English

ARCSnake: An Archimedes' Screw-Propelled, Reconfigurable Robot Snake for Complex Environments

Robotics 2020-06-05 v5

Abstract

This paper presents the design and performance of a screw-propelled redundant serpentine robot. This robot comprises serially linked, identical modules, each incorporating an Archimedes' screw for propulsion and a universal joint (U-Joint) for orientation control. When serially chained, these modules form a versatile snake robot platform which enables the robot to reshape its body configuration for varying environments and gait patterns that would be typical of snake movement. Furthermore, the Archimedes' screws allow for novel omni-wheel drive-like motions by speed controlling their screw threads. This paper considers the mechanical and electrical design, as well as the software architecture for realizing a fully integrated system. The system includes 3NN actuators for NN segments, each controlled using a BeagleBone Black with a customized power-electronics cape, a 9 Degrees of Freedom (DoF) Inertial Measurement Unit (IMU), and a scalable communication channel over ROS. The intended application for this robot is its use as an instrumentation mobility platform on terrestrial planets where the terrain may involve vents, caves, ice, and rocky surfaces. Additional experiments are shown on our website.

Keywords

Cite

@article{arxiv.1909.11641,
  title  = {ARCSnake: An Archimedes' Screw-Propelled, Reconfigurable Robot Snake for Complex Environments},
  author = {Dimitri A. Schreiber and Florian Richter and Andrew Bilan and Peter V. Gavrilov and Hoi Lam Man and Casey H. Price and Kalind C. Carpenter and Michael C. Yip},
  journal= {arXiv preprint arXiv:1909.11641},
  year   = {2020}
}

Comments

6 pages, 8 figures, presented at ICRA 2020

R2 v1 2026-06-23T11:25:49.018Z