stiffness and damping, enabling the robot to achieve maximum steadystate hopping height with a constant energy input. These results support our hypothesis that tunable stiffness improves energyefficient locomotion in controlled experimental conditions. In addition, the simulation provides insights that could aid in future development of controllers for selecting leg stiffness.

BibTeX
@inproceedings{icra2025_tunablelegstiffn,
  title = {Tunable Leg Stiffness in a Monopedal Hopper for Energy-Efficient Vertical Hopping Across Varying Ground Profiles},
  author = {Rongqian Chen and Jun Kwon and Kefan Wu and Wei-Hsi Chen},
  booktitle = {ICRA 2025},
  year = {2025}
}