English

SPONGE: Open-Source Designs of Modular Articulated Soft Robots

Robotics 2024-04-17 v1

Abstract

Soft-robot designs are manifold, but only a few are publicly available. Often, these are only briefly described in their publications. This complicates reproduction, and hinders the reproducibility and comparability of research results. If the designs were uniform and open source, validating researched methods on real benchmark systems would be possible. To address this, we present two variants of a soft pneumatic robot with antagonistic bellows as open source. Starting from a semi-modular design with multiple cables and tubes routed through the robot body, the transition to a fully modular robot with integrated microvalves and serial communication is highlighted. Modularity in terms of stackability, actuation, and communication is achieved, which is the crucial requirement for building soft robots with many degrees of freedom and high dexterity for real-world tasks. Both systems are compared regarding their respective advantages and disadvantages. The robots' functionality is demonstrated in experiments on airtightness, gravitational influence, position control with mean tracking errors of <3 deg, and long-term operation of cast and printed bellows. All soft- and hardware files required for reproduction are provided.

Keywords

Cite

@article{arxiv.2404.10734,
  title  = {SPONGE: Open-Source Designs of Modular Articulated Soft Robots},
  author = {Tim-Lukas Habich and Jonas Haack and Mehdi Belhadj and Dustin Lehmann and Thomas Seel and Moritz Schappler},
  journal= {arXiv preprint arXiv:2404.10734},
  year   = {2024}
}

Comments

Accepted for publication in IEEE Robotics and Automation Letters (RA-L) 2024

R2 v1 2026-06-28T15:56:06.767Z