ICRA 20254 citations

AquaMILR+: Design of an Untethered Limbless Robot for Complex Aquatic Terrain Navigation

Matthew Fernandez, Tianyu Wang, Galen Tunnicliffe, Donoven Dortilus, Peter Gunnarson, John O. Dabiri, Daniel I. Goldman

Abstract

This paper presents AquaMILR+, an untethered limbless robot designed for agile navigation in complex aquatic environments. The robot features a bilateral actuation mechanism that models musculoskeletal actuation in many anguilliform swimming organisms which propagates a moving wave from head to tail allowing open fluid undulatory swimming. This actuation mechanism employs mechanical intelligence through programmable body compliance, enhancing the robot's open-loop maneuverability when interacting with obstacles. AquaMILR+ also includes a compact depth control system inspired by the swim bladder and lung structures of eels and sea snakes. The mechanism, driven by a syringe and telescoping leadscrew, enables depth and pitch control - capabilities that are difficult for most anguilliform swimming robots to achieve. Additional structures, such as fins and a tail, further improve stability and propulsion efficiency. Our tests in both open water and laboratory models of 2D and 3D heterogeneous aquatic environments highlight AquaMILR+'s capabilities and suggest a promising system for complex underwater tasks such as search and rescue and deep-sea exploration.

BibTeX
@inproceedings{icra2025_aquamilrdesignof,
  title = {AquaMILR+: Design of an Untethered Limbless Robot for Complex Aquatic Terrain Navigation},
  author = {Matthew Fernandez and Tianyu Wang and Galen Tunnicliffe and Donoven Dortilus and Peter Gunnarson and John O. Dabiri and Daniel I. Goldman},
  booktitle = {ICRA 2025},
  year = {2025}
}
AquaMILR+: Design of an Untethered Limbless Robot for Complex Aquatic Terrain Navigation · ICRA 2025