RA-L 20250 citations

Underactuated Legged-Rolling Locomotion of a Minimal Two-Rod Tensegrity Robot With Self-Recovery Capability

Yanqiu Zheng, Yuxuan Xiang, Yuetong He, Fumihiko Asano, Isao T. Tokuda

Abstract

A control method is proposed for a tensegrity robot to generate legged-rolling locomotion (<italic xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">i.e.</i>, rolling movement produced by a legged system). The robot has a minimal structure composed only of two rods and four elastic cables. The difficulty of the control arises from the minimalistic structure that makes the system underactuated. Our control strategy is divided into two phases: 1) overcoming the gravitational potential energy and 2) adjusting the robot's posture to prepare for the landing. Numerical simulations demonstrated that the system was capable of traversing complex terrains with two types of gaits, <italic xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">i.e.</i>, quasi-static and dynamic gaits. The proposed structure also enabled the robot to autonomously recover from arbitrary stationary states and initiate legged-rolling locomotion. Physical experiments validated the applicability of the tensegrity robot to various terrains such as uphill and stair climbing and showed its capability of overcoming discrete steps up to 20 % of the robot's frame length.

BibTeX
@inproceedings{ral2025_underactuatedleg,
  title = {Underactuated Legged-Rolling Locomotion of a Minimal Two-Rod Tensegrity Robot With Self-Recovery Capability},
  author = {Yanqiu Zheng and Yuxuan Xiang and Yuetong He and Fumihiko Asano and Isao T. Tokuda},
  booktitle = {RA-L 2025},
  year = {2025}
}
Underactuated Legged-Rolling Locomotion of a Minimal Two-Rod Tensegrity Robot With Self-Recovery Capability · RA-L 2025