English

Crash-perching on vertical poles with a hugging-wing robot

Robotics 2024-02-06 v1

Abstract

Perching with winged Unmanned Aerial Vehicles has often been solved by means of complex control or intricate appendages. Here, we present a simple yet novel method that relies on passive wing morphing for crash-landing on trees and other types of vertical poles. Inspired by the adaptability of animals' and bats' limbs in gripping and holding onto trees, we design dual-purpose wings that enable both aerial gliding and perching on poles. With an upturned nose design, the robot can passively reorient from horizontal flight to vertical upon a head-on crash with a pole, followed by hugging with its wings to perch. We characterize the performance of reorientation and perching in terms of impact speed and angle, pole material, and size. The robot robustly reorients at impact angles above 15{\deg} and speeds of 3 m/s to 9 m/s, and can hold onto various pole types larger than 28% of its wingspan in diameter. We demonstrate crash-perching on tree trunks with an overall success rate of 71%. The method opens up new possibilities for the use of aerial robots in applications such as inspection, maintenance, and biodiversity conservation.

Keywords

Cite

@article{arxiv.2402.02092,
  title  = {Crash-perching on vertical poles with a hugging-wing robot},
  author = {Mohammad Askari and Michele Benciolini and Hoang-Vu Phan and William Stewart and Auke J. Ijspeert and Dario Floreano},
  journal= {arXiv preprint arXiv:2402.02092},
  year   = {2024}
}

Comments

14 pages, 6 figures. Supplementary material available. Under review at Communications Engineering

R2 v1 2026-06-28T14:37:05.836Z